$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Implantable devices using rechargeable zero-volt technology lithium-ion batteries 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/08
출원번호 US-0970879 (2004-10-22)
등록번호 US-7295878 (2007-11-13)
발명자 / 주소
  • Meadows,Paul M
  • Woods,Carla Mann
  • Chen,Joey
  • Tsukamoto,Hisashi
출원인 / 주소
  • Advanced Bionics Corporation
  • Quallion LLC
인용정보 피인용 횟수 : 50  인용 특허 : 53

초록

An implantable medical device, such as an implantable pulse generator (IPG) used with a spinal cord stimulation (SCS) system, includes a rechargeable lithium-ion battery having an anode electrode with a substrate made substantially from titanium. Such battery construction allows the rechargeable bat

대표청구항

What is claimed is: 1. An implantable device comprising: electronic circuitry that performs a specified function; an implantable rechargeable battery that provides operating power for the electronic circuitry; and battery charging and protection circuitry for receiving power from an external charge

이 특허에 인용된 특허 (53)

  1. Zimmerman Albert H. ; Quinzio Michael V., Adaptive charging method for lithium-ion battery cells.
  2. Tamai Mikitaka,JPX, Battery apparatus.
  3. Mann Brian M. (Northride CA) Beane Russell R. (Sepulveda CA), Battery monitoring means for an implantable living tissue stimulator.
  4. Schulman Joseph H. ; Dell Robert Dan ; Gord John C., Battery-powered patient implantable device.
  5. Kumta Prashant Nagesh ; Chang Chun-Chieh ; Sriram Mandyam Ammanjee, Cathode materials for lithium-ion secondary cells.
  6. Baumann Joachim,DEX ; Leysieffer Hans,DEX ; Volz Andreas,DEX, Device and process for charging of rechargeable batteries of implants.
  7. Dey ; Arabinda N. ; Bro ; Per, Flexible cells and batteries formed therefrom.
  8. Stanton David J. ; Hrdlicka Gregory A. ; Meyerson Charles M. ; Kallmyer Todd A., Handheld patient programmer for implantable human tissue stimulator.
  9. Brownlee Robert R. (State College PA) Tyers G. Frank O. (Hershey PA) Volz ; Sr. Carl (State College PA), Hermetically sealed cardiac pacer system and recharging system therefor.
  10. Spillman David M. ; Gan Hong ; Takeuchi Esther S., Hermetically sealed lithium-ion secondary electrochemical cell.
  11. Schulman Joseph H. (Los Angeles CA), Implantable battery monitoring means and method.
  12. Kuzma Janusz A., Implantable connector for multi-output neurostimulators.
  13. Schulman Joseph H. ; Dell Robert Dan ; Mann Alfred E. ; Faltys Michael A., Implantable device with improved battery recharging and powering configuration.
  14. Mullett Keith R. (Minneapolis MN), Lateral displacement percutaneously inserted epidural lead.
  15. Dahn Jeffery R. (Surrey CAX) Fong Rosamaria (Richmond CAX) Von Sacken Ulrich (Port Coquitlam CAX), Lithiated nickel dioxide and secondary cells prepared therefrom.
  16. Tsukamoto, Hisashi; Kishiyama, Clay; Nagata, Mikito; Nakahara, Hiroshi; Piao, Tiehua, Lithium ion battery capable of being discharged to zero volts.
  17. Mayer Steven T., Lithium nickel cobalt oxides for positive electrodes.
  18. Takeuchi Esther S. (East Amherst NY) Walsh Karen M. (Marilla NY), Medium and high discharge rate combination battery and method.
  19. Thompson David L. (Fridley MN), Method and apparatus for battery depletion monitoring.
  20. Kosugi Yukio (Tokyo JPX) Ikebe Jun (Tokyo JPX) Takakura Kintomo (Tokyo JPX) Kumagai Yoriaki (Tokyo JPX), Method and randomized electrical stimulation system for pain relief.
  21. Mann Alfred E. (Beverly Hills CA) Schulman Joseph H. (Santa Clarita CA), Method for optimally positioning and securing the external unit of a transcutaneous transducer of the skin of a living b.
  22. Hull Vincent W. (Ham Lake MN) Cross Thomas E. (St. Francis MN) Langley James P. (Minneapolis MN), Method of using a spinal cord stimulation lead.
  23. Buckley James (270 Smith Valley Rd. Los Gatos CA 95030) Masuda William (17499 Blue Jay Dr. Morgan Hill CA 95037) Lundquist Joseph (1470 Long Meadow Gilroy CA 94020), Methods for extending the cycle life of solid, secondary electrolytic cells during recharge of the electrolytic cells.
  24. Owens Alan R. (Longmont CO), Microprocessor controlled electronic stimulating device having a battery management system and method therefor.
  25. Wang Enoch I. ; Bowden William L. ; Taylor Alwyn H., Mixtures of lithium manganese oxide spinel as cathode active material.
  26. Borkan, William N.; Savino, Frank M.; Waltz, Joseph M., Multi-electrode catheter assembly for spinal cord stimulation.
  27. Holsheimer Jan (Oldenzaal NLX) Struijk Johannes J. (Rijssen NLX), Multichannel apparatus for epidural spinal cord stimulator.
  28. Mann ; Alfred E. ; Schulman ; Joseph H., Multimode recharging system for living tissue stimulators.
  29. Tanizaki, Hiroaki; Omaru, Atsuo, Non-aqueous electrolyte secondary cell.
  30. Horie Takeshi,JPX ; Noda Kazuhiro,JPX ; Yamada Shinichiro,JPX, Non-aqueous electrolytic solution, and non-aqueous electrolyte cell comprising it.
  31. Yamahira Takayuki (Fukushima JPX) Kato Hisayuki (Fukushima JPX) Anzai Masanori (Fukushima JPX), Nonaqueous electrolyte secondary battery.
  32. Miyasaka Tsutomu (Minami-ashigara JPX), Nonaqueous electrolyte-secondary battery.
  33. Huang Chen-kuo (So. Pasadena CA) Surampudi Subbarao (Glendora CA) Attia Alan I. (Glendale CA) Halpert Gerald (Pasadena CA), Overcharge and overdischarge protection of ambient temperature secondary lithium cells.
  34. Redey Laszlo (Downers Grove IL), Overdischarge protection in high-temperature cells and batteries.
  35. Jenkins Carlton G. (Sugar Grove PA) Hurst David R. (Manalapan FL), Perforated substrate and method of manufacture.
  36. Thompson David L., Power consumption reduction in medical devices employing just-in-time voltage control.
  37. Gord John C., Programmable current output stimulus stage for implantable device.
  38. Barreras ; Sr. Francisco Jose ; Jimenez Oscar, RF coupled, implantable medical device with rechargeable back-up power source.
  39. Munshi Mohammed Z. (Missouri City TX) Nedungadi Ashok P. (Lake Jackson TX), Rechargeable biomedical battery powered devices with recharging and control system therefor.
  40. Tsukamoto,Hisashi; Kishiyama,Clay; Nagata,Mikito; Nakahara,Hiroshi; Piao,Tiehua, Rechargeable lithium battery for tolerating discharge to zero volts.
  41. Meadows, Paul; Mann, Carla M.; Peterson, David Karl-Lee; Chen, Joey, Rechargeable spinal cord stimulator system.
  42. Schulman Joseph H. (Los Angeles CA), Rechargeable tissue stimulating system.
  43. Kawakami Soichiro,JPX ; Mishina Shinya,JPX ; Kobayashi Naoya,JPX, Secondary battery.
  44. Yoshino Akira (Fujisawa JPX) Takizawa Yumiko (Yokohama JPX) Koyama Akira (Kawasaki JPX) Inoue Katsuhiko (Yokohama JPX) Yamashita Masataka (Kawasaki JPX) Minato Yasufumi (Kawasaki JPX) Kuribayashi Isa, Secondary battery.
  45. Nagaura Toru (Fukuoka JPX), Secondary cell.
  46. Cutolo Vincent ; Jimenez Oscar ; Echarri Roberto ; Echarri Guillermo ; Barreras ; Sr. Francisco Jose, Self contained transportable power source maintenance and charge.
  47. Hakansson Bo H. (Lund SEX) Saario Roy A. (Lund SEX), Stimulator system.
  48. Snell Jeffery D., System and method for portable implantable device interogation.
  49. Schulman Joseph H. ; Mann Carla M., System of implantable devices for monitoring and/or affecting body parameters.
  50. Schroeppel Edward A. ; Spehr Paul R., Transcutaneous energy coupling using piezoelectric device.
  51. Wang Xintao (Lake Jackson TX) Munshi Mohammed Zafar Amin (Missouri City TX), Transcutaneous energy transmission circuit for implantable medical device.
  52. Mann Carla M., Transcutaneous transmission patch.
  53. Mann Carla M., Transcutaneous transmission pouch.

이 특허를 인용한 특허 (50)

  1. Gruber, Robin; Schmid, Thomas, Assembly for wireless energy communication to an implanted device.
  2. Shea, Arthur; Ambrosio, Ralph D., Automatic power regulation for transcutaneous energy transfer charging system.
  3. Parramon, Jordi; Marnfeldt, Goran N.; Ozawa, Robert; Feldman, Emanuel; Peterson, Dave; He, Yuping, Battery management for an implantable medical device.
  4. Parramon, Jordi; Marnfeldt, Goran N.; Ozawa, Robert; Feldman, Emanuel; Peterson, Dave; He, Yuping, Battery management for an implantable medical device.
  5. He, Yuping; Peterson, David K. L., Battery protection and zero-volt battery recovery system for an implantable medical device.
  6. He, Yuping; Peterson, David K. L., Battery protection and zero-volt battery recovery system for an implantable medical device.
  7. Cotter, Christopher James, Bi-ventricular percutaneous cable.
  8. Cotter, Christopher James, Bi-ventricular percutaneous cable.
  9. Forsell, Peter, Charger for an implant.
  10. Joshi, Himanshu, Communication efficiency with an implantable medical device using a circulator and a backscatter signal.
  11. Rhodes, Mark; Hyland, Brendan, Communication through a barrier.
  12. Rhodes, Mark; Hyland, Brendan, Communication through a barrier.
  13. Dinsmoor, David A.; Kallmyer, Todd A.; Anderson, Joel A.; Denison, Timothy J., Hybrid rectification for recharging an implantable medical device.
  14. Kameli, Nader, Implantable cardiac devices and methods.
  15. Kameli, Nader, Implantable cardiac devices and methods.
  16. Kameli, Nader, Implantable cardiac devices and methods with body orientation unit.
  17. Kameli, Nader, Implantable medical device capable of preserving battery energy to extend its operating life.
  18. Murtonen, Salomo, Implantable medical device having an MRI safe rechargeable battery.
  19. Joshi, Himanshu, Implantable medical device with backscatter signal based communication.
  20. Kameli, Nader, Implantable medical device with external access for recharging and data communication.
  21. 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.
  22. D'Ambrosio, Ralph L., Method and apparatus for accurately tracking available charge in a transcutaneous energy transfer system.
  23. Forsell, Peter, Method and apparatus for supplying energy to an implant.
  24. Forsell, Peter, Method and apparatus for supplying energy to an implant.
  25. Erickson, John H.; McCormick, Robert L.; Tranchina, Benjamin A., Method for providing multiple voltage levels during pulse generation and implantable pulse generating employing the same.
  26. Crompton, Kyle; Landi, Brian, Near zero volt storage tolerant electrochemical cells through reversible ion management.
  27. Marnfeldt, Goran N.; Carbunaru, Rafael; Parramon, Jordi, Rechargeable-battery implantable medical device having a primary battery active during a rechargeable-battery undervoltage condition.
  28. Marnfeldt, Goran N.; Carbunaru, Rafael; Parramon, Jordi, Rechargeable-battery implantable medical device having a primary battery active during a rechargeable-battery undervoltage condition.
  29. Cowley, Anthony W.; Chilton, Robert J.; Hussain, Saadat; Thompson, David L., Recharging and communication lead for an implantable device.
  30. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  31. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  32. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  33. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  34. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  35. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  36. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  37. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  38. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  39. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  40. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  41. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  42. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  43. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  44. Moffitt, Michael; Peterson, David K. L., System and method for maintaining a distribution of currents in an electrode array using independent voltage sources.
  45. Moffitt, Michael; Peterson, David K. L., System and method for maintaining a distribution of currents in an electrode array using independent voltage sources.
  46. Erickson, John H.; Varrichio, Anthony J.; Tranchina, Benjamin A., Systems and methods for use in pulse generation.
  47. Tuseth, Vegard, Transcatheter system and method for regulating flow of fluid between two anatomical compartments.
  48. D'Ambrosio, Ralph L.; Kortyka, Martin, Transcutaneous energy transfer coil with integrated radio frequency antenna.
  49. D'Ambrosio, Ralph L., Transcutaneous energy transfer system with multiple secondary coils.
  50. D'Ambrosio, Ralph L., Transcutaneous energy transfer system with vibration inducing warning circuitry.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로