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Programmable current output stimulus stage for implantable device 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/36
출원번호 US-0338700 (1999-06-23)
발명자 / 주소
  • Gord John C.
출원인 / 주소
  • Advanced Bionics Corporation
대리인 / 주소
    Gold
인용정보 피인용 횟수 : 413  인용 특허 : 9

초록

A programmable output current source for use within an implantable tissue or nerve stimulator, e.g., an implantable cochlear stimulator or spinal cord stimulator, includes parallel-connected P-FET current source sets connected between a positive voltage rail and an electrode node, and parallel-conne

대표청구항

[ What is claimed is:] [1.] A programmable output current circuit for use within an implantable medical device having a plurality of stimulus electrodes, a selected grouping of said stimulus electrodes providing a path through which a programmable stimulus current is selectively applied, each of the

이 특허에 인용된 특허 (9)

  1. Crosby Peter A. (Drummoyne AUX) Daly Christopher N. (Biglola Plateau AUX) Money David K. (Pennant Hills AUX) Patrick James F. (Lane Cove AUX) Seligman Peter M. (Essendon AUX) Kuzma Janusz A. (Stanmor, Cochlear implant system for an auditory prosthesis.
  2. Gough David A. (Cardiff by the Sea CA), Electrochemical cell sensor for continuous short-term use in tissues and blood.
  3. Schulman Joseph H. (Santa Clarita CA) Loeb Gerald E. (Kingston CAX) Gord John C. (Venice CA) Strojnik Primoz (Granada Hills CA), Implantable microstimulator.
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  6. Schulman Joseph H. (Santa Clarita CA) Whitmoyer David I. (Los Angeles CA) Gord John C. (Venice CA) Strojnik Primoz (Granada Hills CA), Multichannel cochlear implant system including wearable speech processor.
  7. Sridhar Ramalingam (East Amherst NY) Kim Seokjin (Amherst NY) Shin Yong-Chul (Amherst NY) Bogineni Naidu C. R. (Amherst NY), Programmable analog synapse and neural networks incorporating same.
  8. Uber Richard (Stow MA), Variable-slope driver for pullup-terminated transmission lines.
  9. Schulman Joseph H. (Santa Clarita CA) Gord John C. (Venice CA) Strojnik Primoz (Granada Hills CA) Whitmoyer David I. (Los Angeles CA) Wolfe James H. (Canyon Country CA), Voltage/current control system for a human tissue stimulator.

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  248. Barker, John Michael, Retention assemblies for implantable electric stimulation systems and methods of making and using.
  249. Barker, John Michael, Retention assemblies for implantable electric stimulation systems and methods of making and using.
  250. Burckhardt, Laura; Govea, Michael X., Retractor and tools for implantation of electrical stimulation leads and methods of using and manufacture.
  251. 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.
  252. Ovadia, Marc; Pemberton, Jeanne E., Semiconductor and non-semiconductor non-diffusion-governed bioelectrodes.
  253. McDonald, Matthew Lee, Septum for covering a fastener assembly on a connector of an implantable electric stimulation system and methods of making and using.
  254. Mcdonald, Matthew Lee, Septum for covering a fastener assembly on a connector of an implantable electric stimulation system and methods of making and using.
  255. Thacker, James R.; McClure, Kelly H.; Whitehurst, Todd K., Sequenced and simultaneous stimulation for treating congestive heart failure.
  256. Leven, Jacob B., Side load lead anchor and methods and systems using the lead anchor.
  257. Barker, John Michael, Side loading lead anchor and methods of making and using thereof.
  258. Litvak, Leonid M.; Mishra, Lakshmi N.; Fridman, Gene Y.; Hartley, Lee F., Sound processing and stimulation systems and methods for use with cochlear implant devices.
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  260. Litvak, Leonid M.; Mishra, Lakshmi N.; Fridman, Gene Y.; Hartley, Lee F., Sound processing and stimulation systems and methods for use with cochlear implant devices.
  261. Litvak, Leonid M.; Mishra, Lakshmi N.; Fridman, Gene Y.; Hartley, Lee F., Sound processing and stimulation systems and methods for use with cochlear implant devices.
  262. Litvak, Leonid M.; Mishra, Lakshmi N.; Fridman, Gene Y.; Hartley, Lee F., Sound processing and stimulation systems and methods for use with cochlear implant devices.
  263. Litvak,Leonid M.; Fridman,Gene Y.; Mishra,Lakshmi N.; Hartley,Lee F., Sound processing and stimulation systems and methods for use with cochlear implant devices.
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  265. Angara, Raghavendra; Khalil, Saif; Curtis, Miles; Biele, Christopher; Fellmeth, Daniel, Spinal cord stimulator system.
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  279. Chen, Roger; Barker, John Michael, Spring passive lead anchor and methods and devices using the anchor.
  280. Chen, Roger; Barker, John Michael, Spring passive lead anchor and methods and devices using the anchor.
  281. Pianca, Anne Margaret; Gould, Christopher B.; Krueger, Joel Adam, Stimulation system with percutaneously deliverable paddle lead and methods of making and using.
  282. Anderson, Meredith L., Stimulator leads and methods for lead fabrication.
  283. Barker, John Michael, Stylet for guiding leads of implantable electric stimulation systems and methods of making and using.
  284. Roche, Julia A.; Govea, Michael X., Surgical retractor for implanting leads and methods of making and using.
  285. He,Yuping; Peterson,David K. L.; Parramon,Jordi, Switched-matrix output for multi-channel implantable stimulator.
  286. Carlton, Keith; Blum, David; Kokones, Scott, System and method for atlas registration.
  287. Cowley, Anthony W.; Hussain, Saadat, System and method for estimating battery capacity.
  288. Barker, John Michael, System and method for making and using a lead introducer for an implantable electrical stimulation system.
  289. Barker, John Michael, System and method for making and using a lead introducer for an implantable electrical stimulation system.
  290. Bradley, Kerry, System and method using multiple timing channels for electrode adjustment during set up of an implanted stimulator device.
  291. Zottola, Dennis, System and methods for clinical effects mapping for directional stimulation leads.
  292. Kelly,Shawn; Rizzo,Joseph; Wyatt,John, System for and method of power efficient electrical tissue stimulation.
  293. McDonald, Matthew Lee, System for separating conductors.
  294. Venook, Ross Daniel; McDonald, Matthew Lee, Systems and leads for improved RF compatibility and methods of manufacture and use.
  295. Moffitt, Michael A.; Steinke, G. Karl, Systems and methods for VOA model generation and use.
  296. Moffitt, Michael A.; Steinke, G. Karl, Systems and methods for VOA model generation and use.
  297. McDonald, Matthew Lee; Venook, Ross Daniel, Systems and methods for altering one or more RF-response properties of electrical stimulation systems.
  298. McDonald, Matthew Lee; Venook, Ross Daniel, Systems and methods for altering one or more RF-response properties of electrical stimulation systems.
  299. McDonald, Matthew Lee, Systems and methods for anchoring leads of electrical stimulation systems in and around bony structures.
  300. McDonald, Matthew Lee, Systems and methods for coupling coiled conductors to conductive contacts of an electrical stimulation system.
  301. McDonald, Matthew Lee, Systems and methods for coupling coiled conductors to conductive contacts of an electrical stimulation system.
  302. Barker, John Michael, Systems and methods for coupling conductors to conductive contacts of electrical stimulation systems.
  303. Moffitt, Michael A.; Gould, Christopher B.; Aghassian, Daniel; Gin, Marco Henry; Parramon, Jordi, Systems and methods for detecting a loss of electrical connectivity between components of implantable medical lead systems.
  304. Zhu, Changfang, Systems and methods for detecting cerebrospinal-fluid pulsation using an implantable electrical stimulation device.
  305. Bokil, Hemant, Systems and methods for determining orientation of an implanted lead.
  306. McDonald, Matthew Lee; Venook, Ross Daniel, Systems and methods for disposing one or more layers of material between lead conductor segments of electrical stimulation systems.
  307. McDonald, Matthew Lee; Venook, Ross Daniel, Systems and methods for electrically disconnecting components of implantable electrical systems.
  308. Barker, John Michael, Systems and methods for electrically stimulating patient tissue on or around one or more bony structures.
  309. Barker, John Michael, Systems and methods for electrically stimulating patient tissue on or around one or more bony structures.
  310. Howard, Joshua Dale; Pianca, Anne Margaret; Pandit, Aditya Vasudeo, Systems and methods for enhancing paddle lead placement.
  311. McDonald, Matthew Lee, Systems and methods for forming an end of an elongated member of an electrical stimulation system.
  312. Ranu, Emarit A. S.; Lee, Dongchul, Systems and methods for identifying anode placement based on cerebrospinal fluid thickness.
  313. Govea, Michael, Systems and methods for implanting an electrical stimulation lead using a sheath.
  314. Carbunaru, Rafael; McDonald, Matthew Lee, Systems and methods for improving RF compatibility of electrical stimulation leads.
  315. McDonald, Matthew Lee; Govea, Michael X., Systems and methods for improving RF compatibility of electrical stimulation leads.
  316. Govea, Michael; McDonald, Matthew Lee; Barker, John Michael, Systems and methods for inputting fluid into a lead of an electrical stimulation system.
  317. Barker, John Michael, Systems and methods for making and using a lead introducer for an implantable electrical stimulation system.
  318. Barker, John Michael, Systems and methods for making and using a lead introducer for an implantable electrical stimulation system.
  319. Barker, John M., Systems and methods for making and using a lead introducer with a seal for an electrical stimulation system.
  320. Barker, John Michael, Systems and methods for making and using a side-loading operating room cable of an electrical stimulation system.
  321. Barker, John Michael, Systems and methods for making and using a side-loading operating room cable of an electrical stimulation system.
  322. Leven, Jacob B.; Barker, John M.; Pianca, Anne Margaret, Systems and methods for making and using a temporary lead.
  323. Lacey, Natalie; Howard, Joshua Dale, Systems and methods for making and using a tool for steering a paddle lead of an electrical stimulation system.
  324. Leven, Jacob B., Systems and methods for making and using an electrical stimulation system with photonic stimulation capabilities.
  325. Lee, Dongchul, Systems and methods for making and using bendable paddles with implantable electrical stimulation systems.
  326. Black, James Robert, Systems and methods for making and using connector assemblies for implantable medical device systems.
  327. Brase, Randall L.; Furgang, Roger Evan; Tong, Robert R., Systems and methods for making and using connector assembly retainers for electrical stimulation systems.
  328. Villarta, Geoffrey Abellana; Howard, Joshua Dale, Systems and methods for making and using connector contact arrays for electrical stimulation systems.
  329. Villarta, Geoffrey Abellana; Howard, Joshua Dale, Systems and methods for making and using connector contact arrays for electrical stimulation systems.
  330. Sundaramurthy, Priya; Pandit, Aditya Vasudeo, Systems and methods for making and using connectors for electrical stimulation systems.
  331. Orinski, William George, Systems and methods for making and using contact assemblies for leads of electrical stimulation systems.
  332. Orinski, William George, Systems and methods for making and using contact assemblies for leads of electrical stimulation systems.
  333. Pianca, Anne Margaret, Systems and methods for making and using contact assemblies for leads of electrical stimulation systems.
  334. Howard, Joshua Dale, Systems and methods for making and using electrical stimulation leads with shaped mesh contact assemblies.
  335. Barker, John Michael, Systems and methods for making and using electrical stimulation systems having multi-lead-element lead bodies.
  336. Barker, John Michael, Systems and methods for making and using electrical stimulation systems having multi-lead-element lead bodies.
  337. Govea, Michael X.; Howard, Joshua Dale, Systems and methods for making and using electrical stimulation systems to reduce RF-induced tissue heating.
  338. Malinowski, Zdzislaw B.; Murtonen, Salomo; Rahman, Mizan, Systems and methods for making and using electrical stimulation systems with improved RF compatibility.
  339. Malinowski, Zdzislaw B.; Murtonen, Salomo; Rahman, Mizan, Systems and methods for making and using electrical stimulation systems with improved RF compatibility.
  340. McDonald, Matthew Lee; Venook, Ross Daniel, Systems and methods for making and using electrical stimulation systems with improved RF compatibility.
  341. Murtonen, Salomo, Systems and methods for making and using electrical stimulation systems with improved RF compatibility.
  342. Pianca, Anne Margaret; Peterson, David Karl Lee, Systems and methods for making and using electrode configurations for paddle leads.
  343. Pianca, Anne Margaret; Peterson, David Karl Lee, Systems and methods for making and using electrode configurations for paddle leads.
  344. McDonald, Matthew Lee; Muhleman, Jacob Matthew; Carbunaru, Rafael, Systems and methods for making and using electrode or terminal extensions for coupling to leads of implantable electrical systems.
  345. McDonald, Matthew Lee; Muhleman, Jacob Matthew; Carbunaru, Rafael, Systems and methods for making and using electrode or terminal extensions for coupling to leads of implantable electrical systems.
  346. Lee, Dongchul, Systems and methods for making and using electrodes for enhancing stimulation penetration of patient tissue.
  347. Ayanoor-Vitikkate, Vipin; Pianca, Anne Margaret; Colvin, Michael S.; Barker, John Michael, Systems and methods for making and using enhanced electrodes for electrical stimulation systems.
  348. Ayanoor-Vitikkate, Vipin; Pianca, Anne Margaret; Colvin, Michael; Barker, John Michael, Systems and methods for making and using enhanced electrodes for electrical stimulation systems.
  349. Carbunaru, Rafael, Systems and methods for making and using implantable electrical systems with leads that couple to multiple connector ports.
  350. DeRohan, Robert; Pandit, Aditya Vasudeo, Systems and methods for making and using improved connector contacts for electrical stimulation systems.
  351. Malinowski, Zdzislaw Bernard, Systems and methods for making and using improved connector contacts for electrical stimulation systems.
  352. Malinowski, Zdzislaw Bernard, Systems and methods for making and using improved connector contacts for electrical stimulation systems.
  353. Malinowski, Zdzislaw Bernard; Funderburk, Jeffery Van, Systems and methods for making and using improved connector contacts for electrical stimulation systems.
  354. DeRohan, Robert; Pandit, Aditya Vasudeo, Systems and methods for making and using improved connectors for electrical stimulation systems.
  355. DeRohan, Robert; Pandit, Aditya Vasudeo, Systems and methods for making and using improved connectors for electrical stimulation systems.
  356. Govea, Michael X.; Howard, Joshua Dale, Systems and methods for making and using improved contact arrays for electrical stimulation systems.
  357. Malinowski, Zdzislaw Bernard, Systems and methods for making and using improved contact arrays for electrical stimulation systems.
  358. Govea, Michael X., Systems and methods for making and using improved operating-room cables for electrical stimulation systems.
  359. Govea, Michael X.; Orinski, William George, Systems and methods for making and using lead anchors for leads of electrical stimulation systems.
  360. Venook, Ross Daniel; McDonald, Matthew Lee, Systems and methods for making and using leads for electrical stimulation systems with improved RF compatibility.
  361. Venook, Ross Daniel; McDonald, Matthew Lee, Systems and methods for making and using leads for electrical stimulation systems with improved RF compatibility.
  362. Pianca, Anne Margaret, Systems and methods for making and using paddle lead assemblies for electrical stimulation systems.
  363. Pianca, Anne Margaret, Systems and methods for making and using paddle lead assemblies for electrical stimulation systems.
  364. Pianca, Anne Margaret, Systems and methods for making and using paddle lead assemblies for electrical stimulation systems.
  365. Pianca, Anne Margaret; Sundaramurthy, Priya, Systems and methods for making and using paddle leads with adjustable spacing between adjacent electrodes.
  366. Nageri, Ranjan Krishna Mukhari; Villarta, Geoffrey Abellana, Systems and methods for making and using reversible mechanical lead anchors for electrical stimulation systems.
  367. Romero, Daniel James; Orinski, William George; Howard, Joshua Dale; Pianca, Anne Margaret, Systems and methods for making and using tip electrodes for leads of electrical stimulation systems.
  368. Romero, Daniel James; Orsinski, William George; Howard, Joshua Dale; Pianca, Anne Margaret, Systems and methods for making and using tip electrodes for leads of electrical stimulation systems.
  369. Gupta, Gaurav; Bocek, Joseph M.; Venook, Ross Daniel; McDonald, Matthew Lee; Carbunaru, Rafael; Patel, Chirag M., Systems and methods for obtaining and using incident field transfer functions of electrical stimulation systems.
  370. Barker, John Michael, Systems and methods for percutaneously implanting into a patient a paddle lead of an electrical stimulation system.
  371. Pianca, Anne Margaret, Systems and methods for providing electrical stimulation of multiple dorsal root ganglia with a single lead.
  372. Pianca, Anne Margaret, Systems and methods for providing electrical stimulation of multiple dorsal root ganglia with a single lead.
  373. Pianca, Anne Margaret, Systems and methods for providing electrical stimulation of multiple dorsal root ganglia with a single lead.
  374. Sarpeshkar, Rahul; Faltys, Michael A.; Sit, Ji-Jon, Systems and methods for providing neural stimulation with an asynchronous stochastic strategy.
  375. Moffitt, Michael A.; Carcieri, Stephen, Systems and methods for providing therapy to a patient using intermittent electrical stimulation.
  376. Moffitt, Michael A., Systems and methods for providing therapy using electrical stimulation to disrupt neuronal activity.
  377. Moffitt, Michael A.; Carcieri, Stephen, Systems and methods for providing therapy using electrical stimulation to disrupt neuronal activity.
  378. Gupta, Gaurav; Ozawa, Robert D.; Rahman, Md Mizanur, Systems and methods for reducing electromagnetic field-induced heating from an implantable pulse generator.
  379. Carlton, Keith; Cassidy, Jim; Chen, Dean; Moffitt, Michael A.; Zottola, Dennis, Systems and methods for stimulation-related volume analysis, creation, and sharing.
  380. Elborno, Ahmed A., Systems and methods for treating essential tremor or restless leg syndrome using spinal cord stimulation.
  381. Govea, Michael, Systems and methods of forming contact assemblies for leads of electrical stimulation systems.
  382. McDonald, Matthew Lee; Pianca, Anne Margaret; Howard, Joshua Dale, Systems and methods of making and using support elements for elongated members of implantable electric stimulation systems.
  383. McDonald, Matthew Lee; Pianca, Anne Margaret; Howard, Joshua Dale, Systems and methods of making and using support elements for elongated members of implantable electric stimulation systems.
  384. Litvak, Leonid M.; Mishra, Lakshmi N., Systems for fitting a cochlear implant to a patient.
  385. Litvak, Leonid M; Mishra, Lakshmi N., Systems for fitting a cochlear implant to a patient.
  386. Moffitt, Michael A.; Kothandaraman, Sridhar, Systems, devices, and methods for electrical stimulation using feedback to adjust stimulation parameters.
  387. McDonald, Matthew Lee; Pianca, Anne Margaret; Barker, John Michael; Pandit, Aditya Vasudeo, Systems, devices, and methods for electrically coupling terminals to electrodes of electrical stimulation systems.
  388. Grandhe, Sarvani; Kothandaraman, Sridhar; Massoumi, Soroush; Carbunaru, Rafael; Zottola, Dennis; Hershey, Bradley Lawrence, Systems, devices, and methods for providing electrical stimulation therapy feedback.
  389. Kilgard, Michael P; Cauller, Lawrence James; Engineer, Navzer; McIntyre, Christa; Rosellini, Will, Systems, methods and devices for paired plasticity.
  390. Kilgard, Michael; Cauller, Larry; Engineer, Navzer; McIntyre, Christa; Rosellini, Will, Systems, methods and devices for treating tinnitus.
  391. Kothandaraman, Sridhar; Moffitt, Michael A., Techniques and methods for storing and transferring registration, atlas, and lead information between medical devices.
  392. Shi, Jess W.; He, Yuping; Doan, Que T.; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  393. Shi, Jess W.; He, Yuping; Doan, Que T.; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  394. Shi, Jess W.; He, Yuping; Doan, Que; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  395. Shi, Jess Weigian; He, Yuping; Doan, Que T.; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  396. Shi,Jess Weigian; He,Yuping; Doan,Que T.; Peterson,David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  397. Klostermann, Daniel Joseph; Rahman, Mizanur, Telemetry protocol for ultra low error rates useable in implantable medical devices.
  398. Klostermann, Daniel Joseph; Rahman, Mizanur, Telemetry protocol for ultra low error rates useable in implantable medical devices.
  399. Klostermann, Daniel Joseph; Rahman, Md. Mizanur, Telemetry-based wake up of an implantable medical device.
  400. Leven, Jacob B., Tension clamp side loading lead anchor and methods and systems using the lead anchor.
  401. Leven, Jacob B., Threaded connector assembly and methods of making and using the same.
  402. Barker, John Michael, Three-piece button anchor and methods and devices using the anchor.
  403. Kilgard, Michael P.; Cauller, Larry; Engineer, Navzer; McIntyre Rodriguez, Christa; Rosellini, Will, Timing control for paired plasticity.
  404. Kilgard, Michael P.; Cauller, Larry; Engineer, Navzer; McIntyre Rodriguez, Christa; Rosellini, Will, Timing control for paired plasticity.
  405. Kilgard, Michael P.; Cauller, Larry; Engineer, Nazer; McIntyre, Christa; Rossellini, Will, Timing control for paired plasticity.
  406. Kilgard, Michael; Cauller, Larry; Engineer, Navzer; McIntyre, Christa; Rosellini, Will, Timing control for paired plasticity.
  407. Nguyen-Stella, Quynh; Chinn, Kenny Kinyen; Barker, John Michael; Husmann, Surekha B.; Chen, Roger, Torque lock anchor and methods and devices using the anchor.
  408. Nguyen-Stella, Quynh; Chinn, Kenny Kinyen; Barker, John Michael; Husmann, Surekha B.; Chen, Roger, Torque lock anchor and methods and devices using the anchor.
  409. Nguyen-Stella, Quynh; Chinn, Kenny Kinyen; Barker, John Michael; Husmann, Surekha B.; Chen, Roger, Torque lock anchor and methods and devices using the anchor.
  410. Venancio, Cameron, Torsed sleeve lead anchor and systems and methods of manufacture and use thereof.
  411. Barker, John Michael; Jaax, Kristen N., Tubular lead anchor and methods and devices using the anchor.
  412. 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.
  413. Moffitt, Michael A., Visualization of relevant stimulation leadwire electrodes relative to selected stimulation information.
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