Laser-produced porous surface

30-11-2021 дата публикации
Номер:
US0011186077B2
Контакты:
Номер заявки: 42-68-1717
Дата заявки: 16-02-2021







CPC - классификация

AA6A61A61FA61F2A61F2/A61F2/3A61F2/30A61F2/307A61F2/3076A61F2/30767A61F2/3077A61F2/30771A61F2/309A61F2/3090A61F2/30907A61F2/3094A61F2/3096A61F2/30965A61F2/34A61F2/36A61F2/366A61F2/3662A61F2/38A61F2/385A61F2/3859A61F2/389A61F20A61F200A61F2002A61F2002/A61F2002/3A61F2002/30A61F2002/300A61F2002/3000A61F2002/30006A61F2002/3001A61F2002/30011A61F2002/301A61F2002/3015A61F2002/30153A61F2002/3019A61F2002/30199A61F2002/302A61F2002/3026A61F2002/30261A61F2002/309A61F2002/3091A61F2002/30915A61F2002/3092A61F2002/30929A61F2002/3093A61F2002/3096A61F2002/30968A61F2002/3097A61F2002/30971A61F22A61F223A61F2230A61F2230/A61F2230/0A61F2230/00A61F2230/001A61F2230/0019A61F2230/006A61F2230/0063A61F2230/008A61F2230/0082A61F225A61F2250A61F2250/A61F2250/0A61F2250/00A61F2250/001A61F2250/0015A61F2250/002A61F2250/0023A61F23A61F231A61F2310A61F2310/A61F2310/0A61F2310/00A61F2310/000A61F2310/0001A61F2310/00017A61F2310/0002A61F2310/00023A61F2310/00029A61F2310/0009A61F2310/00095A61F2310/001A61F2310/0013A61F2310/00131A61F2310/004A61F2310/0040A61F2310/00401A61F2310/00407A61F2310/0041A61F2310/00413A61F2310/0049A61F2310/00491A61F2310/005A61F2310/0054A61F2310/00544BB2B22B22FB22F1B22F10B22F10/B22F10/2B22F10/20B22F10/28B22F10/3B22F10/36B22F10/366B22F10/37B22F10/38B22F10/8B22F10/80B22F2B22F23B22F230B22F2301B22F2301/B22F2301/1B22F2301/15B22F2301/2B22F2301/20B22F2301/205B22F2301/3B22F2301/35B22F29B22F299B22F2999B22F2999/B22F2999/0B22F2999/00B22F3B22F3/B22F3/1B22F3/11B22F3/110B22F3/1103B22F3/111B22F3/1115B22F7B22F7/B22F7/0B22F7/00B22F7/004B23B23KB23K2B23K21B23K210B23K2101B23K2101/B23K2101/3B23K2101/35B23K2103B23K2103/B23K2103/0B23K2103/05B23K2103/08B23K2103/1B23K2103/14B23K2103/2B23K2103/26B23K2103/5B23K2103/50B23K26B23K26/B23K26/3B23K26/38B23K26/382B23K26/4B23K26/40B29B29CB29C6B29C64B29C64/B29C64/1B29C64/15B29C64/153B3B33B33YB33Y1B33Y10B33Y10/B33Y10/0B33Y10/00B33Y7B33Y70B33Y70/B33Y70/0B33Y70/00B33Y8B33Y80B33Y80/B33Y80/0B33Y80/00CC2C23C23CC23C2C23C24C23C24/C23C24/0C23C24/04C23C24/1C23C24/10C23C26C23C26/C23C26/0C23C26/02C23C4C23C4/C23C4/0C23C4/02C23C4/1C23C4/12C23C4/18YY0Y02Y02PY02P1Y02P10Y02P10/Y02P10/2Y02P10/25

Цитирование НПИ

Akamaru et al., “Healing of Autologous Bone in a Titanium Mesh Case Used in Anterior Column Reconstruction After Total Spondylectomy”, SPINE vol. 27, No. 13, 2002, pp. E329-E333.
Australian Examination Report for Application No. 2013202075 dated Feb. 13, 2015.
Australian Examination Report for Application No. 2013202686 dated Aug. 7, 2014.
Bobyn et al., “The optimum pore size for the fixation of porous-surfaced metal implants by the ingrowth of bone”, Clinical Orthopaedics and Related Research, 150; 263-270 (1980).
Canadian Office Action and Examination Search Report for Appln. No. 2,860,188 dated Jun. 4, 2015.
Canadian Office Action for Application No. 2,529,884 dated Mar. 27, 2013.
Cheah et al., Automatic Algorithm for Generating Complex Polyhedral Scaffold Structures for Tissue Engineering, Tissue Engineering, vol. 10, No. 3/4, pp. 595-610, Mar. 2004.
Chen, “3D Texture Mapping for Rapid Manufacturing”, Computer-Aided Design and Applications, University of Southern California, vol. 4, No. 6, pp. 761-771, Jan. 1, 2007.
Cheung et al., “Spinal Instrumentation Overview in Lumbar Degenerative Disorders: Cages”, Chapter 26 / Spinal—Instrumentation Overview, Section IV/Surgery, Lumbar Spine: Official Publication of the International Society for the Study of the Lumbar Spine (3), 2004, pp. 286-291.
Chua, C.K. et al., Development of a Tissue Engineering Scaffold Structure Library for Rapid Prototyping. Parts 1 and 2, International Journal of Advanced Manufacturing Technology, Feb. 2003, vol. 21, pp. 291-312.
Created and Designed by Shaman Gaspar, Maintained by Peter Fox, “Direct Laser Remelting”, “Project Web Site”, Using Lasers to Grow 3D object on Stainless Steel; The University of Liverpool 2002; http://mserc.liv.ac.uk/research/dlr/dlr_html.
Cunningham et al., “Design of Interbody Fusion Cages: Historical Considerations and Current Perspectives in Cage Technology”, Surgical Techniques; Spinal Implants; Chapter 29-31, 2006, pp. 421-465.
Custom Design and Manufacturing of Canine Knee Implants,<http://www.lib.ncsu.edu/resolver/1840.16/670>, Issued Dec. 2, 2003.
Dr. Kerron Harvey, producer, Research Intelligence, The University of Liverpool, Issue 13, Jun. 2002.
EBI Learning Center Cafe flyer, EBI Spine EBI & Interpore Cross, NASS Booth 801, prior to Sep. 27, 2005, Philadelphia, PA.
Engelbrecht et al., Cellular Structures for Optimal Performance, Georgia Institute of Technology & Paramount Industries, Inc., 2009.
European Examination Report for Application No. 10162970.7 dated Feb. 9, 2016.
European Examination Report for Application No. EP10162970.7 dated Aug. 4, 2017.
European Examination Report for Application No. EP10162970.7 dated Dec. 3, 2013.
European Search Report and Written Opinion, EP05028133, dated May 11, 2010.
European Search Report and Written Opinion, EP06127218, dated May 6, 2010.
European Search Report and Written Opinion, EP10162970, dated Jun. 17, 2010.
Filiz et al., Int. Journal of Machine Tools & Manufacture, 48, 459-472, 2008.
H.J. Niu and I.T.H. Chang, “Selective Laser Sintering of Gas and Water Atomized High Speed Steel Powders,” Scripta Materialia vol. 41, No. 1, (1999), pp. 25-30.
Hawley's Condensed Chemical Dictionary, 14th edition. John Wiley & Sons, 2002. Definition: sintering.
Heinl et al., Cellular Ti-6AI-4V structures with interconnected macro porosity for bone implants fabricated by selective electron beam melting, Acta Biomaterialia, vol. 4, Issue 5, pp. 1536-1544, Sep. 2008.
Hollander et al., Structural mechanical and in vitro characterization of individually structured Ti-A1-4V produces by direct layer forming, Biomaterials, pp. 1-9, 2005.
Inter Fix Threaded Fusion Device, Important Medical Information, 14 pages, date: 1999.
Interlocutory Decision for Application No. EP 06125422.3 dated Nov. 14, 2012.
Kim et al., “Spinal Instrumentation Surgical Techniques”, Thieme Medical Publishers, Inc., New York, NY, Copyright 2005, 41 pages.
Lin et al., “Interbody Fusion Cage Design Using Integrated Global Layout and Local Microstructure Topology Optimization”, SPINE vol. 29, No. 16, pp. 1747-1754, Aug. 2004.
Lin et al., “Structural and mechanical evaluations of a topology optimized titanium interbody fusion cage fabricated by selective laser melting process”, Received Jan. 31, 2006, revised Aug. 25, 2006, accepted Dec. 2006, Published online Apr. 5, 2007 in Wiley Interscience (www.interscience.wiley.com). DOI: 10.1002/jbm.a.31231. 8 pages.
McAfee et al., “Current Concepts Review: Interbody Fusion Cages in Reconstructive Operations on the Spine”, The Journal of Bone and Joint Surgery, vol. 81, Issue 6, Jun. 1999, pp. 859-880.
Meiners et al., “Direct Generation of Metal Parts and Tools by Selective Laser Powder Remelting (SLPR)”, W. Meiners, C. Over, K. Wissenbach, R. Poprawe, pp. 655-661 Austin, Texas, Aug. 9-11, 1999.
N.K. Vail, L.D. Swain, W.C. fox, T.B. Aufdlemorte, G. Lee, J.W. Barlow, “Materials for biomedical applications,” Materials and Design, 20, 1999, pp. 123-132.
Notice of Opposition for EP Application No. 06125422.3 dated Jul. 4, 2011.
PCT/US2008/008955 International Preliminary Report on Patentability dated Feb. 4, 2010.
PCT/US2008/008955 International Search Report and Written Opinion dated Dec. 2, 2008.
Patello-femoral Arthroplasty X-ray Results, Stryker Howmedica Osteonics, published on or before Apr. 5, 2011.
Protek Cementless Replacement of the Acetabulum by E. Morscher, published on or before Apr. 5, 2011.
R. Morgan, C.J. Sutcliffe, W. O'Neill, “Experimental investigatoin of nanosecond pulsed Nd:YAG laser re-melted preplaced powder beds,” Rapid Prototyping Journal, vol. 7, No. 3, 2001, pp. 159-172.
R.H. Morgan, A.J. Papworth, C. Sutcliffe, P. Fox, W. O'Neill, “High density net shape components by direct laser re-melting of single phase powders,” Journal of Materials Science, 37, 2002, pp. 3093-3100.
Stephen D. Kuslich, MD, “Lumbar Interbody Cage Fusion for Back Pain: An Update on the Bak (Bagby and Kuslich) System”, SPINE: State of the art reviews—vol. 13, No. 2, May 1999, pp. 295-311.
The Metals Handbook, Desk Edition, 2nd Edition, ASM International, 1998, p. 29.
Third Party Observation for EP05028133.6 dated Mar. 25, 2019, 3 pages.
Third Party Observation for EP05028133.6 dated May 18, 2020, 3 pages.
Tuan et al., “Application of Micro CT and Computation Modeling in Bone Tissue Engineering”, Computer-Aided Design, vol. 37, No. 11, Sep. 2005, pp. 1151-1161.
Vureal et al., Plasma-sprayed oxide ceramics on steel substrates, Surface Coatings and Technology, 97 (1997) 347-354.
Wang et al., “A Hybrid Geometric Modeling Method for Large Scale Conformal Cellular Structures,” ASME Design Engineering Technical Conferences, Sep. 2005, 7 pages.
Wang, Computer-Aided Design Methods for Additive Fabrication of Truss Structures, Georgia Institute of Technology, 2002.
Williams et al., “CT evaluation of lumbar interbody fusion: Current concepts”, AJNR Am J Neuroradiol 26:2057-2066, Sep. 2005.
Williams, et al., “Advances in Modeling the Effects of Selected Parameters on the SLS Process,” Rapid Prototyping Journal, Jun. 1, 1998, pp. 90-100, vol. 4, No. 2.
Zdeblick et al., “LT-CAGE—Lumbar Tapered Fusion Device—Surgical Technique”, Medtronic Sofamor Danek, 25 pages, Copyright 2000.
“Solid Freeform Fabrication”, IEEE Spectrum, Feb. 1999, pp. 34-43.
Получить PDF