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Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

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Форма поиска

Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
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Применить Всего найдено 36668. Отображено 100.
05-01-2012 дата публикации

Instrument for cassette for sample preparation

Номер: US20120003631A1
Принадлежит: GENTURADX Inc

A parallel processing system for processing samples is described. In one embodiment, the parallel processing system includes an instrument interface parallel controller to control a tray motor driving system, a close-loop heater control and detection system, a magnetic particle transfer system, a reagent release system, a reagent pre-mix pumping system and a wash buffer pumping system.

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05-01-2012 дата публикации

Portable sample analyzer cartridge

Номер: US20120003730A1
Принадлежит: Honeywell International Inc

A sample analyzer cartridge for use at a point of care of a patient such as in a doctor's office, in the home, or elsewhere in the field. By providing a removable and/or disposable cartridge with all of the needed reagents and/or fluids, the sample analyzer can be reliably used outside of the laboratory environment, with little or no specialized training.

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12-01-2012 дата публикации

Array element circuit and active matrix device

Номер: US20120007608A1
Принадлежит: Sharp Corp

An active-matrix device is provided which includes a plurality of array element circuits arranged in rows and columns; a plurality of source addressing lines each shared between the array element circuits in corresponding same columns; a plurality of gate addressing lines each shared between the array element circuits in corresponding same rows; a plurality of sensor row select lines each shared between the array element circuits in corresponding same rows, wherein each of the plurality of array element circuits includes: an array element which is controlled by application of a drive voltage by a drive element; writing circuitry for writing the drive voltage to the drive element, the writing circuitry being coupled to a corresponding source addressing line and gate addressing line among the plurality of source addressing lines and gate addressing lines; and sense circuitry for sensing an impedance presented at the drive element, the sense circuitry being coupled to a corresponding sensor row select line; and a row driver and a column driver.

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12-01-2012 дата публикации

Multilayer Hydrodynamic Sheath Flow Structure

Номер: US20120009025A1
Принадлежит: Cytonome ST LLC

A microfabricated sheath flow structure for producing a sheath flow includes a primary sheath flow channel for conveying a sheath fluid, a sample inlet for injecting a sample into the sheath fluid in the primary sheath flow channel, a primary focusing region for focusing the sample within the sheath fluid and a secondary focusing region for providing additional focusing of the sample within the sheath fluid. The secondary focusing region may be formed by a flow channel intersecting the primary sheath flow channel to inject additional sheath fluid into the primary sheath flow channel from a selected direction. A sheath flow system may comprise a plurality of sheath flow structures operating in parallel on a microfluidic chip.

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19-01-2012 дата публикации

Microfluidic system including a bubble valve for regulating fluid flow through a microchannel

Номер: US20120015442A1
Принадлежит: Cytonome ST LLC

A microfluidic system includes a bubble valve for regulating fluid flow through a microchannel. The bubble valve includes a fluid meniscus interfacing the microchannel interior and an actuator for deflecting the membrane into the microchannel interior to regulate fluid flow. The actuator generates a gas bubble in a liquid in the microchannel when a sufficient pressure is generated on the membrane.

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26-01-2012 дата публикации

Methods and Devices for Rapid Urine Concentration

Номер: US20120021407A1
Автор: Yousef Haj-Ahmad
Принадлежит: Norgen Biotek Corp

The present invention provides a device for the concentration of one or more target analytes contained in a urine sample. The device comprises a tube comprising an upper portion defining an opening for receiving the urine sample and a lower tapered portion terminating in collection reservoir. The tube contains a predetermined amount of a particulate binding agent which specifically binds the one or more target analytes and of a predetermined amount of a binding buffer. The device comprises means for seating the opening of the tube. The present invention further provides methods and kits for concentrating one or more target analytes in murine sample.

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02-02-2012 дата публикации

Bellows-Type Reservoir For Microsystems

Номер: US20120024417A1
Принадлежит: QIAGEN GmbH

The invention relates to a storage and dispensing vessel for microsystems and to a method for storing and dispensing a liquid. It is the object of the invention to be able to store a liquid with volatile and/or creeping substances in very small vessels over many months, preferably over at least one year, and to be able to dispense it automatically with comparatively little technical effort. For accomplishing this object, a bellows configured as a vessel is provided which is sealed, preferably welded, in an air-tight and liquid-tight manner once the bellows vessel has been filled. This bellows vessel at the same time serves as a dispensing vessel. The vessel can be emptied automatically with relatively simple means. For this purpose, it is, for example, clamped into a device which compresses the bellows, namely in the direction of a hollow needle—also referred to as cannula or hypodermic needle—or of a comparable means. In the process, the hollow needle or the comparable means pierces a vessel wall. The vessel is then automatically emptied via the hollow needle or the comparable means.

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02-02-2012 дата публикации

Single-sided continuous optoelectrowetting (sceow) device for droplet manipulation with light patterns

Номер: US20120024708A1
Принадлежит: UNIVERSITY OF CALIFORNIA

A single-sided continuous optoelectrowetting (SCOEW) device for manipulating droplets retained in a fluid over the SCOEW device with dynamic patterns of low intensity light, such as from a display screen, is described. A single pair of lateral electrodes are utilized for providing a lateral electric field bias, with transport motion controlled in response to projecting light through a photoconductive layer and dielectric layer adjacent to which droplets are retained. The device is configured for optically manipulating droplets having volumes spanning over five orders of magnitude, and can be configured to perform droplet dispensing, transport, splitting, merging, mixing and other droplet manipulation functions involving any of the above on a single sided surface.

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02-02-2012 дата публикации

Mixing device and mixing method for mixing small amounts of liquid

Номер: US20120028293A1
Принадлежит: Beckman Coulter Inc

The invention relates to a mixing method for mixing at least one small quantity of liquid, in which a quantity of liquid is applied, in a reaction region and at least one surface sound wave is reacted with the quantity of liquid. The invention relates further to a mixing device for mixing at least one quantity of liquid for performing the method of the present invention, a use of the device, and a method of analysis for bond strengths on surfaces.

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16-02-2012 дата публикации

System and method for automated generation and handling of liquid mixtures

Номер: US20120040472A1

The invention relates to a system ( 1 ) for supplying a microfluidic subsystem with liquids, comprising a first valve ( 14, 29, 46 ) and a first fluidic duct ( 10, 25, 28 ), for connecting said first valve ( 14, 29, 46 ) with said microfluidic subsystem and supplying a first liquid, and a second fluidic duct ( 11 ), for connecting with said microfluidic subsystem and supplying a second liquid characterized in that said first valve ( 14, 29, 46 ) is suitable for closing with time resolution not worse than 100 msec, and parameters of said first fluidic duct ( 10, 15, 28 ) are chosen such that the value of X 1 [Pa −1 ], defined as: X 1 [Pa −1 ]=(0.5×10 −9+1/ E 1 )(α R1 L 1 2 /A 1 ) is lower than 10 4 Pa −1 , where E 1 is the Young modulus of the material, of which said first fluidic duct ( 10, 25, 28 ) is made, L 1 is the length of the said first fluidic duct ( 10, 25, 28 ), A 1 is the surface area of the lumen of the said first fluidic duct ( 10, 25, 28 ) and α R1 is a constant characterizing the geometry of the said first fluidic duct ( 10, 25, 28 ) in an equation for the hydraulic resistance R 1 of the said first fluidic duct: R 1 =α R1 ( L 1 μ/A 1 2 ) with μ denoting the dynamic viscosity coefficient of the fluid filling the said first fluidic duct ( 10, 25, 28 ) in the measurement of R 1 . The invention relates also to a method for producing microdroplets on demand in such a system.

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23-02-2012 дата публикации

Body fluid analysis fixture

Номер: US20120045375A1
Принадлежит: Horiba Ltd

The present invention is intended to, in a configuration in which a liquid container for analysis sealed by a sealing member is penetrated by a penetrating member, prevent the sealing member from being unexpectedly broken to leak a liquid for analysis. Also, the present invention has: a container holder part that holds a liquid container for analysis; a penetrating member that penetrates a sealing member of the liquid container for analysis; a first moving mechanism that enables the penetrating member to be moved between a hole making position and a receding position; and a second moving mechanism that enables the penetrating member moved to the hole making position by the first moving mechanism to be moved toward the sealing member to a penetrating position where the penetrating member penetrates the sealing member.

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23-02-2012 дата публикации

Method and Apparatus for Collecting Biological Materials

Номер: US20120045823A1
Принадлежит: Biomet Biologics LLC

A method and apparatus can separate and concentrate a selected component from a multi-component material. The multi-component material may include a whole sample such as adipose tissue, whole blood, or the like. The apparatus generally includes a moveable piston positioned within a separation container and a withdrawal tube that is operable to interact with a distal end of the collection container past the piston. Material can be withdrawn through the withdrawal tube.

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01-03-2012 дата публикации

Centrifugal separation kit and methods for centrifugal separation using the same

Номер: US20120053041A1
Автор: Hong Kim, Khi-Pyo Ihm
Принадлежит: Glotech Co Ltd

A centrifugal separation kit is used for centrifugally separating whole blood and body fluid, and a method for centrifugal separation using the kit. The centrifugal separation kit is capable of easily extracting a target substance by installing an injector to a centrifugal separation tube and collecting the centrifugally separated target substance with the injector.

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08-03-2012 дата публикации

Platelet aggregation using a microfluidics device

Номер: US20120058500A1
Принадлежит: MONASH UNIVERSITY

A microfluidics device to provide real time monitoring of platelet aggregation of a biological sample obtained from a subject. The device comprises a channel configured for passage of the biological sample, the channel comprising a protrusion configured to induce an upstream region of shear acceleration coupled to a downstream region of shear deceleration and defining there-between a region of peak rate of shear, the downstream region of shear deceleration defining a zone of platelet aggregation. The device further comprises a platelet detection means for detecting aggregation of platelets in the zone of aggregation as a result of passage of the biological sample through the channel. Methods to assess real time platelet aggregation of a biological sample obtained from a subject are further described.

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15-03-2012 дата публикации

Centrifuge and separation vessel therefore

Номер: US20120065047A1
Принадлежит: Chapman John R, Coelho Philip H, Rodney Sparks

The centrifugation vessel includes an outer wall containing an interior space. A dam defines a barrier which divides the interior space into at least two regions including a catch basin defining a higher gee region and a reservoir defining a lower gee region. These regions are joined together over the dam. The dam includes a face which is preferably tapered to enable optimization of speed of separation of a sample placed within the vessel. The vessel is usable in a biological sample processing method by having the higher gee region of the vessel configured to have an elongate form and the volume optimized for collection of a higher density fraction of the sample. Supply and withdrawal tubes extend into the regions for reliable extraction and separate collection of differing density fractions after separation by centrifugation.

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22-03-2012 дата публикации

Single column immunological test elements

Номер: US20120071345A1
Принадлежит: Ortho Clinical Diagnostics Inc

A plurality of individual single column test elements are provided for use in a clinical testing apparatus. Each test element is defined by a single test column that includes a quantity of a test material, such as gel material or a bead matrix, including a cover strip used to access the contents of the test column. Individual test elements can be stored, retained and dispensed for testing patient samples.

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29-03-2012 дата публикации

Apparatus for high-throughput suspension measurements

Номер: US20120073972A1
Автор: Fraser Mcneil Watson
Принадлежит: Malvern Instruments Ltd

A high-throughput optical suspension characterization instrument is disclosed, which can include hydraulically separate and at least partially transparent sample containers. A selection mechanism is operative to selectively direct light from a light source ( 12 ) through different ones of the sample containers along an optical axis, and an off-axis scattering detector ( 38,24 ) is responsive to scattered light from the light source after it has interacted with a sample. Phase analysis light scattering is used to determine the electrophoretic mobility and zeta potential of samples. A second instrument is disclosed, wherein all sample containers are illuminated simultaneously. Transmitted light is collected by a camera. The electrophoretic mobility and hydrodynamic size of the samples may be determined.

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29-03-2012 дата публикации

Electromagnetic multiplex assay biosensor

Номер: US20120077184A1
Принадлежит: STARKDX Inc

A method is provided for determining the presence of multiple different target analytes in a liquid sample using electrophoretic separation and magnetic labels within a self-contained reaction cartridge and an external magnetic sensor for detection. Magnetic labels are bound to target analytes through specific binding elements. By electrophoretic separation, the multiple different targets can be sorted according to their specific sizes and inherent molecular charges for better detection resolution and specificity. After the separation process, the target analytes are then recognized and trapped by the detection binding elements within the reaction cartridge. A magnetic field generator provides a changeable magnetic field that causes the bounded magnetic labels and target analytes to produce a resonance disruption detectable by a magnetic sensor. The sensor can provide a digital binary value to indicate whether or not a label particle is bound and that determines the presence of target analytes.

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29-03-2012 дата публикации

Thermal Microvalves

Номер: US20120077231A1
Принадлежит: University of Michigan

The movement and mixing of microdroplets through microchannels is described employing silicon-based microscale devices, comprising microdroplet transport channels, reaction regions, electrophoresis modules, and radiation detectors. The discrete droplets are differentially heated and propelled through etched channels. Electronic components are fabricated on the same substrate material, allowing sensors and controlling circuitry to be incorporated in the same device.

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12-04-2012 дата публикации

Filtering tube and microtube for the preparation and purification of small sample volumes

Номер: US20120087847A1
Принадлежит: Individual

The present invention relates to spin baskets or columns used in the preparation and purification of small sample volumes. The spin baskets of the invention are particularly designed to be used with microtubes and are adapted to connect with such microtubes.

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12-04-2012 дата публикации

Devices and Process for Separating Plasma From a Blood Sample

Номер: US20120088227A1
Принадлежит: Roche Molecular Systems Inc

The present invention pertains to a device for separating plasma from a blood sample comprising a stacked structure which is provided with a first portion including a separating member having a first surface for applying or receiving the blood sample, wherein the separating member is adapted to permit the passage of plasma but to inhibit the passage of cells, and a second portion including an absorptive member for absorbing the plasma, which has a second surface in contact with the separating member for receiving the plasma, wherein the absorptive member is adapted to generate a capillary pressure so as to draw plasma from the separating member to the absorptive member. The first portion is fixed to the backing member in a manner to be removed without destroying the absorptive member. The absorptive member is fixed to the backing member in a manner to be removed without destroying the absorptive member.

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19-04-2012 дата публикации

Valve for lab-on-a-chip systems, method for actuating and for producing valve

Номер: US20120090692A1
Принадлежит: SIEMENS AG

A substrate of a lab-on-a-chip system has two adjacent recesses, one serving as a flow channel and the other one being filled with an elastomer compound. In a first state, the elastomer compound and the substrate delimit the flow channel in a section. In a second state, the elastomer compound takes up the space in the recess in the substrate along a cross-section of the flow channel, thereby completely closing the flow channel. The substrate and the elastomer compound may be produced by injection molding techniques.

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19-04-2012 дата публикации

Microfluidic Cell Motility Assay

Номер: US20120094325A1
Автор: Daniel Irimia
Принадлежит: General Hospital Corp

Certain isolated motile cells spontaneously migrate unidirectionally through a mechanically confined space, such as a microcapillary channel, in the absence of an external gradient (e.g., a chemical gradient). Assays and methods for detecting motile cells, and identifying chemical agents that inhibit cell migration, can include detecting the movement of motile cancer cells through a microcapillary channel.

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03-05-2012 дата публикации

Multi-task immunoaffinity device secured to a peripheral box and integrated to a capillary electrophoresis apparatus

Номер: US20120103816A1
Автор: Norberto A. Guzman
Принадлежит: Individual

The present invention relates to an immunoaffinity device for capturing one or more analytes present at high or low concentrations in simple or complex matrices. The device is designed as a modular, multi-task immunoaffinity device secured to a peripheral box and connected to capillary electrophoresis or liquid chromatography for the isolation, enrichment, separation and identification of polymeric macromolecules, primarily protein biomarkers. In one embodiment, two devices are coupled in-tandem to perform separately and sequentially microreactions and concentrations of proteins. In this embodiment, biological samples containing proteins can be subjected to proteolytic processing in the first device, and the resulting peptides subjected to selective purification and concentration in the second device.

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03-05-2012 дата публикации

Analysis reagent and analysis device having the analysis reagent carried therein

Номер: US20120107850A1
Принадлежит: Panasonic Corp

A reagent including a combination of a polyanionic compound and a bivalent cationic compound contains one substance selected from the group consisting of succinic acid, gluconic acid, alanine, glycine, valine, histidine, maltitol, and mannitol or at least one compound of the substance. A dry state of the reagent and deliquescence can be improved.

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10-05-2012 дата публикации

Integrated Microfluidic Device and Methods

Номер: US20120115738A1
Принадлежит: Rheonix Inc

A microfluidic device for analyzing a sample of interest is provided. The microfluidic device can comprise a microfluidic device body, wherein the microfluidic device body comprises a sample preparation area, a nucleic acid amplification area, a nucleic acid analysis area, and a network of fluid channels. Each of the sample preparation area, the nucleic acid amplification area and the nucleic acid analysis area are fluidly interconnected to at least one of the other two areas by at least one of the fluid channels. Using the microfluidic device, sample preparation can be combined with amplification of a biologically active molecule, and a suitable biological sample can be provided for analysis and/or detection of a molecule of interest. The small-scale apparatus and methods provided are easier, faster, less expensive, and equally efficacious compared to larger scale equipment for the preparation and analysis of a biological sample.

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17-05-2012 дата публикации

Microfluidic device and hemoglobin measurement method using the same

Номер: US20120122139A1

A microfluidic device and a method for measurement of biomaterials using the same. The microfluidic device includes a microfluidic structure including: a sample chamber which receives and accommodates blood; a reagent chamber which contains a luminescent reactant; a first detection chamber which contains a first material that is positively charged; a second detection chamber which is connected to the first detection chamber, and contains a second material having a boronate moiety; and at least one channel which connects the sample chamber, the reagent chamber and the first and second detection chambers.

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17-05-2012 дата публикации

Apparatus and method for separating and isolating components of a biological fluid

Номер: US20120122649A1
Принадлежит: Individual

A device for separating and isolating components of a biological fluid comprising a container for containing the fluid to be processed, a tube cap assembly for closing the container while providing filling and extraction communication therewith, a float assembly disposed within the container for funneling and controlling biological fluid flow into an inverted domed shaped isolation chamber within the float and controlling the biological fluid flow out of the isolation chamber for effecting an encapsulation or a sealed isolation of at least one component or fraction of the biological fluid flow within the isolation chamber during a centrifugation process. The device further comprising a flexible tube for connecting an extraction passageway disposed within the float assembly and an extraction valve of the tube cap assembly for allowing extraction of at least the one component or fraction encapsulated or isolated within the chamber.

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24-05-2012 дата публикации

Valve with material having modifiable degree of penetrability

Номер: US20120126154A1
Принадлежит: KONINKLIJKE PHILIPS ELECTRONICS NV

The invention relates to a valve ( 2 ) for controlling a passage of particles from a first region ( 6 ) to a second region ( 7 ), wherein the valve ( 2 ) comprises a valve material ( 4 ) having a modifiable degree of penetrability and a valve region ( 16 ) comprising the valve material ( 4 ), wherein the valve region ( 16 ) and the valve material ( 4 ) are adapted such that the particles have to penetrate the valve material ( 4 ) if the particles pass the valve ( 2 ) for being transferred from the first region ( 6 ) to the second region ( 7 ). The degree of opening of the valve ( 2 ) can easily be controlled by modifying the degree of penetrability of the valve material ( 4 ), for example, by modifying the temperature of the valve material ( 4 ). Moreover, by penetrating the valve material ( 4 ) the particles can be separated from other elements like a fluid containing the particles.

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31-05-2012 дата публикации

Multi-Shell Microspheres With Integrated Chromatographic And Detection Layers For Use In Array Sensors

Номер: US20120135396A1
Принадлежит: University of Texas System

The development of miniaturized chromatographic systems localized within individual polymer microspheres and their incorporation into a bead-based cross-reactive sensor array platform is described herein. The integrated chromatographic and detection concept is based on the creation of distinct functional layers within the microspheres. In this first example of the new methodology, complexing ligands have been selectively immobilized to create “separation” layers harboring an affinity for various analytes. Information concerning the identities and concentrations of analytes may be drawn from the temporal properties of the beads' optical responses, Varying the nature of the ligand in the separation shell yields a collection of cross-reactive sensing elements well suited for use in array-based micro-total-analysis systems.

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31-05-2012 дата публикации

Variable Volume Mixing and Automatic Fluid Management for Programmable Microfluids

Номер: US20120136492A1
Принадлежит: PURDUE RESEARCH FOUNDATION

A microfluidic arrangement including a fluid channel configured to receive a first fluid from a first inlet and a second fluid from a second inlet, and a mixer connected to the fluid channel, the mixer including a mixer channel configured to receive a volume of the first fluid and a volume of the second fluid from the fluid channel, the mixer channel defining a mixer capacity, wherein the mixer is (i) configured to mix the volume of the first fluid and the volume of the second fluid in order to provide a mixture of the first fluid and the second fluid when the combined volume of the first fluid and the second fluid is less than the mixer capacity, and (ii) further configured to mix the volume of the first fluid and the volume of the second fluid in order to provide a mixture of the first fluid and the second fluid when the combined volume of the first fluid and the second fluid is equal to the mixer capacity.

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14-06-2012 дата публикации

System and method for microfluidic flow control

Номер: US20120145253A1
Принадлежит: Canon US Life Sciences Inc

A system and method for controlling fluid flow within a microchannel includes a fluid circuit comprising a fluid outlet well and one or more fluid inlet wells, all in communication with a microchannel. A negative pressure differential is applied to the outlet well and fluid flow from an inlet well into the microchannel is controlled by opening or closing the inlet well to atmospheric pressure. To stop fluid flow from the inlet well, a negative pressure differential may be applied to the inlet well to equalize pressure between the inlet and outlet wells. By sequentially opening and closing different inlet wells to atmosphere, controlled amounts of different reagents can be serially introduced into the microchannel.

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28-06-2012 дата публикации

Micro-fluidic test apparatus and method

Номер: US20120160019A1
Принадлежит: International Business Machines Corp

An apparatus, system, and method for determining the osmolarity of a fluid. The apparatus includes at least one micro-fluidic circuit and at least one electrical circuit disposed in communication with the micro-fluidic circuit for determining a property of a fluid contained within the at least one micro-fluidic circuit.

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28-06-2012 дата публикации

Rapid Test Apparatus

Номер: US20120164751A1
Автор: Greg Liang, Yahong Liang
Принадлежит: Individual

Provided herein are methods and devices for rapid testing of solid, semi-solid, or liquid specimens, such a stool, blood, urine, saliva, or swab specimens of the cervix, urethra, nostril, throat, and for environmental testing.

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05-07-2012 дата публикации

Quantitative and self-calibrating chemical analysis using paper-based microfluidic systems

Номер: US20120171702A1
Принадлежит: MONASH UNIVERSITY

A method of determining the concentration of a test fluid sample using a paper-based microfluidic system having a plurality of hydrophilic testing zones, including: a) depositing said test fluid sample on at least one said testing zone; b) depositing a plurality of standard fluid samples or reactives of differing known concentrations on other said testing zones; c) introducing an indicator solution to each said test zone to thereby react with the deposited fluid sample and result in a colour intensity change which is a function of the fluid sample concentration; and d) comparing the differences in colour intensity between the test fluid sample and the standard fluid samples or reactives to thereby determine the concentration of said test fluid sample.

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12-07-2012 дата публикации

Microfluidic reactor system

Номер: US20120177543A1
Принадлежит: Micronics Inc

A compact device for operatively coupling a solid planar substrate, for example a glass slide, to a microfluidic circuit and performing a reaction or reactions on organic matter bound to the face of the planar substrate. Typical reactions include binding, staining and/or labeling reactions. In use, a sealed reaction chamber is formed, the chamber enclosing the organic matter and at least a part of the solid substrate. Headspace in the sealed chamber between the solid substrate is generally of microfluidic dimensions, and diaphragm pump members are used to inject, exchange and/or mix the fluids in the chamber.

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19-07-2012 дата публикации

Multiple laminar flow-based particle and cellular separation with laser steering

Номер: US20120183947A1
Принадлежит: Arryx Inc

The invention provides a method, apparatus and system for separating cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One exemplary method includes providing a first flow having a plurality of components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first cellular component of the plurality of components into the second flow while concurrently maintaining a second cellular component of the plurality of components in the first flow. The second flow having the first cellular component is then differentially removed from the first flow having the second cellular component. Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.

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19-07-2012 дата публикации

Selective bond reduction in microfluidic devices

Номер: US20120184046A1
Автор: Micah Atkin
Принадлежит: Individual

The invention overcomes the limitations described for the bonding of structured layers by providing a method for selectively reducing the bonding of materials. In its most generic form, the invention uses a bonding technique in combination with a printing method for modifying or covering at least one portion of a surface to either fully or partially prevent localised bonding. The structuring process may act upon the layers either before or after the bonding of the layers. The invention overcomes the limitations described in the application of affinity chromatography by providing a planar substrate with discrete optical detection flow cells that contain porous material and have connecting microchannels for fluid delivery and/or removal, and a method for making the same.

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26-07-2012 дата публикации

Test device, reaction apparatus and reactive test method

Номер: US20120190129A1
Принадлежит: KONICA MINOLTA INC

A test device having a micro flow channel including a reaction part where a reactant that is reactive to a tested chemical dispersed in a tested fluid is fixed, and at least one actuator for actuating the tested fluid to move in at least one of two opposite sides of the micro flow channel so as to homogenize a density distribution of the tested chemical in the tested fluid. The tested fluid is sent in the micro flow channel a plurality of times.

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02-08-2012 дата публикации

Apparatus and method for separating and isolating components of a biological fluid

Номер: US20120193274A1
Принадлежит: Individual

A device for separating and isolating components of a biological fluid comprising a container for containing the fluid to be processed, a tube cap assembly for closing the container while providing filling and extraction communication therewith, a float assembly disposed within the container for funneling and controlling biological fluid flow into an inverted domed shaped isolation chamber within the float and controlling the biological fluid flow out of the isolation chamber for effecting an encapsulation or a sealed isolation of at least one component or fraction of the biological fluid flow within the isolation chamber during a centrifugation process. The device further comprising a flexible tube for connecting an extraction passageway disposed within the float assembly and an extraction valve of the tube cap assembly for allowing extraction of at least the one component or fraction encapsulated or isolated within the chamber.

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02-08-2012 дата публикации

Process analyzer

Номер: US20120195799A1
Принадлежит: HACH LANGE GMBH

A process analyzer for detection of an analyte in a liquid under analysis includes a base module and an exchangeable cartridge module. The exchangeable cartridge module comprises a sample taking device comprising a membrane configured to obtain a sample from the liquid under analysis. A first pump mechanism is configured to pump the sample away from the sample taking device. A second pump mechanism is configured to introduce a reagent into the sample. A measuring section is configured to perform a quantitative detection of the analyte in the sample. A degassing device is arranged downstream of the first pump mechanism and the second pump mechanism. The degassing device is configured to degas the sample.

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02-08-2012 дата публикации

Apparatus and methods for microfluidic applications

Номер: US20120195809A1
Принадлежит: AGILENT TECHNOLOGIES INC

Non-rigid tape apparatus and fabrication methods for microfluidic processing applications such as gel electrophoresis are provided, where microfluidic processing is performed on selected areas. Parts of the tape are formed by high pressure plastic film forming. Membranes and other structures are self sealing during and after penetration by pipettes and electrical probes. Rigid exoskeleton elements protect the non-rigid parts during processing and facilitate transport of the tape.

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02-08-2012 дата публикации

Devices and method for enrichment and alteration of cells and other particles

Номер: US20120196273A1
Принадлежит: Individual

The invention features devices and methods for the deterministic separation of particles. Exemplary methods include the enrichment of a sample in a desired particle or the alteration of a desired particle in the device. The devices and methods are advantageously employed to enrich for rare cells, e.g., fetal cells, present in a sample, e.g., maternal blood and rare cell components, e.g., fetal cell nuclei. The invention further provides a method for preferentially lysing cells of interest in a sample, e.g., to extract clinical information from a cellular component, e.g., a nucleus, of the cells of interest. In general, the method employs differential lysis between the cells of interest and other cells (e.g., other nucleated cells) in the sample.

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02-08-2012 дата публикации

Three-dimensional (3d) hydrodynamic focusing using a microfluidic device

Номер: US20120196314A1
Принадлежит: PENN STATE RESEARCH FOUNDATION

A microfluidic device comprises inlets for a sample flow and an out-of-plane focusing sheath flow, and a curved channel section configured to receive the sample flow and out-of-plane focusing sheath and to provide hydrodynamic focusing of the sample flow in an out-of-plane direction, the out-of-plane direction being normal to a plane including the curved channel. Examples of the invention also include improved flow cytometers.

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09-08-2012 дата публикации

Micro mixer and microfluidic chip

Номер: US20120201724A1
Принадлежит: KONICA MINOLTA INC

There are provided a micro mixer capable of efficiently mixing at least two types of liquids in a simple structure and a microfluidic chip provided with the micro mixer. In order to achieve the object, the micro mixer includes a minute passage through which first and second liquids are caused to flow respectively, and a mixing vessel in which a liquid injecting port caused to communicate with the minute passage is provided in a bottom part, and the liquid injecting port is provided in a shifted position from a center of the bottom part in the bottom part. Moreover, the liquid injecting port may be provided in a shifted position from a center line of the mixing vessel.

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16-08-2012 дата публикации

Control of operation conditions within fluidic systems

Номер: US20120204964A1
Принадлежит: Caliper Life Sciences Inc

The invention provides methods of controlling environmental conditions within a fluidic system, where such environmental conditions can affect the operation of the system in its desired function, and fluidic channels, devices, and systems that are used in practicing these methods. Such methods are generally directed to environmental control fluids, the movement of such fluids through these systems, and the interaction of these fluids with other components of the system, e.g., other fluids or solid components of the system.

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16-08-2012 дата публикации

Device and method for particle complex handling

Номер: US20120208716A1
Принадлежит: Intel Corp

An embodiment of the invention relates to a device for detecting an analyte in a sample. The device comprises a fluidic network and an integrated circuitry component. The fluidic network comprises a sample zone, a cleaning zone and a detection zone. The fluidic network contains a magnetic particle and/or a signal particle. A sample containing an analyte is introduced, and the analyte interacts with the magnetic particle and/or the signal particle through affinity agents. A microcoil array or a mechanically movable permanent magnet is functionally coupled to the fluidic network, which are activatable to generate a magnetic field within a portion of the fluidic network, and move the magnetic particle from the sample zone to the detection zone. A detection element is present which detects optical or electrical signals from the signal particle, thus indicating the presence of the analyte.

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30-08-2012 дата публикации

Methods and Microfluidic Devices for the Manipulation of Droplets in High Fidelity Polynucleotide Assembly

Номер: US20120220497A1
Принадлежит: GEN 9 Inc

Methods and devices are provided for manipulating droplets on a support using surface tension properties, moving the droplets along a predetermined path and merging two droplets together enabling a number of chemical reactions. Disclosed are methods for controlling the droplets volumes. Disclosed are methods and devices for synthesizing at least one oligonucleotide having a predefined sequence. Disclosed are methods and devices for synthesizing and/or assembling at least one polynucleotide product having a predefined sequence from a plurality of different oligonucleotides having a predefined sequence. In exemplary embodiments, the methods involve synthesis and/or amplification of different oligonucleotides immobilized on a solid support, release of synthesized/amplified oligonucleotides in solution to form droplets, recognition and removal of error-containing oligonucleotides, moving or combining two droplets to allow hybridization and/or ligation between two different oligonucleotides, and further chain extension reaction following hybridization and/or ligation to hierarchically generate desired length of polynucleotide products.

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06-09-2012 дата публикации

Method for conducting multiple reactions in a single reaction tube

Номер: US20120225456A1
Принадлежит: Biochip Devises Pte Ltd

There is disclosed a method for conducting at least two reactions in a reaction tube, said method comprising the steps of providing at least two reaction phases within said reaction tube for allowing said reactions to occur therein, providing a separation phase that is immiscible with said two reaction phases and which is disposed therebetween, providing at least one particle capable of being coupled to a chemical species, wherein said particle is movable between said reaction phases to introduce said chemical species thereto.

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13-09-2012 дата публикации

Devices and methods for interfacing microfluidic devices with macrofluidic devices

Номер: US20120230887A1
Автор: Piero Zucchelli
Принадлежит: SpinX Inc

The present disclosure is directed generally to devices and methods with the purpose of interfacing microfluidic devices with macrofluidic devices. Specifically, the present disclosure includes the de-

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13-09-2012 дата публикации

Temperature control system

Номер: US20120230888A1
Принадлежит: Aida Engineering Ltd, NEC Corp

For heating or cooling a sample contained in a vessel portion through a heat transfer member held in contact with the vessel portion, there is used the vessel portion, which has a part formed of an elastic member, expands and contracts for injection and discharge of the sample, is closed other than a connecting port with a channel connected to the vessel, and expands and contracts for injection and discharge of the sample. The vessel portion expands correspondingly to the injection when the sample is injected through an inflow path serving as the channel into the vessel portion contracting in a non-contacting state with the heat transfer member. A predetermined amount of sample is injected into the vessel portion so as to expand the vessel portion, and the vessel portion comes into contact with the heat transfer member. The vessel portion is heated or cooled through the heat transfer member.

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20-09-2012 дата публикации

Apparatus for detecting target molecules and related methods

Номер: US20120234393A1

An apparatus for analysis of a sample and in particular of a biological sample. The apparatus contains a microfluidic chip with dies, adapted to be selectively activated or deactivated by presence of target molecules in the biological sample. The apparatus further contains a light source to emit light for illumination of the microfluidic chip and an optical filter to allow passage of the light from the dies once activated or deactivated by the presence of the target molecules. A method for pressurizing a microfluidic chip is also disclosed, where a chamber is provided, the chamber is connected with the microfluidic chip and pressure is applied to the chamber.

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11-10-2012 дата публикации

Pipetting device

Номер: US20120258026A1
Автор: Uwe Naumann
Принадлежит: CYBIO AG

The invention relates to a sealing assembly for a metering device, in particular a multi-channel metering device. The sealing assembly serves to seal pipette tips with respect to the metering device. A multi-channel metering device comprises a multiplicity of openings arranged in one plane. A sealing plate with holes in the grid of the openings abuts this plane. Each pipette tip is provided with an annular collar which has an abutting face and is pressed against the sealing plate by force closure so as to enclose one hole.

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25-10-2012 дата публикации

Fluid handling apparatus and fluid handling system

Номер: US20120266974A1
Автор: Ken Kitamoto
Принадлежит: Enplas Corp

Chip body 130 in which a through hole or concave is formed, intermediate film 140 , on one surface of which adhesive layer 150 ′ is formed and lower film 170 , on one surface of which transfer function layer 160 is formed, are prepared. Intermediate film 140 and lower film 170 are bonded together such that transfer function layer 160 is embedded in adhesive layer 150 ′ to form a laminated body. The laminated body and chip body 130 are bonded together by thermocompression to manufacture micro-chip 100.

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25-10-2012 дата публикации

Device and apparatus

Номер: US20120270225A1

A device ( 1 ) for carrying out a chemical or biochemical reaction and detecting the results, such as an assay to detect a target nucleic acid in a sample, said device comprising (i) a first well ( 8 ) in which a chemical or biochemical reaction such as a nucleic acid amplification reaction may be effected in a liquid phase or a receiving means for such a first well; (ii) a first channel ( 16 ) extending from the first well; (iii) a lateral flow assay device ( 32 ) arranged to receive liquid contents from said first channel, optionally by way of second well, on a bibulous membrane thereon, wherein said membrane contains elements that are able to detect the products of the chemical or biochemical reaction such as a target nucleic acid. Methods for using such devices and apparatus for carrying out assays using these are also described and claimed.

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25-10-2012 дата публикации

Microfluidic system and method for automated processing of particles from biological fluid

Номер: US20120270331A1
Принадлежит: Individual

A microfluidic system for automatically depleting particles not of interest from a biological sample, comprising: a sampling module configured to receive the sample; and one or more microfluidic protein and nucleic acid depletion modules fluidically coupled to the sampling module and comprising binding agents configured to selectively bind to abundant plasma proteins or nucleic acids. A method for automatically depleting particles not of interest from a sample, comprising: receiving the sample; subjecting the sample to a force that separates at least a portion of the particles not of interest from the sample, thereby isolating at least a portion of the target component; passing the isolated target copmonent into a chamber; circulating the isolated target component in the chamber; and selectively capturing proteins or nucleic acids with binding agents within the chamber.

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25-10-2012 дата публикации

Magnetic sample purification

Номер: US20120270332A1
Принадлежит: KONINKLIJKE PHILIPS ELECTRONICS NV

The invention relates to means for extracting magnetic particles (M) from a sample (S). The sample (S) is arranged adjacent to a liquid carrier (C), which is immiscible with it, in a configuration stable under the influence of gravity, and the magnetic particles (M) are moved by a magnetic field (B) from the sample (S) into the carrier (C). Preferably, the magnetic particles (M) are non-wetting with respect to the carrier (C) and will therefore form agglomerates in the carrier (C).

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25-10-2012 дата публикации

Sanitary swab collection system, microfluidic assay device, and methods for diagnostic assays

Номер: US20120271127A1
Принадлежит: Micronics Inc

Biohazard specimen collection containers are provided with an external disposable skin, that is stripped away and discarded after the biohazardous specimen is collected, thus reducing or eliminating objectionable or dangerous residues on the outside surfaces of the container. Further, we teach that the sample collection container with external disposable skin may also serve as an integrated microfluidic biosample processing and analytical device, thereby providing a single entry, disposable assay unit, kit and system for “world-to-result” clinical diagnostic testing. These integrated assay devices are provided with synergic, multiple safe-handling features for protecting healthcare workers who handle them. The modified collection containers and analytical devices find application, for example, in PCR detection of infectious organisms or pathogenic markers collected on a swab.

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01-11-2012 дата публикации

Unit and Device for the Preparation of Cells and/or Particles in a Liquid and Method for Microscopic Analysis

Номер: US20120276575A1
Принадлежит: F Hoffmann La Roche AG

A unit ( 10 ) for the preparation of cells contained in a liquid comprises a storage chamber ( 20 ) configured to store the liquid containing the cells and to release the stored liquid via an exit opening ( 22 ) upon the application of a predetermined external force, in particular a centrifugal force. A passage ( 30 ) adjacently arranged to the exit opening ( 22 ) has a cross-section larger than that of the exit opening ( 22 ). The wall at the transition from the exit opening ( 22 ) to the passage ( 30 ) forms an edge ( 32 ). The unit further comprises an observation member ( 50 ) for receiving the released liquid and an absorbing means ( 40 ) arranged adjacent to the observation member ( 50 ) between the passage ( 30 ) and the observation member ( 50 ). The absorbing means ( 40 ) has an aperture ( 42 ) allowing the released liquid to travel onto the observation member ( 50 ), and removes the liquid so as to leave the cells on the observation member ( 50 ) for observation.

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08-11-2012 дата публикации

Microfluidic device comprising microchannel where protrusions are formed on bottom surface

Номер: US20120282625A1
Принадлежит: Nanoentek Inc

Disclosed is a microfluidic device comprising a microchannel through which fluid can flow. Protrusions are formed on the bottom surface of the microchannel. The microfluidic device increases detection sensitivity by improving optical characteristics and enhances the reactivity of biochemical reaction by slowing down the velocity of fluid flowing inside the microchannel.

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08-11-2012 дата публикации

Sample processing cartridge and method of processing and/or analysing a sample under centrifugal force

Номер: US20120282707A1
Автор: Stig Morten Borch
Принадлежит: Individual

The present invention relates to a sample processing cartridge ( 10 ) for carrying out processing under centrifugal force acting in at least two directions as the orientation of cartridge relative to centrifugal force is changed, the cartridge comprising: a first cavity ( 18 ) adapted to contain a sample; and a second cavity ( 22 ) in fluid communication with the first cavity, wherein the first and second cavities are arranged such that the sample in the first cavity is moved therefrom to the second cavity as a centrifugal force acting on the cartridge is changed from a first direction ( 30 ) to a second direction ( 36 ), the first cavity is elongated perpendicular to the centrifugal force acting in the first direction, and the second cavity is more shallow than the first cavity and more extended in the direction of the centrifugal force acting in the second direction than the first cavity is extended in the direction of the centrifugal force acting in the first direction. The present invention also relates to a method of processing and/or analysing a sample under centrifugal force.

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15-11-2012 дата публикации

Novel Electrostatically Addressable Microvalves

Номер: US20120285550A1
Принадлежит: Palo Alto Research Center Inc

A method of controlling a main fluid in a conduit using a microvalve is described. The microvalve includes a corresponding actuation aperture in an actuation aperture layer. A control fluid flows through the actuation aperture in response to an electric field applied via a charge distribution near an actuation aperture layer. In one embodiment, the electric field may adjust the opening and closing of the actuation aperture thereby controlling the flow of the control fluid. In a second embodiment, the control fluid is an electrorheological fluid where the electric field controls the viscosity of the ER fluid, thereby controlling fluid flow through the actuation aperture. In both embodiments the flow of the control fluid controls stretching of a flexible membrane into and out of the conduit, thereby controlling the flow of the main fluid by opening or closing the conduit.

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15-11-2012 дата публикации

Cartridge for conducting a chemical reaction

Номер: US20120288924A1
Принадлежит: Cepheid

A cartridge for conducting a chemical reaction includes a body having at least one flow path formed therein. The cartridge also includes a reaction vessel extending from the body for holding a reaction mixture for chemical reaction and optical detection. The vessel comprises a rigid frame defining the side walls of a reaction chamber. The frame includes at least one channel connecting the flow path to the chamber. The vessel also includes flexible films or sheets attached to opposite sides of the rigid frame to form opposing major walls of the chamber. In addition, at least two of the side walls are optically transmissive and angularly offset from each to permit real-time optical detection of analyte in the reaction chamber.

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15-11-2012 дата публикации

Capillarity-based devices for performing chemical processes and associated systems and methods

Номер: US20120288961A1
Принадлежит: UNIVERSITY OF WASHINGTON

The present technology is directed to capillarity-based devices for performing chemical processes and associated system and methods. In one embodiment, for example, a device can include a base configured to receive one or more fluids, a porous wick carried by the base portion, and a flow-metering element along the porous wick to modify a rate or volume of fluid flow along the porous wick. The porous wick can comprise a first pathway, a second pathway, and an intersection at which the first pathway and the second pathway converge. Input ends of the first and second pathways can be wettably distinct. Upon wetting of the input ends, fluid is configured to travel by capillary action along each pathway. The device may also include volume-metering features configured to automatically and independently control or modify a volume of fluid flow along one or more pathways of the porous wick.

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22-11-2012 дата публикации

Systems and methods for valving on a sample processing device

Номер: US20120291565A1
Принадлежит: 3M Innovative Properties Co

A system and method for valving on a sample processing device. The system can include a valve chamber, a process chamber, and a valve septum located between the valve chamber and the process chamber. The system can further include a fluid pathway in fluid communication with an inlet of the valve chamber, wherein the fluid pathway is configured to inhibit a liquid from entering the valve chamber and collecting adjacent the valve septum when the valve septum is in a closed configuration. The method can include rotating the sample processing device to exert a first force on the liquid that is insufficient to move the liquid into the valve chamber; forming an opening in the valve septum; and rotating the sample processing device to exert a second force on the liquid to move the liquid into the valve chamber.

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29-11-2012 дата публикации

Microchemical nanofactories

Номер: US20120298037A1

Embodiments of an apparatus, system, and method for chemical synthesis and/or analysis are disclosed. One embodiment of a disclosed apparatus comprises a laminated, microfluidic structure defining a reactor and a separator. Such apparatuses, or portions thereof, generally have dimensions ranging from about 1 micrometer to about 100 micrometers. To implement synthetic processes, disclosed embodiments of the apparatus generally include at least one unit operation, such as a mixer, a valve, a separator, a detector, and combinations thereof. Individual apparatuses may be coupled both in series and in parallel to form a system for making chemical compounds. An individual apparatus or a system also can be used in combination with known devices and processes.

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29-11-2012 дата публикации

Sheath flow devices and methods

Номер: US20120301883A1
Принадлежит: CYNVENIO BIOSYSTEMS Inc

The invention relates generally to fluid processing and, in particular aspects, processing fluids for detection, selection, trapping and/or sorting of particulate moieties. Sheath flow devices described allow isolation of target species from fluid samples while avoiding non-specific binding of unwanted species to the surfaces of the separation device. Biological fluid processing, detection, sorting or selection of cells, proteins, and nucleic acids is described. The invention finds particular use in diagnostic settings, analyzing a patient's medical condition, monitoring and/or adjusting a therapeutic regimen and producing cell based products.

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06-12-2012 дата публикации

Particle Analysis in an Acoustic Cytometer

Номер: US20120304749A1
Принадлежит: Los Alamos National Security LLC

The present invention is a method and apparatus for acoustically manipulating one or more particles.

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06-12-2012 дата публикации

Piezoelectric dispenser with a longitudinal transducer and replaceable capillary tube

Номер: US20120304929A1
Автор: Yehuda Ivri
Принадлежит: Biodot Inc

Systems, devices and methods are provided, for acquiring and dispensing predetermined volumes of liquids and, in particular, to a unique piezoelectric dispenser for acquiring and dispensing of small volumes of fluid in an automatic or manual production of DNA arrays and assays, wherein droplets are dispensed in a single drop format with volumes that may range from about a few picoliters to several nanoliters. The dispenser can advantageously utilize a disposable capillary tube assembly while desirably retaining the piezoelectric actuator for subsequent further uses, thereby mitigating the possibility of cross contamination of fluids and providing an economical and cost effective approach with reuse of the piezoelectric actuator for further operation such as with a variety of liquids to be dispensed and transferred. A unique longitudinal transducer can transmit radial tube displacement into controlled axial motion of the tube.

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06-12-2012 дата публикации

Methods and apparatuses for convective polymerase chain reaction (pcr)

Номер: US20120309083A1
Принадлежит: Individual

The present invention provides a method and apparatus for amplifying a nucleic acid sequence by polymerase chain reaction (PCR). The method comprises placing a PCR sample in a container which is heated by only a single heat source that provides a high temperature for denaturation in the bottom of the PCR sample, while annealing and extension automatically occur in different regions of the PCR sample due to the convection induced by a temperature gradient descending from the bottom of the PCR sample to the surface of the PCR sample.

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06-12-2012 дата публикации

Multi-Sample Particle Analyzer and Method for High Throughput Screening

Номер: US20120309635A1
Принадлежит: Intellicyt Corp

Embodiments of the present invention provide a system and method for analyzing a plurality of samples comprising obtaining with an autosampler a plurality of samples from a first plate having a plurality of sample wells wherein the autosampler has a plurality of probes for sampling a set of samples and wherein each probe of the plurality of probes is in communication with a separate flow cytometer via a separate conduit. The plurality of samples comprising particles is moved into a fluid flow stream for each separate conduit. Adjacent ones of the plurality of samples are separated from each other in the fluid flow stream by a separation gas, thereby forming a gas-separated fluid flow stream. The gas-separated fluid flow stream is independently guided to and through each separate flow cytometer.

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13-12-2012 дата публикации

Device, fluidic module and method for producing a dilution series

Номер: US20120314528A1
Принадлежит: Albert Ludwigs Universitaet Freiburg

A device for producing a dilution series from a solution to be diluted, which contains a substance to be diluted, and a dilution solution, includes a body of rotation, a drive configured to subject the body of rotation to rotations having different rotation protocols, and a controller configured to control the drive so as to subject the body of rotation to the different rotational frequencies. A first mixing chamber and a second mixing chamber are connected via a fluidic connection which enables producing, in the first mixing chamber, a first mixture having a first dilution ratio, transferring a partial volume of the first mixture into the second mixing chamber, and there producing a second mixture having a second dilution ratio.

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13-12-2012 дата публикации

Analytical test element and process for its production

Номер: US20120315432A1
Принадлежит: Roche Diagnostics Operations Inc

An analytical test element is provided having a surface comprising a chemical detection layer on which a spreading net is disposed, the spreading net being configured to provide for the planar distribution of a liquid sample on the detection layer. The spreading net generally comprises a filament structure coated with a metallic layer that is oxidized at least on one or more surface portions thereof facing the detection layer.

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27-12-2012 дата публикации

Microfabricated elastomeric valve and pump systems

Номер: US20120328834A1

A method of fabricating an elastomeric structure, comprising: forming a first elastomeric layer on top of a first micromachined mold, the first micromachined mold having a first raised protrusion which forms a first recess extending along a bottom surface of the first elastomeric layer; forming a second elastomeric layer on top of a second micromachined mold, the second micromachined mold having a second raised protrusion which forms a second recess extending along a bottom surface of the second elastomeric layer; bonding the bottom surface of the second elastomeric layer onto a top surface of the first elastomeric layer such that a control channel forms in the second recess between the first and second elastomeric layers; and positioning the first elastomeric layer on top of a planar substrate such that a flow channel forms in the first recess between the first elastomeric layer and the planar substrate.

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03-01-2013 дата публикации

System for Treating Liquids

Номер: US20130000417A1

A system for treating liquids comprising: a fluidics unit having at least one functional unit; at least one liquid storage unit of the first type; at least one liquid storage unit of second type; a first liquid line; and a second liquid line, wherein a flow of liquid through the first liquid line directed from the fluidics unit to the liquid storage unit of first type is blocked, at least at times, by means of a first valve and a flow of liquid through the second liquid line in the direction from the liquid storage unit of second type to the fluidics unit is blocked, at least at times, by means of a second valve.

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03-01-2013 дата публикации

Method and system for transferring and/or concentrating a sample

Номер: US20130000738A1
Принадлежит: PathoGenetix Inc

A method of controlling the concentration of a sample flowing through a microchannel is provided. The method includes flowing a sample carrier fluid from a sample carrier channel and into an upstream portion of a microchannel such that the sample carrier fluid flows from the upstream portion and toward a downstream portion of the microchannel, and flowing a sheathing fluid from a sheathing fluid channel and into the upstream portion of the microchannel such that the sheathing fluid flows from the upstream portion and toward the downstream portion of the microchannel, and generally parallel to the sample carrier fluid. The method further includes detecting a concentration of a sample in the sample carrier fluid in the downstream portion of the microchannel, and adjusting a flow rate of at least one of the sample carrier fluid and the sheathing fluid based upon the detected concentration of the sample.

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03-01-2013 дата публикации

Filter device

Номер: US20130001149A1
Принадлежит: Panasonic Corp

A filter device of the present disclosure includes a first port from which a solution containing a substance is to be input, and a first flow passage communicating with the first port. A filter portion made of a plurality of fibrous substances including inorganic oxide is formed in at least one part in the first flow passage. The plurality of fibrous substances has one peak in the diameter distribution.

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03-01-2013 дата публикации

Analytical Cartridge with Fluid Flow Control

Номер: US20130004371A1
Автор: Nan Zhang, Zhiliang Wan
Принадлежит: MicroPoint Bioscience Inc

Analytical cartridges, systems and methods of processing a sample for analysis using capillary flows. Vertical gradient sample filtration provides filtrate to an incubation chamber for a time controlled by a flow modulator at the outlet of the incubation chamber. The flow modulator can include a serpentine capillary flow path without side walls. Incubated filtrate can flow from the incubation chamber to a detection channel after a predetermined time. The detection chamber can include one or more analytical regions in a porous substrate for detection of two or more analytes on the same cartridge from the same sample.

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03-01-2013 дата публикации

Dna analyzer

Номер: US20130004956A1
Принадлежит: ZyGEM Corp Ltd

Aspects of the disclosure provide a microfluidic chip to facilitate DNA analysis. The microfluidic chip includes a first domain configured for polymerase chain reaction (PCR) amplification of DNA fragments, a dilution domain coupled to the first domain to dilute a PCR mixture received from the first domain, and a second domain that is coupled to the dilution domain so as to receive the amplified DNA fragments. The second domain includes a separation channel that is configured to perform electrophoretic separation of the amplified DNA fragments. In addition, the disclosure provides a DNA analyzer to act on the microfluidic chip to perform an integrated single chip DNA analysis.

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03-01-2013 дата публикации

Apparatus and method for processing biological material

Номер: US20130005032A1
Принадлежит: Baxter International Inc

The application discloses an apparatus and method for processing biological material, including a suspension of cells.

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17-01-2013 дата публикации

Systems and methods for fluid sample processing

Номер: US20130017133A1
Принадлежит: Individual

A system for processing a fluid sample includes a tube and a piston. The tube has an open end and a closed end, and a volume defined therebetween. The volume is further defined by an interior surface of the tube. The tube is designed to receive a collection media holding the fluid sample. The piston has a first side and a second side, and is designed to be inserted into the tube via the open end of the tube. The piston is further designed to be translatable within the tube, and to compress the collection media between the closed end of the tube and the first side of the piston such that at least a portion of the fluid sample is removed from the collection media and driven to the second side of the piston.

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17-01-2013 дата публикации

Bioprinting station, assembly comprising such bioprinting station and bioprinting method

Номер: US20130017564A1

Bioprinting station (1) comprising:—a Bioprinting device (4) adapted to deposit a pattern of biological material (2) onto an area of interest (3 a ) of a substrate (3),—an imaging system (15) adapted to acquire an image of the substrate (3) and to reveal on the acquired image the area of interest (3 a ) with respect to a remaining part (3 b ) of the substrate (3), the acquired image of the substrate (3) being processed so as to detect the revealed area of interest (3 a ) on the acquired image and to determine the pattern corresponding to the area of interest (3 a ) detected on the acquired image.

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31-01-2013 дата публикации

Mechanically Integrated and Closely Coupled Print Head and Mist Source

Номер: US20130029032A1
Принадлежит: Optomec Inc

A deposition apparatus comprising one or more atomizers structurally integrated with a deposition head. The entire head may be replaceable, and prefilled with material. The deposition head may comprise multiple nozzles. Also an apparatus for three dimensional materials deposition comprising a tiltable deposition head attached to a non-tiltable atomizer. Also methods and apparatuses for depositing different materials either simultaneously or sequentially.

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31-01-2013 дата публикации

Sample processing device and method

Номер: US20130029321A1
Принадлежит: Danmarks Tekniskie Universitet

A sample processing device is disclosed, which sample processing device comprises a first substrate and a second substrate, where the first substrate has a first surface comprising two area types, a first area type with a first contact angle with water and a second area type with a second contact angle with water, the first contact angle being smaller than the second contact angle. The first substrate defines an inlet system and a preparation system in areas of the first type which two areas are separated by a barrier system in an area of the second type. The inlet system is adapted to receive a sample liquid comprising the sample and the first preparation system is adapted to receive a receiving liquid. In a particular embodiment, a magnetic sample transport component, such as a permanent magnet or an electromagnet, is arranged to move magnetic beads in between the first and second substrates.

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07-02-2013 дата публикации

Plastic Microfluidic Separation and Detection Platforms

Номер: US20130032483A1
Принадлежит: Netbio Inc

Plastic electrophoresis separation chips are provided comprising a plurality of microfluidic channels and a detection window, where the detection window comprises a thin plastic; and the detection window comprises a detection region of each microfluidic channel. Such chips can be bonded to a support provided an aperture is provided in the support to allow detection of samples in the electrophoresis chip at the thin plastic detection window. Further, methods for electrophoretically separating and detecting a plurality of samples on the plastic electrophoresis separation chip are described.

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07-02-2013 дата публикации

Chamber free nanoreactor system

Номер: US20130034880A1
Автор: Mark F. Oldham
Принадлежит: Individual

Aspects of the invention include methods for improving the accuracy and read length of sequencing reactions by utilizing unlabeled unincorporable nucleotides, or by rephasing colony based sequencing reactions. Other aspects include systems and devices for improved measurement of biological reactions associated with bead which may be removed, utilizing current measurement methods through the counter ions associated with said beads due to the presence of reactants bound or associated with said bead, wherein electrodes for generating and measuring said current may be within the Debye length of said bead. Other aspects of the invention include methods for determining concentrations of input samples, means for reuse of an array, methods and apparatus for separating beads with different charge levels from each other.

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14-02-2013 дата публикации

Method for performing a high throughput assay

Номер: US20130037115A1
Принадлежит: WISCONSIN ALUMNI RESEARCH FOUNDATION

A device and method is provided for performing a high throughput assay. The device includes a plate structure having a plate and a plurality of microfluidic structures positioned thereon. Each microfluidic structure defines a channel having an input and an output. At least one of the input and the output of the channel of each of the plurality of mircofluidic structures includes a first plurality of ports. In operation, the channels are filled with fluid and pressure gradients are generated between the fluids at the inputs and the fluids at the outputs of the channels. As a result, fluid flows through the channels toward the outputs.

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14-02-2013 дата публикации

Isolation and cultivation of stem/progenitor cells from the amniotic membrane of umbilical cord and uses of cells differentiated therefrom

Номер: US20130039893A1
Автор: Toan-Thang Phan
Принадлежит: CellResearch Corp Pte Ltd

The present invention relates to the generation of a mucin-producing cell using stem/progenitor cells obtained from the amniotic membrane of umbilical cord and therapeutic uses of such mucin-producing cells.

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14-02-2013 дата публикации

Apparatus for and method of processing biological samples

Номер: US20130040376A1
Принадлежит: Life Technologies Corp

The present invention provides systems, devices, apparatuses and methods for automated bioprocessing. Examples of protocols and bioprocessing procedures suitable for the present invention include but are not limited to: immunoprecipitation, chromatin immunoprecipitation, recombinant protein isolation, nucleic acid separation and isolation, protein labeling, separation and isolation, cell separation and isolation, food safety analysis and automatic bead based separation. In some embodiments, the invention provides automated systems, automated devices, automated cartridges and automated methods of western blot processing. Other embodiments include automated systems, automated devices, automated cartridges and automated methods for separation, preparation and purification of nucleic acids, such as DNA or RNA or fragments thereof, including plasmid DNA, genomic DNA, bacterial DNA, viral DNA and any other DNA, and for automated systems, automated devices, automated cartridges and automated methods for processing, separation and purification of proteins, peptides and the like.

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28-02-2013 дата публикации

Multilayer high density microwells

Номер: US20130052649A1
Принадлежит: UNIVERSITY OF CALIFORNIA

A multilayer well device includes a first substrate comprising an array of wells having a first pattern disposed therein and a second substrate comprising an array of wells having a second pattern, complementary to the first pattern disposed therein, wherein the second substrate is secured adjacent to a face of the first substrate. A common channel is interposed between the array of wells of the respective first and second substrates and is coupled to an inlet and an outlet.

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14-03-2013 дата публикации

Method and device for the metered addition of fluids into reaction vessels

Номер: US20130064738A1
Принадлежит: RESEACHEM GmbH

Proposed is a metering device ( 87, 54 ) for introducing a fluid ( 31 ) into a reaction vessel such as, for example, a bioreactor ( 2 ). The metering device according to the disclosure comprises a closure element ( 89 ) for closing the reaction vessel, at least one drop generator ( 33 ) arranged in the closure element, and a feed line ( 91 ) serving for feeding the fluid to the at least one drop generator. The drop generator comprises a nozzle ( 36 ) for dispensing the fluid into the reaction vessel, and a valve ( 35 ). In the closed state, the valve disconnects the nozzle from the feed line. The drop generator is suitable for generating individual drops of the fluid.

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21-03-2013 дата публикации

Method and Apparatus for a Microfluidic Device

Номер: US20130068310A1

An microfluidic device and methods for its use, where the microfluidic device comprises: (a) a porous membrane, (b) a gradient layer defining a plurality of gradient micro-channels, where the gradient layer is coupled to a top surface of the membrane, (c) a distributor layer defining a plurality of distributor micro-channels, where the distributor micro-channels are coupled to the plurality of gradient micro-channels, where the distributor layer defines at least one inlet opening and at least one outlet opening, each inlet opening and outlet opening are coupled to the plurality of distributor micro-channels, and (d) self-supporting means coupled to one or more of the porous membrane, the gradient layer and the distributor layer.

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21-03-2013 дата публикации

Moving microdroplets in a microfluidic device

Номер: US20130071851A1
Принадлежит: HandyLab Inc

The present invention relates to a system and method for moving samples, such as fluid, within a microfluidic system using a plurality of gas actuators for applying pressure at different locations within the microfluidic. The system includes a substrate which forms a fluid network through which fluid flows, and a plurality of gas actuators integral with the substrate. One such gas actuator is coupled to the network at a first location for providing gas pressure to move a microfluidic sample within the network. Another gas actuator is coupled to the network at a second location for providing gas pressure to further move at least a portion of the microfluidic sample within the network. A valve is coupled to the microfluidic network so that, when the valve is closed, it substantially isolates the second gas actuator from the first gas actuator.

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21-03-2013 дата публикации

Sample preparation disposable devices and sample collection and preparation methods using same

Номер: US20130071944A1
Принадлежит: Battelle Memorial Institute Inc

An article of manufacture embodiment comprises a sample cartridge including a sample substrate, and an enclosure including a sample ingress port. The enclosure mates with the sample cartridge to define a sample container containing the sample substrate which is accessible in the sample container via the sample ingress port. The sample cartridge including the sample substrate is removable from the sample container. A sampling method embodiment comprises disposing a sample on a sample substrate in a sample container and removing a sample cartridge including the sample substrate from the sample container. An article of manufacture embodiment comprises a sample substrate, a sample container containing the sample substrate and including a sample ingress port providing access to the sample substrate in the sample container, and a sample cartridge including the sample substrate. The sample cartridge including the sample substrate is removable as a unit from the sample container.

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28-03-2013 дата публикации

Flow Step Focusing

Номер: US20130075257A1
Автор: Peter B. Howell, JR.
Принадлежит: US Department of Navy

Flow step focusing isolates and concentrates a molecule of interest by flowing a liquid comprising a molecule of interest through a main channel having an inlet and an outlet with application of a first pressure at the inlet; applying a voltage along the channel during the flowing, wherein the voltage is configured to have a polarity such that it drives the molecule of interest in a direction opposite the flow of the liquid; controlling the first pressure and/or the voltage in a manner so as to trap and concentrate the molecule of interest in a region of the main channel; and removing the concentrated molecule of interest from the channel by recovering a portion of the liquid from a side channel diverging from the main channel, wherein the side channel is maintained at a pressure lower than the first pressure. Also disclosed is an apparatus for such.

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28-03-2013 дата публикации

Liquid-transport and analytical test device

Номер: US20130078147A1
Принадлежит: SARTORIUS STEDIM BIOTECH GMBH

A liquid-transport device has a liquid-tight support ( 12 ) on which there is applied a start zone ( 24; 24′ ) for applying transport liquid to be transported and a target zone ( 26, 28; 26 a - e ) into which the transport liquid is to be transported and also a conduction zone that extends between the start zone ( 24, 24′ ) and the target zone ( 26, 28; 26 a - e ) and that has a microporous transport layer ( 14 ) in which the transport liquid flows by capillary force from the start zone ( 24; 24′ ) to the target zone ( 26, 28; 26 a - e ). The conduction zone has a multiplicity of open flow channels separated from one another by microporous bridges having open-pored side walls.

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28-03-2013 дата публикации

Device for Forming Drops in a Microfluidic Circuit

Номер: US20130078164A1
Принадлежит: ECOLE POLYTECHNIQUE

The invention relates to a device ( 1 ) for forming droplets in a microfluidic circuit, the device comprising a chamber ( 3 ) containing a first fluid and defined by two opposite walls ( 10, 11 ) that diverge relative to each other in at least one given direction, and a microchannel ( 8 ) containing a second fluid and leading into a zone of said chamber ( 3 ) that is upstream relative to the given direction, the outlet of the microchannel ( 8 ) into the chamber ( 3 ) constituting an enlargement in the flow section for the second fluid, and the enlargement giving rise to droplets ( 14 ) of the second fluid forming within the first fluid.

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28-03-2013 дата публикации

Device and Method for Detection and Quantification of Immunological Proteins, Pathogenic and Microbial Agents and Cells

Номер: US20130078615A1
Принадлежит: Individual

The present invention provides a method and device for detecting and quantifying the concentration of magnetic-responsive micro-beads dispersed in a liquid sample. Also provided is a method and microfluidic immunoassay pScreen™ device for detecting and quantifying the concentration of an analyte in a sample medium by using antigen-specific antibody-coated magnetic-responsive micro-beads. The methods and devices of the present invention have broad applications for point-of-care diagnostics by allowing quantification of a large variety of analytes, such as proteins, protein fragments, antigens, antibodies, antibody fragments, peptides, RNA, RNA fragments, functionalized magnetic micro-beads specific to CD 4+ , CD 8+ cells, malaria-infected red blood cells, cancer cells, cancer biomarkers such as prostate specific antigen and other cancer biomarkers, viruses, bacteria, and other pathogenic agents, with the sensitivity, specificity and accuracy of bench-top laboratory-based assays.

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28-03-2013 дата публикации

Device and method for detection and identification of immunological proteins, pathogenic and microbial agents and cells

Номер: US20130078620A1
Принадлежит: CARNEGIE MELLON UNIVERSITY

The present invention provides a method and device for detecting and quantifying the concentration of magnetic-responsive micro-beads dispersed in a liquid sample. Also provided is a method and microfluidic immunoassay pScreen™ device for detecting and quantifying the concentration of an analyte in a sample medium by using antigen-specific antibody-coated magnetic-responsive micro-beads. The methods and devices of the present invention have broad applications for point-of-care diagnostics by allowing quantification of a large variety of analytes, such as proteins, protein fragments, antigens, antibodies, antibody fragments, peptides, RNA, RNA fragments, functionalized magnetic micro-beads specific to CD 4+ , CD 8+ cells, malaria-infected red blood cells, cancer cells, cancer biomarkers such as prostate specific antigen and other cancer biomarkers, viruses, bacteria, and other pathogenic agents, with the sensitivity, specificity and accuracy of bench-top laboratory-based assays.

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28-03-2013 дата публикации

Microfluidic dialysis device

Номер: US20130079254A1
Принадлежит: Geneasys Pty Ltd

A microfluidic dialysis device that has a first channel for receiving a biological sample, a second channel, and a series of adjacent channels extending between the first channel and the second channel. Each of the adjacent channels pin a meniscus of the sample that arrests capillary flow between the first channel and the second channel. A bypass channel between the first channel and the second channel, the bypass channel joining the second channel upstream of the adjacent channels and is configured for uninterrupted capillary driven flow from the first channel to the second channel. Flow from the bypass channel reaches the meniscus pinned at each of the adjacent channels after the meniscus has formed to sequentially remove each of the menisci and allow flow from the first channel to the second channel via the adjacent channels as well as the bypass channel.

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