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Electrical stimulation strategies to reduce the incidence of seizures 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/36
출원번호 US-0952871 (2001-09-11)
발명자 / 주소
  • Pless,Benjamin D.
출원인 / 주소
  • Pless,Benjamin D.
인용정보 피인용 횟수 : 56  인용 특허 : 3

초록

초록이 없습니다.

대표청구항

대표청구항이 없습니다.

이 특허에 인용된 특허 (3)

  1. Robert E. Fischell ; David R. Fischell ; Adrian R. M. Upton CA; Dennis R. Potts ; Benjamin D. Pless, Means and method for the intracranial placement of a neurostimulator.
  2. Robert E. Fischell ; David R. Fischell ; Adrian R. M. Upton CA, Methods for responsively treating neurological disorders.
  3. Bruce Kirkpatrick ; Benjamin D. Pless, System and method for adaptive brain stimulation.

이 특허를 인용한 특허 (56)

  1. Pless, Benjamin D, Auto adjusting system for brain tissue stimulator.
  2. Govea, Michael X.; Howard, Joshua Dale; Wechter, David Ernest, Burr hole plugs for electrical stimulation systems and methods of making and using.
  3. Barker, John Michael, Cam lock burr hole plug for securing retainer/plug base.
  4. Barker, John Michael, Cam lock burr hole plug for securing stimulation lead.
  5. Barker, John Michael, Cam lock burr hole plug for securing stimulation lead.
  6. Archer, Stephen T., Current management system for a stimulation output stage of an implantable neurostimulation system.
  7. Archer, Stephen T., Current management system for a stimulation output stage of an implantable neurostimulation system.
  8. Archer, Stephen T., Current management system for a stimulation output stage of an implantable neurostimulation system.
  9. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  10. Tass, Peter A., Device for the desynchronization of neuronal brain activity.
  11. Bedenbaugh, Purvis, Devices and methods for tissue modulation and monitoring.
  12. Bedenbaugh, Purvis, Devices and methods for tissue modulation and monitoring.
  13. Pless, Benjamin D.; John, Michael Sasha, Implantable system enabling responsive therapy for pain.
  14. Pless, Benjamin D.; John, Michael Sasha, Implantable system enabling responsive therapy for pain.
  15. Pless, Benjamin D; John, Michael Sasha, Implantable system enabling responsive therapy for pain.
  16. Pless, Benjamin D; John, Michael Sasha, Implantable system enabling responsive therapy for pain.
  17. Pless, Benjamin D; John, Michael Sasha, Implantable system enabling responsive therapy for pain.
  18. Su, Xin, Intra-burst pulse variation for stimulation therapy.
  19. Bedenbaugh, Purvis, Lead and methods for brain monitoring and modulation.
  20. Bedenbaugh, Purvis, Lead and methods for brain monitoring and modulation.
  21. Bedenbaugh, Purvis, Lead and methods for brain monitoring and modulation.
  22. Archer, Stephen T., Measuring current during delivery of voltage regulated stimulation to a patient.
  23. Archer, Stephen T., Measuring current during delivery of voltage regulated stimulation to a patient.
  24. Tass, Peter A., Method for the desynchronization of neural brain activity.
  25. Daly, Christopher N.; Nygard, Tony M.; Eder, Helmut C., Minimization of electrical stimulus artifact during measurement of evoked neural response.
  26. Pless, Benjamin D, Neurostimulator involving stimulation strategies and process for using it.
  27. Pless, Benjamin D, Neurostimulator involving stimulation strategies and process for using it.
  28. Pless, Benjamin D., Neurostimulator involving stimulation strategies and process for using it.
  29. Chaovalitwongse,Wanpracha A.; Iasemidis,Leonidas D.; Pardalos,Panos M.; Sackellares,James C.; Shiau,Deng Shan, Optimization of spatio-temporal pattern processing for seizure warning and prediction.
  30. Kaula, Norbert; Iyassu, Yohannes, System and method of performing computer assisted stimulation programming (CASP) with a non-zero starting value customized to a patient.
  31. Weinstock, Ronald J., System for analyzing and treating abnormality of human and animal tissues.
  32. Weinstock, Ronald J., System for analyzing and treating abnormality of human and animal tissues.
  33. Weinstock, Ronald J., System for analyzing and treating abnormality of human and animal tissues.
  34. Kaula, Norbert; Iyassu, Yohannes, System, method, and device for providing feedback to a patient during electrical stimulation.
  35. Parker, Jon; Thacker, James R., Systems and methods for detecting intrathecal penetration.
  36. Parker, Jon; Thacker, James R., Systems and methods for detecting intrathecal penetration.
  37. Wingeier, Brett; Chao, Daniel; Pless, Benjamin; Tcheng, Thomas, Systems, methods and devices for a skull/brain interface.
  38. Wingeier, Brett; Chao, Daniel; Pless, Benjamin; Tcheng, Thomas, Systems, methods and devices for a skull/brain interface.
  39. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  40. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  41. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  42. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  43. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  44. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  45. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  46. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  47. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  48. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  49. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  50. Wingeier, Brett; Pless, Benjamin, Systems, methods and devices for a skull/brain interface.
  51. Kaula, Norbert; Iyassu, Yohannes, Systems, methods, and devices for automatically enabling different workflows based on selected medical devices.
  52. Kaula, Norbert; Iyassu, Yohannes; Siegel, Steven, Systems, methods, and devices for evaluating lead placement based on generated visual representations of sacrum and lead.
  53. Kaula, Norbert; Iyassu, Yohannes, Systems, methods, and devices for evaluating lead placement based on patient physiological responses.
  54. Kaula, Norbert; Iyassu, Yohannes, Systems, methods, and devices for evaluating lead placement based on patient physiological responses.
  55. Kaula, Norbert; Iyassu, Yohannes, Systems, methods, and devices for generating arbitrary stimulation waveforms.
  56. Kaula, Norbert; Iyassu, Yohannes, Systems, methods, and devices for performing electronically controlled test stimulation.
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