드루젠 치료 방법 및 드루젠 치료 장치의 제어 방법
The present invention refers to treatment method and treatment [...][...] method relates to control device, more specifically [...] deposited by guiding the energy into an area of treatment method and treatment [...][...][...] removing relates to device control method. The fundus region (retina) retinal (fundus area of eyeball) senses the diverted light located in the sensitive neural layer. Retinal macular (macular) is provided at the center of, called macular the photoreceptor (photoreceptor) is neuronal is. On this optical receptors are described directed to human tumor if receive light has the same structure for generating a high frequency electrical signal, the polyethylene glycol is grafted on the photoreceptor is a central vision was looking something hwang half are important in maintaining the plays the role performs. The cross sectional structure retina also Figure 1 shows a cross section is shown is roughly. As shown in 1 also, fundus a plurality of photoreceptor formed anterior epithelium of cornea (P) comprises the rectangular plate like nut 3. Photoreceptor (P) the inferior side of the retinal pigment epithelial cells (retinal pigmented epithelium cell, RPE cell) (R) and Bruch's membrane (B) is (Bruch ' s membrane), is calculated if both blood vessels are [...] film from a lower side of a a choroidal (Choroid) (C) is located. The Bruch's membrane (C) choroidal against retinal through (B) nutrients is supplied oxygen and inwardly, a photoreceptor has (R) cells RPE while supporting the Bruch's membrane (P) is supplied through the (B) photoreceptor (P) having an oxygen content of nutrients performs disposed. Age is reflected from the retina increases RPE cells generated waste being predominantly in a (B) or between (R) and a Bruch's membrane is of a car is provided to simplify (B) Bruch's membrane. Such [...] vacate waste products (drugen) (D) sees the same. [...] RPE cells (D) is accumulated between (B) Bruch's membrane and a (R) is (R) is separated from (B) Bruch's membrane RPE anterior epithelium of cornea (separation) is dry macular degeneration is the development of (Dry age related macular degeneration). Furthermore, (D) [...] is accumulated while is induced inflammatory vascular endothelial growth factor (VEGF, vascular endothelial growth factor) is made is releasing hgrf to the outside of cells. And enhance growth of the angiogenesis is, the angiogenesis such weakened Bruch's membrane (B) grown into retinal through the severe wet macular degeneration and downwardly on a curved portion to developments to the so-(Wet age related macular degeneration), the start of a vehicle being. can cause blindness, induces. Such such as retinal associated for treating diseases using various forms of therapeutic method for preventing an emerging angiogenesis antibodies scanning therapy is (antiangiogenic therapy). The for scanning the Anti-VEFG, VEGF a on angiogenesis is suppressed to thereby. for halting the process. Just, these additional of inhibiting angiogenesis in a is, between the Bruch's membrane cells RPE continue [...] since is present, and a complete treatment which cannot the present method, additional for preventing angiogenesis should go continuously treated by transdermally having a regular interval are marked on. The present invention refers to said electrically connected for the, exist between the Bruch's membrane cells RPE [...] a therapeutic is removed from the. for providing method. To achieve said purposes, the present invention refers to the patient's fundus (fundus) (drugen) confirming the position of step [...] , the include of the position present [...] said area of treatment (treatment area) determining said and by guiding the energy to a treatment area [...][...] including removed by two step processes of said method provides treatment. Wherein, said said treatment region the energy of the area of treatment fundus tissue are said withdrawing direction (the choroid) choroidal [...] improving function of the objective compound.. Specifically, the energy region treatment said [...] adjacent said retinal pigment epithelial cells (retinal pigment epithelium cell, RPE cell) is said retinal pigment epithelial cells and Bruch's membrane (Bruch ' s membrane) between said vacate waste products function as a processing liquid discharged to the outer side Bruch's membrane the objective compound. improved. Wherein, said step to transfer energy to a treatment area at a location adjacent the [...] said to the retina of the dye consists of to for delivering energy to epithelial cells. And, said step to transfer energy to a treatment area to be inspected area of treatment said to generate energy consists of to deliver. Wherein, said area of treatment is made of a irradiation context of a quantity absorbed film which is usually less than said retinal pigment epithelial cells, than in an alternative fabrication method of photoreceptor said may be many. Specifically, said a 510 nm to 590 nm wavelengths between may. And, said said of the area of treatment of the epithelial cells over the dye retinal said selectively temperature the rolls can raise the. In particular, said said area of treatment which is illuminated by light width temperature rise film context of said retinal pigment which is usually less than discharge port unit so that rising width of the epithelial cells over the temperature, said temperature of the hot melt adhesive hose light acceptor can be larger than rising width. Specifically, error of said which lasers, said laser having the aforementioned prescribed pulse width to 5 micro s hereinafter can be constructed to. Wherein, said step to transfer energy to a treatment area of the epithelial cells over the dye retinal said reproducing (regeneration) to induce said retinal pigment epithelial cells (thermal damage) applying which thermally damage, said step to transfer energy to a treatment area said originating from the area of treatment based on thermoresistive signal said energy delivering. can terminate. And, the step of determining said area of treatment [...] said wider than the area located so as to form the line [...] position said boundary of said to the outside of the resonance chamber of the area of treatment boundary used for multi, specifically said [...] located 15-2 from the boundary of the one cell by said spaced-apart electrical retinal pigment epithelial cells can be decides to includes. While, a said purpose of the invention, based upon the location [...] present in retina the treatment determining an area, said and to transfer energy to a treatment area, said sensed in the area of treatment based on thermoresistive signal delivering said energy including terminating [...] treatment device control method can be achieved even with. The present invention along the axis relative to the, deteriorated further lesions so as to limit without being protruded, of lesions caused by complete lesions if the [...] that the therapeutic to recover it is possible to. Furthermore, by means of the light beam non-invasive manner is checked treatment, to report a patient for the treatment and reduced pain or adhesive which is formed between the first and transmits unit is off. Also shown is roughly the cross sectional structure retina Figure 1 shows a cross section, RPE layer in retinal also Figure 2 shows a light irradiated with a coarse shown in the properties, Thermal damages with such film context and the Figure 3 RPE culturing after photographs on Figures of users, Figure 4 shows a pulse width according to fundus of tissue and also light distribution graph, Figure 5 shows a-degree pulse type optical when irradiated with a fundus of tissue graph changes and, Figure 6 shows a laser is absorbed also fundus tissue that changes the cross section shown in the Figures of users, Figure 7 shows a one embodiment of the present invention also: an [...] treatment device shown is roughly block, Figure 8 shows a one embodiment of the present invention: an [...] treatment method also shows an order that is and, Figure 9 shows a area of treatment in Figure 8 also determining a coarse is shown in the. In drawing hereinafter [...][...] consults a treatment method and treatment device according to an embodiment of the present invention relates to control method. Below in the description of each component based on the positional relationship described a drawing in principle. For facilitating the drawing and of the description of the invention are closed to discharge the hot air or and if necessary also for the. may be indicated picture. Therefore, the present invention are not limited the various addition the device with a low, the modification or embodiment is the decoration plate further comprises an. Prior invention as described above wherein, fundus tissue photoreceptor unit is connected to multi-layer optic nerve (P), and (R) (C) choroidal RPE anterior epithelium of cornea for forming at the interface with the (B) Bruch's membrane consists of including. And, the Bruch's membrane RPE anterior epithelium of cornea (B) (R) (C) choroidal through a combined oxygen from of photoreceptor nutrients and is supplied to (P), resulting from photoreceptor (P) through (B) Bruch's membrane vacate waste products (C) choroidal is configured of abnormal States of oil into a blood vessel of a. Fundus tissue while aging proceeds, generated during [...] RPE anterior epithelium of cornea (B) or between (R) and Bruch's membrane printed cathode deposited on internal (B) Bruch's membrane RPE anterior epithelium of cornea [...] by separation of (R) and which has a weight corresponding to weight (separation) (B) Bruch's membrane. Thereby (D) [...] photoreceptor of the positions of the depositions can be detected in the area (P) and (R) anterior epithelium of cornea RPE admit enough nutrition and of oxygen supply for various functions returned to the above stage occurs is prevented from releasing with symmetrical force (dry macular degeneration contains an effective amount of Hesperidin) (Dry age related macular degeneration). [...] in addition a controller to stop the recording during the oxygen leading to formation angiogenesis RPE c language so as to penetrate through and the Bruch's membrane while penetration is calculated if both blood vessels are until between wet macular degeneration is connected to the semiconductor layer. likely to be atm adaptation layer type 2 (wet age related macular degeneration). Therefore, the present invention refers to [...] deposited position in [...] removing [...] the method provides treatment. Wherein, (D) [...] an energy provided have been deposited can be light energy. By various kinds of optical window is used as an ion injection, the present in the embodiment the wavelength selective in use laser. Just, is addition laser diode, LED, various lamps and the like can be using a light source. As shown in 2 also, photoreceptor the well is not absorption, melanogaster some (M) such as the anterior epithelium of cornea RPE containing into blue-green pigment with good absorption properties ID light at wavelengths equal to or. In this case, photoreceptor thus minimizing the impact on the objective compound.. Test result, having a wavelength of 590 nm to 510 nm an optical receptor (P) substantially not being available for absorption and substantially it has been discovered that the selectively permeate. And, corresponding wavelengths are at least 50% (R) anterior epithelium of cornea RPE been absorbed, portions of the light passing through the (R) anterior epithelium of cornea RPE the choroidal manufacturing glutathione absorbed (C). These properties are 520 nm to 540 nm in the same page of the light having the wavelength that is between it has been discovered that the significantly. As such, (D) have been deposited [...] that provide energy for position when, after passing a time predetermined [...] adjacent fundus tissue RPE while having improved properties of between and the Bruch's membrane, present in Bruch's membrane or outer film Bruch's [...] , i.e. choroidal is shown to cause a includes a base portion automatically mounted on. This pumping characteristics in particular RPE anterior epithelium of cornea, i.e. material (transportation) the property caused by to avoid the may be extended in as a result of.. RPE cells is magnetic reproduction ability and a good tissue. Is as shown in Figure 3, and the RPE context film selectively irradiated with light thermally damage-clad tissue after culture even as the result of. processing can be confirmed. Therefore, excellent selectivity tissue by irradiating the light of a wavelength RPE overclothed damage to anterior epithelium of cornea, the magnetic reproduction anterior epithelium of cornea RPE the appointed process consists while the processing various functions are a reduction in the inner pressure of is so that it recovers the. Such playback mode (R) anterior epithelium of cornea RPE through pumping of which specific viscosity is, (D) [...] thereby is discharged to the outer side (B) Bruch's membrane is improved property is determined. Wherein, as shown in 4 also, according to the light irradiation pulse width (pulse width) by photo-orradiation by fundus tissue temperature rise of. may be different from the user properties. Photoreceptor (P) for buffer layer material is even not arranged, light absorbing having excellent RPE anterior epithelium of cornea adjacent photoreceptor (P) (R) the RPE anterior epithelium of cornea by with a ceramic material can be to the. Therefore, to minimize a damage of a photoreceptor (P) while RPE anterior epithelium of cornea thermal and raising the temperature of the selective temperature of any of such possibly damaging streams utilizes light of a pulse width, such light pulse width (wide-bandwidth mode-locked pulse light irradiation time in two 1) can be the 5 micro s hereinafter. These features micro 2 pulse width a massage cream, an essence, significantly more if the s hereinafter, 520 nm to 540 nm light at wavelengths equal to or between approximately 1.7 micro s having the aforementioned prescribed pulse width to a well these features when been it. In this case, RPE anterior epithelium of cornea such that the gaseous support medium rises highest temperature of (R), choroidal (C) temperature of constant rise but in addition, (R) the RPE anterior epithelium of cornea photoreceptor (P) at a location adjacent the and even in a case of a low temperature rise is substantially thing which of hope appeared.. Figure 5 shows a-degree pulse when irradiated laser photoreceptor and the RPE temperature change of timing graph is. Also as shown in 5, an optical (R) when irradiated with a each pulse RPE anterior epithelium of cornea to thermally damage that the laundry falls is applied to the is is observed temperature rises high. Dynamically allocates the channel signals to the, each photoreceptor (P) the temperature fine pulse but presence of variations the level not damage is applied to the. Chip selection signal is enabled, the present invention refers to treatment or Retinyl selective (selective retina treatment) without damage to the element receptor film with lights through RPE is able to derive an playback of cells. As the above-mentioned, adjacent impact on photoreceptor (P) prevents the, RPE cells (R) to be " self-playout such a degree that it can thermal damage may provide a energy applied. Therefore, position have been deposited (D) [...] a energy generated from the tissue in a predetermined based on thermoresistive signal corresponding spot (spot) in may the scanout engine finishes. Wherein, a signal generated from the tissue in wherein the various signals which can be mixture by the addition of an initiator. Such a signal a a plurality of lift and lower mechanisms thermal by energy caused by damage to which the DUTS may be, such a signal, to an optical signal, acoustic wave signal, electrical signal may be in the form of a polyimide resin, such.. As one, optical when irradiated with a RPE cells (melanosome) (M) some melanogaster of (R) for absorption of said energy raises the temperature an ultrasonic signal from the ultrasonic sensor using a signal by (micro cavitation) (mc) fine bubbles can be. Also as shown in 6, light is any one of laser light increases with increasing temperature cells RPE the fine bubbles is expansion to maximally decrease an opening area of (mc), light at the resonance detection unit detects a of minute bubbles analysis can be sensing, using the same thermal (R) cells RPE detects the damage the piston returns to an original of energy whether provided. controlling the. All for the illustrated method along the axis relative to the, position information of the sensors is (D) [...] when energy (B) (R) or Bruch's membrane RPE anterior epithelium of cornea discharge of adjacent tissue, such as oxide are [...] choroidal is removed it is possible to. In this case, provided RPE the energy provided to energy selectively anterior epithelium of cornea RPE as oxydation and scorching, respectively polyetherpolyol and cells RPE anterior epithelium of cornea through self-renewing capability pumping ability data and gate lines adjacent photoreceptor of preventing injuries to.. Hereinafter reference to 8 and 7 is, the aforementioned using a [...] treatment method and treatment [...] for realizing the same device to specifically, outputs a relay driving signal.. Figure 7 shows a one embodiment of the present invention also: an [...] treatment device shown is roughly block degrees and is about, one Figure 8 of the present invention: an embodiment is shown that a order [...] treatment method. First, also 7 as shown in an inspection unit [...] treatment device (10), control unit (20), light source (30), beam delivery unit (40) and signal detection unit (50) can be constructed including. Inspection unit (10) the [...] operated by passing through (D) of device for detecting the position [...] as various fundus Image-taking can be an apparatus for. The test unit (10) the [...] treatment device may be is used for, inspecting. may also be used a device. And, control unit (20) the inspection unit (10) in accordance with the position information of the identified [...] the treatment can be according to a mode. And, control unit (20) a light source (30) and beam delivery unit (40) for driving content is configured on the first insulating layer to the area of treatment and irradiation output light irradiated with a pattern a starting. Light source (30) a therapeutically region generate light energy. The, light source (30) RPE anterior epithelium of the SRT is still acceptable for treatment to which exhibit high absorbency to (R) to be machined is irradiated with a light beam having a wavelength, (R) anterior epithelium of cornea RPE photoreceptor is inducing thermal damage (P) of memory devices by preventing damage of the V-a pulse width can be. In one example, the present in the embodiment 510 nm to 590 nm in 5 micro s hereinafter has wavelengths between having the aforementioned prescribed pulse width to which the bottom surface, more particularly 527 nm 1.7 micro light at wavelengths equal to or generate to have the pulse width of modulation pulse waves s. Beam delivery unit (40) the light from the light source that is. of such constitution that a pair of distribution treatment. Beam delivery unit (40) a reflective mirror, a plurality of scanner and various optical devices can be configured by employing. Such beams delivery unit (40) a control unit (20) under the control of, the predetermined area of treatment in a given position transmitted from a transmitter to calculate a. light is any one of laser light. On the other hand, detected (50) with a ceramic material treatment region of may detect signal. Beam delivery unit (40) treated by rays or laser beams such that region, has a area of treatment and the energy transmitted changes by controlling etch conditions of the nitride layer in the form a variety of applications due to. may be seen signal. Detected (50) of the area of treatment such signals of the tissue change whether ascertaining the.. RPE cells when irradiated with a light in the embodiment the difference in the resin black matrix (R) is the distribution of a beat length between into reflected light or reflective information may be detected via phase information consists of to. [...] : an embodiment the display screen in the X-or more treatment device (1) but described outlines to, the present invention to explain the which the persons can just in an exemplary configuration the addition has a watch upper surface is the decoration plate further comprises an embodiment. [...] treatment device (1) of Figure 7 the in Figure 8 using [...] treatment method and treatment method are described control device. First, to treat (D) [...][...] detecting a position (S10) is performed on. Step present the aforementioned fundus Image-taking device, fundus tomography device such as inspection unit (10) is performed by the, inspection unit analyze captured Image in distributed in retina[...] position. to detect (L1). Upon detection of [...] position (L1), (L2) determining a area of treatment can be (S20). [...] position (L1) (L2) the area of treatment can be determined to include. And, [...] the tissue and which are involved in the lower emissions of carbon (D) [...] match precisely the position and of a location where tissue as well as the involved considers the code at a location adjacent the tissue. Therefore, also the step of determining the area of treatment as shown in 9, outer of a border located [...] (L2) to the area of treatment located [...] by establishing boundary of area of treatment than the area can be further nitride layer. Area of treatment located [...] bounds (L2) from the boundary of the 10 to 200 micro m or more can be setting improves the filling of the filling material. Water flow and in another instance the, bounds area of treatment located [...] RPE from the boundary of the spaced apart two 15-2 cells includes position. can be set so as to. While, when a cursor area of treatment energy to a treatment area (S30) performs delivering. The step to transfer energy to a treatment area control unit (20) by control of the wavelength of the light, light pulse width, the light irradiation is performed is determined and pattern, etc., is to respond to light source (30) and beam delivery unit (40) the drive the can be to transfer energy. Invention as described above wherein prior here, 590 nm to 510 nm has wavelengths between having the aforementioned prescribed pulse width to 5 micro s hereinafter at or light, more particularly 527 nm light at wavelengths equal to or the pulse width of 1.7 micro s irradiates the light having a. And when delivery radiation of the area of treatment, an object by using a histogram critical wavelength RPE anterior epithelium of cornea taken up mainly by (R), (R) anterior epithelium of cornea RPE the lower elevating the temperature of a from causing damage. The present step addition choroidal RPE anterior epithelium of the temperature the absorbent portions of the light (C) in addition with some can be degraded and rise, photoreceptor (P) side and not being available for absorption and substantially light can penetrate. The present step detected during a (50) with continuously energy transfer generated in fundus by and detect for measuring a signal can be constructed to. Transmitted signal vary dimension of side surface of active tissue eyeground by a thermally generated in a blade embodiment the frequency reference signal is, specifically RPE anterior epithelium of cornea (M) for the vaporization of some melanogaster within (R) generated by method of may be. And, energy transfer phase the signal generating responding to to facilitate, same light spot (spot) in the form of pulses each pulse the ejection of the while and gradually increases the output of light it to irradiate the.. And, with the region identification treatment during to transfer energy to a point, caused by changes in the tissue a signal if sensed, control unit (20) such based on thermoresistive signal and adjusting energy to be delivered to the area of treatment can be (S40). For example, bubble generating the system is moved the RPE cells (R) a player to audio processing unit in order to process is deemed as thermal epoxy high energy provided to cease. it. Or, bubble generating the system is moved bubble generating are confirmed from the point irradiated light pattern irradiation constant to the width of an air bearing a session is ended after. Or multiple stages of such treatment at of spots through and the has completed, the beam delivery unit in the area of treatment and move the location irradiated spot then after the aforementioned treatment and repeating the steps of updating, .may be carried out. [...] treatment method taught or more along the axis relative to the, adjacent tissues [...] deposition of the positions of the, i.e. RPE of Bruch's membrane cells by enhancing an old voice recognition function in retinal the opening/closing valve is direction choroidal [...][...]. can remove. Thereby, dry macular degeneration lesion having essentially treating a patient in addition, it is possible to, future wet macular degeneration effectively the risk of to developments to the so-of the catch basin and shielding the.. Just, above for picking up skill detailed part of the present invention but in the embodiment, the present invention is not limited aspect said embodiment. The present invention, to which a mobile station belongs to the technical field normal knowledge of if a person, defined in the range claimed with an outside of the range of the in the liquid chamber of the present invention without the or modifying the present invention stored modified embodiment the decoration plate further comprises an. two found. The present invention relates to a drugen treatment method and a method for controlling a drugen treatment device. The present invention provides a drugen treatment method comprising the steps of: confirming a location of drugen in a fundus of a patient; determining a treatment area by including a location on which the drugen exists; and removing the drugen by transferring energy to the treatment area. Patient's fundus (fundus) the [...] confirming the position of step (drugen); said [...] the area of treatment include of the position present determining a (treatment area); by guiding the energy to a treatment area inefficiency due to a duplication of encoding said removing [...] ; [...] including a treatment method. According to Claim 1, said said treatment region the energy of the area of treatment fundus tissue are said withdrawing direction (the choroid) choroidal [...] function [...] characterized by improve the treatment method. According to Claim 1, said treatment region [...] the energy adjacent said retinal pigment epithelial cells (retinal pigment epithelium cell, RPE cell) is said retinal pigment epithelial cells and Bruch's membrane (Bruch ' s membrane) between said vacate waste products function as a processing liquid discharged to the outer side Bruch's membrane improve the treatment method characterized by [...]. According to Claim 1, said step to transfer energy to a treatment area at a location adjacent the [...] said to the retina of the dye to for delivering energy to an epithelial cells characterized by [...] treatment method. According to Claim 4, said step to transfer energy to a treatment area to be inspected area of treatment said to generate energy is transmitted to the treatment method characterized by [...]. According to Claim 5, said said said retinal pigment epithelial cells of the area of treatment are absorbed by the positive cell for optical of the area of treatment in an alternative fabrication method of treatment method characterized by keen, it seems than [...]. According to Claim 6, said area of treatment is made of a irradiation said context of a quantity absorbed film which is usually less than said retinal pigment epithelial cells, said photoreceptor in an alternative fabrication method of treatment method characterized by keen, it seems than [...]. According to Claim 6, said a 510 nm to 590 nm wavelengths between [...] treatment method characterized by that the same is provided with at. According to Claim 5, said said of the area of treatment of the epithelial cells over the dye retinal said selectively temperature [...] treatment method characterized by to raise the. According to Claim 9, said area of treatment retinal said by light ray illuminated from of the epithelial cells over the dye that the gaseous support medium rises and highest temperature, said photoreceptor temperature of does not substantially ascending [...] treatment method characterized by. According to Claim 10, said said area of treatment which is illuminated by light width temperature rise film context of said retinal pigment which is usually less than discharge port unit so that rising width of the epithelial cells over the temperature, said temperature of the hot melt adhesive hose light acceptor characterized by the cost of large than rising width [...] treatment method. According to Claim 9, error of said which lasers, said laser having the aforementioned prescribed pulse width to 5 micro s hereinafter [...] treatment method characterized by to. According to Claim 4, said step to transfer energy to a treatment area of the epithelial cells over the dye retinal said reproducing (regeneration) to induce said retinal pigment epithelial cells thermally damage [...] treatment method characterized by adding (thermal damage). According to Claim 13, said step to transfer energy to a treatment area said originating from the area of treatment based on thermoresistive signal said energy delivering treatment [...] characterized by to to terminate the method. According to Claim 14, said thermal changes of the epithelial cells over the dye retinal said signal generated by [...] treatment method characterized by signal. According to Claim 4, the step of determining said area of treatment [...] said located so as to form the line wider than the area of a border located [...] said outward boundary of said area of treatment [...] characterized by setting the treatment method. According to Claim 16, said step of determining said area of treatment located [...] 15-2 from the boundary of the one cell by said spaced-apart electrical retinal pigment epithelial cells to include [...] treatment method characterized by determining. in retina present the treatment based upon the location [...] determining an area; said delivering energy to a treatment area; and, said sensed in the area of treatment said energy based on thermoresistive signal terminating the delivering; [...] treatment device including a control method. According to Claim 18, said treatment region [...] the energy adjacent said retinal pigment epithelial cells (retinal pigment epithelium cell, RPE cell) is said retinal pigment epithelial cells and Bruch's membrane (Bruch ' s membrane) between said vacate waste products function as a processing liquid discharged to the outer side Bruch's membrane improve the control method characterized by [...] treatment device. According to Claim 19, said a perceived signal in the area of treatment and the energy transmitted by said retinal said thermal changes of the epithelial cells over the dye generated by device control method characterized by signal treatment [...].