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Data communication system for control of transcutaneous energy transmission to an implantable medical device 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61B-005/02
  • A61N-001/08
  • A61N-013/78
출원번호 US-0714449 (1996-09-16)
발명자 / 주소
  • Nedungadi Ashok P.
  • Wang Xintao
출원인 / 주소
  • Sulzer Intermedics Inc.
대리인 / 주소
    Merkling
인용정보 피인용 횟수 : 232  인용 특허 : 0

초록

A data communication system for control of transcutaneous energy transmission to an implantable medical device is disclosed having an implantable medical device with rechargeable batteries and a single coil that is employed both for energy transmission and data telemetry. Control circuitry in the im

대표청구항

[ We claim as our invention:] [1.] An implantable device, comprising:a battery capable of being recharged by a transcutaneous energy transmission device;a coil that selectively couples to said battery via a switch, said coil receiving energy from said transcutaneous energy transmission device for ch

이 특허를 인용한 특허 (232)

  1. Kast, John E.; Deininger, Steve T.; McMullen, Raymond F., Accessory apparatus for improved recharging of implantable medical device.
  2. Forsell, Peter, Accessory for an implant.
  3. Stanley Siu-Chor Chim ; Jason Chih-Shu Lee, Active feed forward power control loop.
  4. Schmeling,Andrew L; Olson,David P; Schommer,Mark E; Scott,Erik R; Howard,William G.; Phillips,William C, Actively cooled external energy source, external charger, system of transcutaneous energy transfer, system of transcutaneous charging and method therefore.
  5. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Leibovitz, Alfred; Rofe, Arik, Adjustable inductive power transmission platform.
  6. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Leibovitz, Alfred; Rofe, Arik, Adjustable inductive power transmission platform.
  7. Azancot, Yossi; Ben-Shalom, Amir; Rofe, Arik; Greenwald, Oola; Leibovitz, Alfred; Oz, Ami, Adjustable inductive power transmission platform.
  8. Olson, David P.; Schmeling, Andrew L.; Nelson, Steve J., Alignment indication for transcutaneous energy transfer.
  9. Olson, David P.; Schmeling, Andrew L.; Nelson, Steve J., Alignment indication for transcutaneous energy transfer.
  10. Olson, David P.; Schmeling, Andrew L.; Nelson, Steve J., Alignment indication for transcutaneous energy transfer.
  11. Phillips, William C.; Olson, David P.; Schommer, Mark E.; Schmeling, Andrew L.; Elvidge, Michael J., Ambulatory energy transfer system for an implantable medical device and method therefore.
  12. Nghiem, David; Lambert, Scott Anthony; Sprain, Jason William, Antenna arrangements for implantable therapy device.
  13. Nathan A. Torgerson ; John J. Grevious ; Steven L. Jensen ; John W. Forsberg ; Robert Leinders NL; Raymond F. McMullen, Apparatus and method for allowing immediate retrieval for information and identification from an implantable medical device having a depleted power source.
  14. Barron,Christopher, Apparatus and method for balanced charging of a multiple-cell battery pack.
  15. Penner, Avi; Doron, Eyal, Apparatus and methods using acoustic telemetry for intrabody communications.
  16. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Katz, Ariel, Appliance mounted power outlets.
  17. William J. Weiss, Artificial heart data communication system.
  18. Weiss, William J., Artificial heart power supply system.
  19. Alan Snyder, Artificial heart with arrhythmia signalling.
  20. William J. Weiss, Artificial heart with energy recovery.
  21. William J. Weiss, Artificial heart with synchronous rectification.
  22. Shea, Arthur; Ambrosio, Ralph D., Automatic power regulation for transcutaneous energy transfer charging system.
  23. Kast, John E.; Clayton, Jeffrey J.; Deininger, Steve T., Battery isolator for implantable medical device.
  24. Parramon, Jordi; Marnfeldt, Goran N.; Ozawa, Robert; Feldman, Emanuel; Peterson, Dave; He, Yuping, Battery management for an implantable medical device.
  25. Parramon, Jordi; Marnfeldt, Goran N.; Ozawa, Robert; Feldman, Emanuel; Peterson, Dave; He, Yuping, Battery management for an implantable medical device.
  26. He, Yuping; Peterson, David K. L., Battery protection and zero-volt battery recovery system for an implantable medical device.
  27. He, Yuping; Peterson, David K. L., Battery protection and zero-volt battery recovery system for an implantable medical device.
  28. Leibovitz, Alfred, Bridge synchronous rectifier.
  29. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Leibovitz, Alfred; Rofe, Arik, Centrally controlled inductive power transmission platform.
  30. Forsell, Peter, Charger for an implant.
  31. Forsell, Peter, Charger for implant.
  32. Wahlstrand, Carl D.; Kast, John E.; Denison, Timothy J.; Grevious, John J.; Kallmyer, Todd A., Closed loop long range recharging.
  33. Bluvshtein, Vlad; Lucke, Lori, Coil parameters and control.
  34. Ben-Shalom, Amir; Meyuhas, Noam, Combined antenna and inductive power receiver.
  35. Joshi, Himanshu, Communication efficiency with an implantable medical device using a circulator and a backscatter signal.
  36. Crossett Stanley J. ; Nazarian Richard A. ; Hamerly Michael, Communication method for implantable medical device.
  37. Bulkes, Cherik; Denker, Stephen, Composite waveform based method and apparatus for animal tissue stimulation.
  38. Davis, Timothy J.; Perz, Leroy L.; Torgerson, Nathan A.; Wahlstrand, Carl D.; Hoffman, David W., Concurrent delivery of treatment therapy with telemetry in an implantable medical device.
  39. Hyde, Roderick A.; Ishikawa, Muriel Y.; Leuthardt, Eric C.; Smith, Michael A.; Wood, Jr., Lowell L.; Wood, Victoria Y. H., Device and system for generation of power from intraluminal pressure changes.
  40. Hyde, Roderick A.; Ishikawa, Muriel Y.; Leuthardt, Eric C.; Smith, Michael A.; Wood, Jr., Lowell L.; Wood, Victoria Y. H., Device for storage of intraluminally generated power.
  41. Mi, Bin; Chavan, Abhijeet V.; Maile, Keith R., Direct inductive/acoustic converter for implantable medical device.
  42. Denker,Stephen; Bulkes,Cherik; Beutler,Arthur J., Double helical antenna assembly for a wireless intravascular medical device.
  43. Toy, Alex C.; Olson, David P.; Forsberg, John W., Driver circuitry switchable between energy transfer and telemetry for an implantable medical device.
  44. Deininger, Steve T; Kast, John E; Zacharias, Eric H; Peters, Charles E, Drop and slide engagement for implantable medical device.
  45. Deininger,Steve T.; Kast,John E.; Zacharias,Eric H.; Peters,Charles E., Drop and slide engagement for implantable medical device.
  46. Ginggen, Alec; Crivelli, Rocco, Dual power supply switching circuitry for use in a closed system.
  47. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Efficiency monitor for inductive power transmission.
  48. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Efficiency monitor for inductive power transmission.
  49. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Efficiency monitor for inductive power transmission.
  50. Azancot, Yossi; Greenwald, Oola; Ben-Shalom, Amir; Rofe, Arik, Efficiency monitor for inductive power transmission.
  51. Singh, Vinit; Peralta, Alberto; Rajagopalan, Ajit; Luzinski, Jason; Babcock, Jacob; Frysz, Christine A., Electrical system incorporating a single structure multimode antenna for wireless power transmission using magnetic field coupling.
  52. Singh, Vinit; Peralta, Alberto; Rajagopalan, Ajit; Luzinski, Jason; Babcock, Jacob; Frysz, Christine A., Electrical system incorporating a single structure multimode antenna for wireless power transmission using magnetic field coupling.
  53. Honda Katsuyuki,JPX ; Hayakawa Motomu,JPX ; Kosuda Tsukasa,JPX, Electronic device, electronic device to be charged and method of controlling electronic devices.
  54. Griffith, Glen A.; Hahn, Tae W., Electronic impedance transformer for inductively-coupled load stabilization.
  55. Ozana, Charlie; Ben Hanoch, Rachel; Sadan Duschack, Einav; Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Lei-Bovitz, Alfred; Rhodes, Dov; Meyuhas, Noam, Embedded interface for wireless power transfer to electrical devices.
  56. Ben-Shalom, Amir, Encapsulated pixels for display device.
  57. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Leibovitz, Alfred; Ashery, Moti, Energy efficient inductive power transmission system and method.
  58. Forsell, Peter, Energy transfer control adapted to a medical device system.
  59. Olson, David P.; Schmeling, Andrew L.; Nelson, Steven J., External power source for an implantable medical device having an adjustable carrier frequency and system and method related therefore.
  60. Olson, David P.; Schmeling, Andrew L.; Nelson, Steven J., External power source for an implantable medical device having an adjustable carrier frequency and system and method related therefore.
  61. Schommer,Mark E.; Phillips,William C.; Olson,David P.; Schmeling,Andrew L.; Peters,Charles E.; Ahcan,Steven R.; Forsberg,John W.; Elvidge,Michael J.; McMullen,Michael J., External power source having an adjustable magnetic core and method of use.
  62. Schmeling,Andrew L.; Phillips,William C.; Olson,David P.; Jimenez,Oscar, External power source, charger and system for an implantable medical device having thermal characteristics and method therefore.
  63. Bauhahn, Ruth E.; Schommer, Mark E., External unit for implantable medical device coupled by cord.
  64. Denker, Stephen; Bulkes, Cherik; Beutler, Arthur J., Extracorporeal power supply with a wireless feedback system for an implanted medical device.
  65. Phillips, William C.; Lewis, Jr., Charles R.; Sahasrabudhe, Rajeev M., Holster for charging pectorally implanted medical devices.
  66. Labbe, Michael; Halberg, Les; Cottrill, Benjamin, Implant current controlled battery charging based on temperature.
  67. Labbe, Michael; Halberg, Les; Cottrill, Benjamin, Implant current controlled battery charging based on temperature.
  68. Valenta, Jr.,Harry L.; Probst,Joseph M., Implantable energy management system and method.
  69. Youker, Nick A.; Harguth, Robert S.; Maile, Keith R.; Root, Michael J.; Zhang, Cheng; Chavan, Abhi; Huelskamp, Paul, Implantable medical device powered by rechargeable battery.
  70. Jimenez, Oscar; Echarri, Guillermo; Kast, John E.; Riekels, James E.; Schommer, Mark E., Implantable medical device with a recharging coil magnetic shield.
  71. Joshi, Himanshu, Implantable medical device with backscatter signal based communication.
  72. Kast, John E.; Jimenez, Oscar; Peters, Charles E.; Riekels, James E.; Schommer, Mark E., Implantable medical device with external housing for a recharging coil.
  73. Meskens, Werner, Implantable medical device with integrated antenna system.
  74. Aghassian, Daniel; Parramon, Jordi; Chen, Joey, Implantable medical device with multi-function single coil.
  75. Parramon, Jordi; Haller, Matthew I., Implantable medical device with multi-function single coil.
  76. Aghassian, Daniel; Parramon, Jordi; Chen, Joey, Implantable medical device with single coil for charging and communicating.
  77. Crosby, Peter Andrew; Woodard, John Campbell, Implantable medical devices.
  78. Dinsmoor, David A.; Anderson, Joel A.; Denison, Timothy; Grevious, John J., Implantable medical devices and systems having dual frequency inductive telemetry and recharge.
  79. Dinsmoor, David A.; Anderson, Joel A., Implantable medical devices and systems having inductive telemetry and recharge on a single coil.
  80. Dinsmoor, David A.; Anderson, Joel A.; Denison, Timothy, Implantable medical devices and systems having power management for recharge sessions.
  81. Sauer, Christian, Implantable medical devices, and methods of use therewith, that use a same coil for receiving both communication and power signals.
  82. Strother, Robert B.; Mrva, Joseph J.; Thrope, Geoffrey B., Implantable pulse generator for providing functional and/or therapeutic stimulation of muscles and/or nerves and/or central nervous system tissue.
  83. Strother, Robert B; Mrva, Joseph J; Thrope, Geoffrey B, Implantable pulse generator power management.
  84. Strother, Robert B.; Thrope, Geoffrey B.; Pack, Danny R., Implantable pulse generator systems and methods for operating the same.
  85. Strother, Robert B.; Thrope, Geoffrey B., Implantable pulse generator systems and methods for providing functional and/or therapeutic stimulation of muscles and/or nerves and/or central nervous system tissue.
  86. Strother, Robert B.; Thrope, Geoffrey B.; Pack, Danny R., Implantable pulse generator systems and methods for providing functional and/or therapeutic stimulation of muscles and/or nerves and/or central nervous system tissue.
  87. Sun Xiaoguong ; Joseph Jeffrey I. ; Crothall Katherine D., Implantable sensor and system for measurement and control of blood constituent levels.
  88. Strother, Robert B.; Mrva, Joseph J.; Thrope, Geoffrey B., Implantable systems and methods for acquisition and processing of electrical signals.
  89. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Inductive power outlet locator.
  90. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Inductive power providing system having moving outlets.
  91. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Inductive receivers for electrical devices.
  92. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Inductive receivers for electrical devices.
  93. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Inductively chargeable audio devices.
  94. Forsberg, John W.; Phillips, William C.; Schmeling, Andrew L.; Olson, David P., Inductively rechargeable external energy source, charger and system for a transcutaneous inductive charger for an implantable medical device.
  95. Forsberg, John W.; Phillips, William C.; Schmeling, Andrew L.; Olson, David P., Inductively rechargeable external energy source, charger, system and method for a transcutaneous inductive charger for an implantable medical device.
  96. Olson, David P.; Phillips, William C.; Schmeling, Andrew L., Inductively rechargeable external energy source, charger, system and method for a transcutaneous inductive charger for an implantable medical device.
  97. Olson, David P.; Phillips, William C.; Schmeling, Andrew L., Inductively rechargeable external energy source, charger, system and method for a transcutaneous inductive charger for an implantable medical device.
  98. Olson, David P.; Phillips, William C.; Schmeling, Andrew L., Inductively rechargeable external energy source, charger, system and method for a transcutaneous inductive charger for an implantable medical device.
  99. Olson, David P.; Phillips, William C.; Schmeling, Andrew L., Inductively rechargeable external energy source, charger, system and method for a transcutaneous inductive charger for an implantable medical device.
  100. Thompson, David L.; Shen, Jianxiang; Cowley, Anthony W.; Hussain, Saadat; Chow, Eric Y.; Floyd, Jared B.; Flesher, James L., Inductively rechargeable implantable device with reduced eddy currents.
  101. Furman, Dan Gur, Integrated heart monitoring device and method of using same.
  102. Denker,Stephen; Beutler,Arthur J., Intravenous cardiac pacing system with wireless power supply.
  103. Kast,John E.; Deininger,Steve T.; Peters,Charles E.; Clayton,Jeffrey J., Laminate of magnetic material and method of making.
  104. Forsell, Peter, Male impotence prosthesis apparatus with wireless energy supply.
  105. Forsell, Peter, Mechanical anal incontinence.
  106. Forsell, Peter, Medical implant apparatus with wireless energy transmission.
  107. Forsell, Peter, Medical system comprising implants.
  108. Boberschmidt, Werner; Leysieffer, Hans, Medically implantable energy storage system having safe recharging capabilities.
  109. Wuzik, Martin; Leysieffer, Hans, Medically implantable energy storage system having safe recharging capabilities.
  110. D'Ambrosio, Ralph L., Method and apparatus for accurately tracking available charge in a transcutaneous energy transfer system.
  111. Forsell, Peter, Method and apparatus for supplying energy to a medical device.
  112. Forsell, Peter, Method and apparatus for supplying energy to a medical device.
  113. Forsell, Peter, Method and apparatus for supplying energy to a medical device.
  114. Forsell, Peter, Method and apparatus for supplying energy to a medical device.
  115. Forsell, Peter, Method and apparatus for supplying energy to a medical device.
  116. Forsell, Peter, Method and apparatus for supplying energy to an implant.
  117. Furman, Dan Gur, Method and system for monitoring a health condition.
  118. Hyde, Roderick A.; Ishikawa, Muriel Y.; Leuthardt, Eric C.; Smith, Michael A.; Wood, Jr., Lowell L.; Wood, Victoria Y. H., Method for generation of power from intraluminal pressure changes.
  119. Hyde, Roderick A.; Ishikawa, Muriel Y.; Leuthardt, Eric C.; Smith, Michael A.; Wood, Jr., Lowell L.; Wood, Victoria Y.H., Method for generation of power from intraluminal pressure changes.
  120. Singh, Vinit; Frysz, Christine A.; Geary, Matthew; Babcock, Eitan; Derbas, Justin, Method for manufacture of multi-layer wire structure for high efficiency wireless communication.
  121. Singh, Vinit; Frysz, Christine A.; Geary, Matthew; Babcock, Eitan; Derbas, Justin; Peralta, Alberto, Method for manufacture of multi-layer wire structure for high efficiency wireless communication.
  122. Singh, Vinit; Babcock, Jacob; Frysz, Christine A., Method for manufacture of multi-layer-multi-turn high efficiency inductors.
  123. Singh, Vinit; Frysz, Christine A.; Geary, Matthew; Babcock, Eitan; Derbas, Justin, Method for manufacture of multi-layer-multi-turn structure for high efficiency wireless communication.
  124. Jimenez, Oscar; Echarri, Guillermo; Kast, John E.; Riekels, James E.; Schommer, Mark E., Method of charging an implantable medical device.
  125. Cottrill, Benjamin; Halberg, Les; Labbe, Michael; Chen, Joey, Method of improving battery recharge efficiency by statistical analysis.
  126. Cottrill, Benjamin; Halberg, Les; Labbe, Michael; Chen, Joey, Method of improving battery recharge efficiency by statistical analysis.
  127. Deininger,Steve T., Method of laminating articles.
  128. Fell, Roger; Cottrill, Benjamin; Halberg, Les; Labbe, Michael; Chen, Joey, Method of minimizing interruptions to implantable medical device recharging.
  129. Rajagopalan, Ajit; Peralta, Alberto; Singh, Vinit; Luzinski, Jason; Babcock, Jacob; Frysz, Christine A., Method of operating a single structure multi mode antenna for wireless power transmission using magnetic field coupling.
  130. Singh, Vinit; Frysz, Christine A., Method of operation of a multi-layer-multi-turn structure for high efficiency wireless communication.
  131. Farhad Zarinetchi ; Stephen J. Keville, Methods and apparatus for providing a sufficiently stable power to a load in an energy transfer system.
  132. Zarinetchi,Farhad; Keville,Stephen J., Methods and apparatus for providing a sufficiently stable power to a load in an energy transfer system.
  133. Zarinetchi,Farhad; Keville,Stephen J., Methods and apparatus for providing a sufficiently stable power to a load in an energy transfer system.
  134. Rahman, Md. Mizanur; Nimmagadda, Kiran; Parramon, Jordi; Feldman, Emanuel, Minimizing interference between charging and telemetry coils in an implantable medical device.
  135. Rahman, Md. Mizanur; Nimmagadda, Kiran; Parramon, Jordi; Feldman, Emanuel, Minimizing interference between charging and telemetry coils in an implantable medical device.
  136. Singh, Vinit; Frysz, Christine A., Multi-layer wire structure for high efficiency wireless communication.
  137. Singh, Vinit; Frysz, Christine A., Multi-layer-multi-turn structure for high efficiency wireless communication.
  138. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Lei-Bovitz, Alfred; Ashery, Moti, Non resonant inductive power transmission system and method.
  139. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Leibovitz, Alfred; Ashery, Moti, Non resonant inductive power transmission system and method.
  140. Denker, Stephen; Beutler, Arthur J., Omnidirectional antenna for wireless communication with implanted medical devices.
  141. Furman, Dan Gur, Optical sensor apparatus and method of using same.
  142. Forsell, Peter, Penile prosthesis.
  143. Stahmann, Jeffrey E.; Maile, Keith R.; Huelskamp, Paul J., Performance assessment and adaptation of an acoustic communication link.
  144. Stahmann, Jeffrey E.; Maile, Keith R.; Huelskamp, Paul J., Performance assessment and adaptation of an acoustic communication link.
  145. Stahmann, Jeffrey E.; Maile, Keith R.; Huelskamp, Paul J., Performance assessment and adaptation of an acoustic communication link.
  146. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Pinless power coupling.
  147. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, Pinless power coupling.
  148. Gord John C. ; Faltys Michael A. ; Voelkel Andy ; Schulman Joseph H., Power control loop for implantable tissue stimulator.
  149. Ginggen, Alec; Crivelli, Rocco, Power regulation feedback to optimize robustness of wireless transmissions.
  150. Ginggen,Alec; Crivelli,Rocco, Power regulation feedback to optimize robustness of wireless transmissions.
  151. Bluvshtein, Vlad; Lucke, Lori; Weiss, William, Power scaling.
  152. Lamont, Robert Graham; Moazen, Damon; Ozawa, Robert D.; Stouffer, Thomas W., Power supply disconnect current measurement for an implantable medical device.
  153. Lamont, Robert Graham; Moazen, Damon; Ozawa, Robert D.; Stouffer, Thomas W., Power supply disconnect current measurement for an implantable medical device.
  154. Lamont, Robert Graham; Moazen, Damon; Ozawa, Robert D.; Stouffer, Thomas W., Power supply disconnect current measurement for an implantable medical device.
  155. Hahn Tae W. ; Griffith Glen A., Power transfer circuit for implanted devices.
  156. Schommer, Mark E, Pre-positioned storable implantable medical device assembly allowing in package charging and method.
  157. Denker, Stephen; Bulkes, Cherik; Beutler, Arthur J., Radio frequency antenna for a wireless intravascular medical device.
  158. Denker, Stephen; Bulkes, Cherik; Beutler, Arthur J., Radio frequency antenna for a wireless intravascular medical device.
  159. Kallmyer, Todd A., Recharge system and method for deep or angled devices.
  160. Kallmyer, Todd A., Recharge system and method for deep or angled devices.
  161. Olson, David P.; Delisi, Nicholas A.; Eisch, Jay T.; LaBrosse, Philip R.; Nolan, Joseph J., Recharge tuning techniques for an implantable device.
  162. Marnfeldt, Goran N.; Carbunaru, Rafael; Parramon, Jordi, Rechargeable-battery implantable medical device having a primary battery active during a rechargeable-battery undervoltage condition.
  163. Marnfeldt, Goran N.; Carbunaru, Rafael; Parramon, Jordi, Rechargeable-battery implantable medical device having a primary battery active during a rechargeable-battery undervoltage condition.
  164. Cowley, Anthony W.; Chilton, Robert J.; Hussain, Saadat; Thompson, David L., Recharging and communication lead for an implantable device.
  165. Bluvshtein, Vlad; Lucke, Lori, Repeater resonator.
  166. Wang Xintao ; Rosborough John P. ; Munshi Mohammed Z. A. ; Schroeppel Edward A. ; Cox Timothy J., Self-cooling transcutaneous energy transfer system for battery powered implantable device.
  167. Schommer,Mark E, Shipping container for an implantable medical device.
  168. Peralta, Alberto; Singh, Vinit; Rajagopalan, Ajit; Luzinski, Jason; Babcock, Jacob; Frysz, Christine A., Single layer multi mode antenna for wireless power transmission using magnetic field coupling.
  169. Singh, Vinit; Peralta, Alberto; Rajagopalan, Ajit; Luzinski, Jason; Babcock, Jacob; Frysz, Christine A., Single structure multi mode antenna for wireless power transmission using magnetic field coupling having an internal switch circuit.
  170. Luzinski, Jason; Peralta, Alberto; Singh, Vinit; Rajagopalan, Ajit; Babcock, Jacob; Frysz, Christine A., Single structure multi mode antenna for wireless power transmission using magnetic field coupling having magnetic shielding.
  171. Peralta, Alberto; Singh, Vinit; Rajagopalan, Ajit; Luzinski, Jason; Babcock, Jacob; Frysz, Christine A., Single structure multi mode antenna having a single layer structure with coils on opposing sides for wireless power transmission using magnetic field coupling.
  172. Peralta, Alberto; Singh, Vinit; Rajagopalan, Ajit; Luzinski, Jason; Babcock, Jacob; Frysz, Christine A., Single structure multi mode antenna having a unitary body construction for wireless power transmission using magnetic field coupling.
  173. Phillips, William C.; Schommer, Mark E.; Schmeling, Andrew L., Spacers for use with transcutaneous energy transfer system.
  174. Phillips,William C.; Schommer,Mark C.; Schmeling,Andrew L., Spacers for use with transcutaneous energy transfer system.
  175. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  176. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  177. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  178. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  179. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  180. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  181. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  182. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  183. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  184. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  185. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  186. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  187. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  188. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  189. Bennett, Maria E; Grill, Julie; Lechman, Tina E; Mrva, Joseph J; Sakai, Jonathan L; Strother, Robert B; Thrope, Geoffrey B; Zmina, Therese M, Stimulation of dorsal genital nerves to treat urologic dysfunctions.
  190. Denison, Timothy J.; Hocken, Jr., Robert W.; Molnar, Gabriela C.; Santa, Wesley A.; Shah, Jalpa S.; Tyler, Larry E., Stimulation waveform generator for an implantable medical device.
  191. Schommer,Mark E., Storable implantable medical device assembly allowing in package charging.
  192. Davis, Timothy J.; Perz, Leroy L.; Torgerson, Nathan A.; Wahlstrand, Carl D.; Hoffman, David W., Switched power using telemetry in an implantable medical device.
  193. Chow, Eric Y.; Cowley, Anthony W.; Thompson, David L.; Shen, Jianxiang; Flesher, James L.; Hussain, Saadat, System and method for charging a power cell in an implantable medical device.
  194. Azancot, Yossi; Rofe, Arik; Greenwald, Oola; Ben-Shalom, Amir; Ashery, Moti; Leibovitz, Alfred, System and method for coded communication signals regulating inductive power transmission.
  195. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, System and method for controlling power transfer across an inductive power coupling.
  196. Azancot, Yossi; Rofe, Arik; Greenwald, Oola; Ben-Shalom, Amir; Ashery, Moti; Leibovitz, Alfred, System and method for enabling ongoing inductive power transmission.
  197. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, System and method for inductive power provision over an extended surface.
  198. Crivelli, Rocco; Ginggen, Alec, System and method for locating an internal device in a closed system.
  199. Azancot, Yossi; Ben-Shalom, Amir; Rofe, Arik; Greenwald, Oola; Leibovitz, Alfred; Ashery, Moti, System and method for providing simple feedback signals indicating if more or less power is required during inductive power transmission.
  200. Raab, Yoel; Raines, Moshe; Hamisha, Charle; Nudelman, Arye; Shraga, Rotem; Greenwald, Oola, System and method for providing wireless power transfer functionality to an electrical device.
  201. Raab, Yoel; Raines, Moshe; Hamisha, Charle; Sherman, Itai; Shraga, Rotem; Nudelman, Arye; Braha, Ilan; Ozana, Charlie, System and method for providing wireless power transfer functionality to an electrical device.
  202. Mach, Elieser; Rofe, Arik; Greenwald, Oola; Raveh, Guy, System and method for regulating inductive power transmission.
  203. Olson,David P.; Phillips,William C.; Schmeling,Andrew L.; Schommer,Mark E., System and method for transcutaneous energy transfer achieving high efficiency.
  204. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik, System for inductive power provision in wet environments.
  205. Hyde, Roderick A.; Ishikawa, Muriel Y.; Leuthardt, Eric C.; Smith, Michael A.; Wood, Victoria Y. H.; Wood, Jr., Lowell L., System for powering devices from intraluminal pressure changes.
  206. Singh, Vinit; Frysz, Christine A., System using multi-layer wire structure for high efficiency wireless communication.
  207. Bennett, Maria E.; Rundle, Kenneth P.; Rubin, Stuart F.; Coburn, James; Pack, Danny R.; Strother, Robert B.; Thrope, Geoffrey B.; Mrva, Joseph J., Systems and methods for clinician control of stimulation system.
  208. Bennett, Maria E.; Rundle, Kenneth P.; Rubin, Stuart F.; Coburn, James; Pack, Danny R.; Strother, Robert B.; Thrope, Geoffrey B.; Mrva, Joseph J., Systems and methods for clinician control of stimulation systems.
  209. Bennett, Maria E.; Rundle, Kenneth P.; Rubin, Stuart F.; Coburn, James; Pack, Danny R.; Strother, Robert B.; Thrope, Geoffrey B.; Mrva, Joseph J., Systems and methods for clinician control of stimulation systems.
  210. Strother, Robert B.; Barber, James E.; Mrva, Joseph J.; Thierfelder, Christopher A.; Bennett, Maria E.; Thrope, Geoffrey B.; Pack, Danny R.; Rubin, Stuart F., Systems and methods for patient control of stimulation systems.
  211. D'Ambrosio, Ralph L.; Kortyka, Martin, Transcutaneous energy transfer coil with integrated radio frequency antenna.
  212. Borza Michael A.,CAX, Transcutaneous energy transfer device.
  213. Borza Michael Andrew,CAX, Transcutaneous energy transfer device.
  214. D'Ambrosio, Ralph L., Transcutaneous energy transfer system with multiple secondary coils.
  215. D'Ambrosio, Ralph L., Transcutaneous energy transfer system with vibration inducing warning circuitry.
  216. Dolgin Alexander ; Rintoul Thomas C., Transcutaneous energy transfer with circuitry arranged to avoid overheating.
  217. Phillips Richard P., Transcutaneous energy transmission system with full wave Class E rectifier.
  218. Thompson,Marc T., Transcutaneous power supply.
  219. Badstibner, Kurt D.; Speicher, Jonathan R.; Heilman, Marlin S.; Bates, Richard A.; Greene, Charles E., Transcutaneous power transmission and communication for implanted heart assist and other devices.
  220. Badstibner, Kurt D.; Speicher, Jonathan R.; Heilman, Marlin S.; Bates, Richard A.; Greene, Charles E., Transcutaneous power transmission and communication for implanted heart assist and other devices.
  221. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Lei-Bovitz, Alfred; Ashery, Moti, Transmission-guard system and method for an inductive power supply.
  222. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Lei-Bovitz, Alfred; Ashery, Moti, Transmission-guard system and method for an inductive power supply.
  223. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Lei-Bovitz, Alfred; Rhodes, Dov; Meyuhas, Noam, Transmission-guard system and method for an inductive power supply.
  224. Azancot, Yossi; Ben-Shalom, Amir; Greenwald, Oola; Rofe, Arik; Liebovitz, Alfred; Rhodes, Dov; Meyuhas, Noam, Transmission-guard system and method for an inductive power supply.
  225. Haller, Matthew I.; Parramon, Jordi; Feldman, Emanuel, Ultracapacitor powered implantable pulse generator with dedicated power supply.
  226. Bauhahn, Ruth E.; Schommer, Mark E., User interface for external charger for implantable medical device.
  227. Rahman, Md. Mizanur, Using the case of an implantable medical device to broaden communication bandwidth.
  228. Denker, Stephen; Bulkes, Cherik; Beutler, Arthur J., Vagal nerve stimulation using vascular implanted devices for treatment of atrial fibrillation.
  229. Nunez, Anthony, Wireless compressible heart pump.
  230. Denker, Stephen; Bulkes, Cherik; Beutler, Arthur J., Wireless intravascular medical device with a double helical antenna assembly.
  231. Mach, Elieser; Moshkovich, Oz; Sherman, Itay, Wireless power receiver and host control interface thereof.
  232. Mach, Elieser; Moshkovich, Oz; Sherman, Itay, Wireless power receiver and host control interface thereof.
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