$\require{mediawiki-texvc}$

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.

Multichannel stimulator electronics and methods 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/18
  • A61N-001/32
출원번호 US-0837652 (2001-04-19)
발명자 / 주소
  • Borkan, William N.
대리인 / 주소
    Barnes & Thornburg
인용정보 피인용 횟수 : 152  인용 특허 : 11

초록

A tissue stimulation system includes an electrode assembly having at least three electrodes spaced to be stimulated in a patient. A programmable stimulator is connected to and provides stimulation pulses to the electrode assembly. A programming data in the stimulator defines, for each of the at leas

대표청구항

A tissue stimulation system includes an electrode assembly having at least three electrodes spaced to be stimulated in a patient. A programmable stimulator is connected to and provides stimulation pulses to the electrode assembly. A programming data in the stimulator defines, for each of the at leas

이 특허에 인용된 특허 (11)

  1. Mann Carla M., Directional programming for implantable electrode arrays.
  2. Loeb Gerald E. (90 Bagot Street Kingston ; Ontario CAX K7L 3E5 ) Ruddy Helen (35 Rudd Ave. Kingston ; Ont CAX K7L 4V1 ), Edge-effect electrodes for inducing spatially controlled distributions of electrical potentials in volume conductive med.
  3. Guilbeau Eric J. (Tempe AZ) Towe Bruce C. (Mesa AZ), Implantable microelectronic biochemical sensor incorporating thin film thermopile.
  4. Barreras ; Sr. Francisco J. ; Echarri Roberto ; Echarri Guillermo, Implantable, modular tissue stimulator.
  5. Barreras ; Sr. Francisco J. ; Jimenez Oscar, Method and apparatus for controlling and steering an electric field.
  6. Borkan, William N.; Savino, Frank M.; Waltz, Joseph M., Multi-electrode catheter assembly for spinal cord stimulation.
  7. King Gary William, Neural stimulation techniques with feedback.
  8. Borkan William N. (3364 NE. 167th St. N. Miami Beach FL 33160), Non-invasive multiprogrammable tissue stimulator.
  9. Borkan William N. (3364 NE. 167th St. N. Miami Beach FL 33160), Non-invasive multiprogrammable tissue stimulator and method.
  10. Borkan William N. (North Miami FL), Non-invasive multiprogrammable tissue stimulator and methods for use.
  11. Law Jay ; Borkan William ; Ehren Lance ; Van Campen George, Pain management system and method.

이 특허를 인용한 특허 (152)

  1. Armstrong, Randolph K.; Rodriguez, Albert A.; Maschino, Steven E., Alternative operation mode for an implantable medical device based upon lead condition.
  2. Bradley, Kerry; Thacker, James R., Apparatus and method for determining the relative position and orientation of neurostimulation leads.
  3. Bradley, Kerry; Thacker, James R., Apparatus and method for determining the relative position and orientation of neurostimulation leads.
  4. Bradley, Kerry; Thacker, James R.; Moffitt, Michael A., Apparatus and method for determining the relative position and orientation of neurostimulation leads.
  5. Bradley, Kerry; Thacker, James R.; Moffitt, Michael A., Apparatus and method for determining the relative position and orientation of neurostimulation leads.
  6. Bradley, Kerry; Thacker, James R.; Moffitt, Michael A., Apparatus and method for determining the relative position and orientation of neurostimulation leads.
  7. Bradley, Kerry; Thacker, James; Moffitt, Michael, Apparatus and method for determining the relative position and orientation of neurostimulation leads.
  8. Bradley, Kerry; Kapoor, Sunil K., Apparatus and methods for detecting migration of neurostimulation leads.
  9. Bradley, Kerry; Kapoor, Sunil K., Apparatus and methods for detecting migration of neurostimulation leads.
  10. Bradley, Kerry; Kapoor, Sunil K., Apparatus and methods for detecting migration of neurostimulation leads.
  11. Bradley, Kerry; Kapoor, Sunil K., Apparatus and methods for detecting position and migration of neurostimulation leads.
  12. Bradley, Kerry; Kapoor, Sunil K., Apparatus and methods for detecting position and migration of neurostimulation leads.
  13. Maschino, Steven E.; Parnis, Steven M.; Buras, William R.; Guzman, Albert W., Autonomic nerve stimulation to treat a gastrointestinal disorder.
  14. Hussain, Saadat, Battery life estimation based on voltage depletion rate.
  15. Maschino, Steven E., Blocking exogenous action potentials by an implantable medical device.
  16. Carcieri, Stephen; Chen, Dean; Moffitt, Michael A., Capture and visualization of clinical effects data in relation to a lead and/or locus of stimulation.
  17. Armstrong, Randolph K.; Maschino, Steven E.; Scott, Timothy L., Changeable electrode polarity stimulation by an implantable medical device.
  18. Osorio, Ivan; Scott, Timothy, Contingent cardio-protection for epilepsy patients.
  19. Osorio, Ivan; Scott, Timothy L., Contingent cardio-protection for epilepsy patients.
  20. Archer, Stephen T., Current management system for a stimulation output stage of an implantable neurostimulation system.
  21. Archer, Stephen T., Current management system for a stimulation output stage of an implantable neurostimulation system.
  22. Archer, Stephen T., Current management system for a stimulation output stage of an implantable neurostimulation system.
  23. Kokones, Scott; Carlton, Keith; Greszler, Alan, Deep brain stimulation system with inputs.
  24. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  25. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  26. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  27. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  28. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  29. Kokones, Scott; Swoyer, John; Geroy, Jesse, Directional lead assembly with electrode anchoring prongs.
  30. Kothandaraman, Sridhar; King, John D. H.; Woods, Carla M., Display graphics for use in stimulation therapies.
  31. Armstrong, Randolph K., Dosing limitation for an implantable medical device.
  32. Armstrong, Randolph K., Dynamic lead condition detection for an implantable medical device.
  33. Inman, D. Michael, Electrode assembly with fibers for a medical device.
  34. Inman, D. Michael, Electrode assembly with fibers for a medical device.
  35. Moffitt, Michael A.; Carbunaru, Rafael; Whitehurst, Todd K.; Mann, Alfred E., Electrode contact configurations for an implantable stimulator.
  36. Sartor, Joe Don, Electrode with rotatably deployable sheath.
  37. Jiang, Guangqiang; Woock, John; Schroeder, Dennis; Schmid, Eric, Electromyographic lead positioning and stimulation titration in a nerve stimulation system for treatment of overactive bladder.
  38. Jiang, Guangqiang; Woock, John; Schroeder, Dennis; Schmid, Eric, Electromyographic lead positioning and stimulation titration in a nerve stimulation system for treatment of overactive bladder.
  39. Brannan, Joseph D., Electrosurgical device having a multiplexer.
  40. DeCarlo, Arnold V., Electrosurgical device with LED adapter.
  41. Podhajsky, Ronald J; Schmaltz, Dale Francis; Reschke, Arlan James, Electrosurgical pencil having a single button variable control.
  42. Podhajsky,Ronald J.; Schmaltz,Dale Francis; Reschke,Arlan James, Electrosurgical pencil having a single button variable control.
  43. Fry, Monte; Kerr, Duane; Reschke, Arlan J.; Heard, David N.; Horner, Glenn A., Electrosurgical pencil including improved controls.
  44. Heard, David N., Electrosurgical pencil including improved controls.
  45. Heard, David N.; Allen, IV, James D., Electrosurgical pencil including improved controls.
  46. Heard, David N.; Allen, IV, James D., Electrosurgical pencil including improved controls.
  47. Heard, David N.; Kerr, Duane; Sartor, Joe D., Electrosurgical pencil including improved controls.
  48. Kerr, Duane E., Electrosurgical pencil including improved controls.
  49. Kerr, Duane; Fry, Monte; Horner, Glenn A., Electrosurgical pencil including improved controls.
  50. Sartor, Joe D.; Behnke, Robert; Buysse, Steven P.; Ehr, Chris J.; Heard, David N.; Huseman, Mark J.; Podhajsky, Ronald J.; Reschke, Arlan J.; Schmaltz, Dale F., Electrosurgical pencil with advanced ES controls.
  51. Buchman, II, Thomas L.; Podhajsky, Ronald J.; Reschke, Arlan J., Electrosurgical pencil with drag sensing capability.
  52. Buchman, II, Thomas L.; Podhajsky, Ronald J.; Reschke, Arlan J., Electrosurgical pencil with drag sensing capability.
  53. Buchman, II,Thomas L.; Podhajsky,Ronald J.; Reschke,Arlan J., Electrosurgical pencil with drag sensing capability.
  54. Reschke,Arlan James; Buysse,Steven Paul; Heard,David Nichols; Sartor,Joe Don; Schmaltz,Dale Francis; Podhajsky,Ronald J., Electrosurgical pencil with improved controls.
  55. Sartor, Joe Don; Ehr, Chris J.; Reschke, Arlen J., Electrosurgical pencil with improved controls.
  56. Sartor,Joe Don; Ehr,Chris J.; Reschke,Arlen J., Electrosurgical pencil with improved controls.
  57. Sartor,Joe Don; Reschke,Arlen James; Heard,David Nichols; Schmaltz,Dale Francis; Podhajsky,Ronald J.; Buysse,Steven Paul; Huseman,Mark, Electrosurgical pencil with improved controls.
  58. Lu, Daniel C.; Edgerton, V. Reggie; Roy, Roland R.; Gerasimenko, Yury P., Engaging the cervical spinal cord circuitry to re-enable volitional control of hand function in tetraplegic subjects.
  59. Mathonnet, Olivier, Extension cutting blade.
  60. Sartor, Joe Don, Handheld electrosurgical apparatus for controlling operating room equipment.
  61. Inman, D. Michael; Begnaud, Jason D., Heat dissipation for a lead assembly.
  62. Cowley, Anthony W., Helical electrode for nerve stimulation.
  63. Edgerton, Victor Reggie; Roy, Roland R.; Gerasimenko, Yury; Burdick, Joel W.; Harkema, Susan J.; Hodes, Jonathan; Tai, Yu-Chong; Nandra, Mandheerej S.; Angeli, Claudia A.; Desautels, Thomas Anthony, High density epidural stimulation for facilitation of locomotion, posture, voluntary movement, and recovery of autonomic, sexual, vasomotor, and cognitive function after neurological injury.
  64. Edgerton, Victor Reggie; Roy, Roland R.; Gerasimenko, Yury; Burdick, Joel W.; Harkema, Susan J.; Hodes, Jonathan; Tai, Yu-Chong; Nandra, Mandheerej S.; Angeli, Claudia A.; Desautels, Thomas Anthony, High density epidural stimulation for facilitation of locomotion, posture, voluntary movement, and recovery of autonomic, sexual, vasomotor, and cognitive function after neurological injury.
  65. Cunningham, James S.; Romero, Paul R.; Roy, Jeffrey M., High volume fluid seal for electrosurgical handpiece.
  66. Maschino,Steven E.; Parnis,Steven M.; Armstrong,Scott A., Identification of electrodes for nerve stimulation in the treatment of eating disorders.
  67. Armstrong, Randolph K.; Armstrong, Scott A., Implantable medical device charge balance assessment.
  68. Armstrong,Randolph K.; Armstrong,Scott A., Implantable medical device with reconfigurable non-volatile program.
  69. Armstrong, Scott A.; Armstrong, Randolph K., Implantable neurostimulator with refractory stimulation.
  70. Kokones, Scott; Carlton, Keith; Greszler, Alan, Implantable system with inputs.
  71. Jiang, Guangqiang; Woock, John; Schroeder, Dennis; Schmid, Eric, Integrated electromyographic clinician programmer for use with an implantable neurostimulator.
  72. McIntyre, Cameron C.; Butson, Christopher R.; Hall, John D.; Henderson, Jaimie M., Method and device for displaying predicted volume of influence.
  73. Xi, Cecilia Qin; Ness, Lanitia; Rosenberg, Stuart, Method and system to select a neurostimulation system configuration based on cardiac rhythm feedback.
  74. Tai, Yu-Chong; Nandra, Mandheerej S.; Burdick, Joel W.; Rodger, Damien Craig; Fong, Andy; Edgerton, Victor Reggie; Roy, Roland R.; Gerasimenko, Yury; Lavrov, Igor; Harkema, Susan J.; Angeli, Claudia A., Method of constructing an implantable microelectrode array.
  75. Armstrong, Randolph K.; Maschino, Steven E.; Scott, Timothy L., Method, apparatus and system for bipolar charge utilization during stimulation by an implantable medical device.
  76. Hargrove, Jeffrey B., Methods and apparatus for electrical stimulation of tissues using signals that minimize the effects of tissue impedance.
  77. Jiang, Guangqing; Woock, John; Schroeder, Dennis; Schmid, Eric, Methods for determining neurostimulation electrode configurations based on neural localization.
  78. Craig, Arthur D., Microburst electrical stimulation of cranial nerves for the treatment of medical conditions.
  79. Craig, Arthur D., Microburst electrical stimulation of cranial nerves for the treatment of medical conditions.
  80. Craig, Arthur D., Microburst electrical stimulation of cranial nerves for the treatment of medical conditions.
  81. Craig, Arthur D., Microburst electrical stimulation of cranial nerves for the treatment of medical conditions.
  82. Sartor,Joe D.; Schmaltz,Dale F., Motion detector for controlling electrosurgical output.
  83. Maschino, Steven E.; Byerman, Bryan P., Multi-electrode assembly for an implantable medical device.
  84. Gerasimenko, Yury; Edgerton, Victor Reggie; Roy, Roland R.; Lu, Daniel C., Multi-site transcutaneous electrical stimulation of the spinal cord for facilitation of locomotion.
  85. King, John D. H.; Thacker, James R., Neural stimulation system providing auto adjustment of stimulus output as a function of sensed impedance.
  86. King, John D. H.; Thacker, James R., Neural stimulation system providing auto adjustment of stimulus output as a function of sensed impedance.
  87. King, John D. H.; Thacker, James R., Neural stimulation system providing auto adjustment of stimulus output as a function of sensed impedance.
  88. King, John D. H.; Thacker, James R., Neural stimulation system providing auto adjustment of stimulus output as a function of sensed impedance.
  89. King, John D. H.; Thacker, James R., Neural stimulation system providing auto adjustment of stimulus output as a function of sensed impedance.
  90. King,John D H; Thacker,James R, Neural stimulation system providing auto adjustment of stimulus output as a function of sensed impedance.
  91. Thacker, James R.; Woods, Carla Mann, Neural stimulation system providing auto adjustment of stimulus output as a function of sensed pressure changes.
  92. Thacker,James R; Woods,Carla Mann, Neural stimulation system providing auto adjustment of stimulus output as a function of sensed pressure changes.
  93. Terry, Jr., Reese S., Neurostimulation with signal duration determined by a cardiac cycle.
  94. Terry, Jr., Reese S., Neurostimulation with signal duration determined by a cardiac cycle.
  95. Burdick, Joel W.; Tai, Yu-Chong; Naber, John F.; Keynton, Robert S.; Edgerton, Victor Reggie; Roy, Roland R.; Gerasimenko, Yury; Harkema, Susan J.; Hodes, Jonathan; Angeli, Claudia A; Nandra, Mandheerej S.; Desautels, Thomas Anthony; Upchurch, Steven L.; Jackson, Douglas J.; Terrafranca, Nicholas A.; Chen, Yangsheng, Neurostimulator devices using a machine learning method implementing a gaussian process optimization.
  96. Edgerton, Victor Reggie; Gerasimenko, Yuri P.; Terrafranca, Nicholas A.; Lu, Daniel C., Non invasive neuromodulation device for enabling recovery of motor, sensory, autonomic, sexual, vasomotor and cognitive function.
  97. Edgerton, Victor Reggie; Gerasimenko, Yury P.; Terrafranca, Nicholas A.; Lu, Daniel C., Non invasive neuromodulation device for enabling recovery of motor, sensory, autonomic, sexual, vasomotor and cognitive function.
  98. Scott, Timothy L.; Maschino, Steven E., Non-surgical device and methods for trans-esophageal vagus nerve stimulation.
  99. Maschino, Steven E.; Parnis, Steven M.; Armstrong, Scott A., Noninvasively adjustable gastric band.
  100. Carlton, Keith; Kokones, Scott, Patient programmer with input and sensing capabilities.
  101. Reschke,Arlan James, Pistol grip electrosurgical pencil with manual aspirator/irrigator and methods of using the same.
  102. Carcieri, Stephen; Chen, Dean; Moffitt, Micahel A., Point-and-click programming for deep brain stimulation using real-time monopolar review trendlines.
  103. Carcieri, Stephen; Chen, Dean; Moffitt, Michael A., Point-and-click programming for deep brain stimulation using real-time monopolar review trendlines.
  104. Carcieri, Stephen; Chen, Dean; Moffitt, Michael A., Point-and-click programming for deep brain stimulation using real-time monopolar review trendlines.
  105. Blum, David Arthur; Schulte, Gregory T.; Kokones, Scott; Carlton, Keith, Programming interface for spinal cord neuromodulation.
  106. Alberts, Jay L.; McIntyre, Cameron C., Reversing cognitive-motor impairments in patients having a neuro-degenerative disease using a computational modeling approach to deep brain stimulation programming.
  107. Rusin, Chris, Soft tissue RF transection and resection device.
  108. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  109. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  110. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  111. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  112. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  113. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  114. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  115. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  116. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  117. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  118. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  119. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  120. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  121. Khalil, Saif; Angara, Raghavendra; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
  122. Burdick, Joel W.; Tai, Yu-Chong; Naber, John F.; Keynton, Robert S.; Edgerton, Victor Reggie; Roy, Roland R.; Gerasimenko, Yury; Harkema, Susan J.; Hodes, Jonathan; Angeli, Claudia A.; Nandra, Mandheerej S.; Desautels, Thomas Anthony; Upchurch, Steven L.; Jackson, Douglas J.; Terrafranca, Nicholas A.; Chen, Yangshen, Spinal stimulator systems for restoration of function.
  123. Craig, Arthur D., Synchronization of vagus nerve stimulation with the cardiac cycle of a patient.
  124. Craig, Arthur D., Synchronization of vagus nerve stimulation with the cardiac cycle of a patient.
  125. Carlton, Keith; Blum, David; Kokones, Scott, System and method for atlas registration.
  126. Machado, Andre, System and method for neuromodulation using composite patterns of stimulation or waveforms.
  127. Zottola, Dennis, System and methods for clinical effects mapping for directional stimulation leads.
  128. Moffitt, Michael A.; Steinke, G. Karl, Systems and methods for VOA model generation and use.
  129. Moffitt, Michael A.; Steinke, G. Karl, Systems and methods for VOA model generation and use.
  130. Bokil, Hemant, Systems and methods for analyzing electrical stimulation and selecting or manipulating volumes of activation.
  131. Rezai, Ali; Machado, Andre; Carlton, Keith, Systems and methods for neuromodulation using pre-recorded waveforms.
  132. Rezai, Ali; Machado, Andre; Carlton, Keith, Systems and methods for neuromodulation using pre-recorded waveforms.
  133. Jiang, Guangqiang; Woock, John; Schroeder, Dennis; Schmid, Eric, Systems and methods for neurostimulation electrode configurations based on neural localization.
  134. Carlton, Keith; Cassidy, Jim; Chen, Dean; Moffitt, Michael A.; Zottola, Dennis, Systems and methods for stimulation-related volume analysis, creation, and sharing.
  135. Moffitt, Michael A.; Kothandaraman, Sridhar, Systems, devices, and methods for electrical stimulation using feedback to adjust stimulation parameters.
  136. Grandhe, Sarvani; Kothandaraman, Sridhar; Massoumi, Soroush; Carbunaru, Rafael; Zottola, Dennis; Hershey, Bradley Lawrence, Systems, devices, and methods for providing electrical stimulation therapy feedback.
  137. Kothandaraman, Sridhar; Moffitt, Michael A., Techniques and methods for storing and transferring registration, atlas, and lead information between medical devices.
  138. Craig, Jason L, Thermal penetration and arc length controllable electrosurgical pencil.
  139. Craig, Jason L., Thermal penetration and arc length controllable electrosurgical pencil.
  140. Calderon, Ilan; Ben-David, Gal, Three-dimensional monitoring of myographic activity.
  141. Calderon,Ilan; Ben David,Gal, Three-dimensional monitoring of myographic activity.
  142. Begnaud, Jason D.; Dupont, Chris G.; Kolafa, Jerry J.; Nguyen, Huan D., Threshold optimization for tissue stimulation therapy.
  143. Edgerton, Victor Reggie; Gerasimenko, Yury P.; Terrafranca, Nicholas A.; Gad, Parag, Transcutaneous neuromodulation system and methods of using same.
  144. Edgerton, V. Reggie; Gerasimenko, Yury; Roy, Roland R.; Lu, Daniel C., Transcutaneous spinal cord stimulation: noninvasive tool for activation of locomotor circuitry.
  145. Barrett,Burke; Reddy,Ramish K.; Roslin,Mitchell S., Treatment of obesity by bilateral vagus nerve stimulation.
  146. Barrett,Burke T.; Roslin,Mitchell S., Treatment of obesity by sub-diaphragmatic nerve stimulation.
  147. Blum, David Arthur; Moffitt, Michael A.; Steinke, G. Karl; Carlton, Keith; Kokones, Scott; Sparks, Troy, VOA generation system and method using a fiber specific analysis.
  148. Craig, Arthur D., Vagus nerve stimulation method.
  149. Craig, Arthur D., Vagus nerve stimulation method.
  150. Craig, Arthur D., Vagus nerve stimulation method.
  151. Moffitt, Michael A., Visualization of relevant stimulation leadwire electrodes relative to selected stimulation information.
  152. Maschino, Steven E.; Parnis, Steven M.; Armstrong, Scott A., Weight loss method and device.
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