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[미국특허] Battery impedance measurement apparatus 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/08
출원번호 US-0619519 (1990-11-29)
발명자 / 주소
  • Wayne David A. (Scottsdale AZ) Huyhn Tho (Mesa AZ) Ireland Jeff (Brooklyn Park MN)
출원인 / 주소
  • Medtronic, Inc. (Minneapolis MN 02)
인용정보 피인용 횟수 : 105  인용 특허 : 0

초록

A battery impedance measurement apparatus for battery powered implantable medical apparatus in which current source means and reference impedance means are selectively connected across the battery after it has been isolated from the medical apparatus, and the resulting currents of interest are digit

대표청구항

In implantable electrical medical apparatus having telemetry means and battery means, battery impedance measurement apparatus comprising: a. means for selectively isolating said battery means from said medical apparatus; b. first circuit means selectively connectable in circuit with said battery mea

이 특허를 인용한 특허 (105) 인용/피인용 타임라인 분석

  1. Gandhi, Rajesh K.; Linder, William J.; Vanderlinde, Scott; Kalgren, James; Propp, Hal M., Abnormal battery depletion detection in an implantable device.
  2. Osorio, Ivan; Frei, Mark, Algorithm for detecting a seizure from cardiac data.
  3. Osorio, Ivan; Frei, Mark G., Algorithm for detecting a seizure from cardiac data.
  4. Osorio, Ivan; Frei, Mark G., Algorithm for detecting a seizure from cardiac data.
  5. Armstrong, Randolph K.; Rodriguez, Albert A.; Maschino, Steven E., Alternative operation mode for an implantable medical device based upon lead condition.
  6. Michael W. Dooley ; Gregory Scott Munson, Apparatus and method for estimating battery condition in implantable cardioverter/defibrillators.
  7. Kroll Mark W. ; Perttu Joseph S., Automatic battery-maintaining implantable cardioverter defibrillator and method for use.
  8. Kroll Mark W. ; Donohoo Ann M., Automatic capacitor maintenance system for an implantable cardioverter defibrillator.
  9. Gandhi, Rajesh K.; Root, Michael J., Battery depth of discharge in an implantable device.
  10. Hussain, Saadat, Battery life estimation based on voltage depletion rate.
  11. Crespi, Ann M., Battery longevity estimator that accounts for episodes of high current drain.
  12. Crespi, Ann M., Battery longevity estimator that accounts for episodes of high current drain.
  13. Brown, Timothy R., Battery longevity monitoring.
  14. Michaels, Matthew J.; Anderson, Joel A.; Cerny, Douglas S., Charge level measurement.
  15. Sabesan, Shivkumar, Cranial nerve stimulation to treat depression during sleep.
  16. Dropps, Frank R.; Brumwell, Dennis A., Current monitor for an implantable medical device.
  17. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  18. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  19. Osorio, Ivan; Frei, Mark G., Detecting and validating a detection of a state change from a template of heart rate derivative shape or heart beat wave complex.
  20. Osorio, Ivan; Frei, Mark, Detecting or validating a detection of a state change from a template of heart rate derivative shape or heart beat wave complex.
  21. Osorio, Ivan; Frei, Mark G., Detecting or validating a detection of a state change from a template of heart rate derivative shape or heart beat wave complex.
  22. Osorio, Ivan; Frei, Mark G., Detecting or validating a detection of a state change from a template of heart rate derivative shape or heart beat wave complex.
  23. Sabesan, Shivkumar, Detecting seizures based on heartbeat data.
  24. Sabesan, Shivkumar, Detecting seizures based on heartbeat data.
  25. Osorio, Ivan, Detecting, assessing and managing a risk of death in epilepsy.
  26. Osorio, Ivan, Detecting, assessing and managing epilepsy using a multi-variate, metric-based classification analysis.
  27. Osorio, Ivan, Detecting, assessing and managing epilepsy using a multi-variate, metric-based classification analysis.
  28. Osorio, Ivan, Detecting, quantifying, and/or classifying seizures using multimodal data.
  29. Osorio, Ivan, Detecting, quantifying, and/or classifying seizures using multimodal data.
  30. Osorio, Ivan, Detecting, quantifying, and/or classifying seizures using multimodal data.
  31. Osorio, Ivan, Detecting, quantifying, and/or classifying seizures using multimodal data.
  32. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  33. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  34. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  35. Gandhi, Rajesh K.; Linder, William J.; Lyden, Michael J.; Stessman, Nicholas J.; Kelly, Jonathan H.; Kalgren, James, Dynamic battery management in an implantable device.
  36. Gandhi, Rajesh Krishan; Linder, William J.; Lyden, Michael J.; Stessman, Nicholas J.; Kelly, Jonathan H.; Kalgren, James, Dynamic battery management in an implantable device.
  37. Colborn, John C.; Frei, Mark G.; Osorio, Ivan, Dynamic cranial nerve stimulation based on brain state determination from cardiac data.
  38. Colborn, John C.; Frei, Mark G.; Osorio, Ivan, Dynamic cranial nerve stimulation based on brain state determination from cardiac data.
  39. Colborn, John C.; Frei, Mark G.; Osorio, Ivan, Dynamic cranial nerve stimulation based on brain state determination from cardiac data.
  40. Colborn, John C, Dynamic heart rate threshold for neurological event detection.
  41. Armstrong, Randolph K., Dynamic lead condition detection for an implantable medical device.
  42. Inman, D. Michael, Electrode assembly with fibers for a medical device.
  43. Inman, D. Michael, Electrode assembly with fibers for a medical device.
  44. Le, Thanh; Richardson, James; Datzov, Litcho, Ferroresonant transformer for use in uninterruptible power supplies.
  45. Le, Thanh; Richardson, James; Datzov, Litcho, Ferroresonant transformer for use in uninterruptible power supplies.
  46. Inman, D. Michael; Begnaud, Jason D., Heat dissipation for a lead assembly.
  47. Cowley, Anthony W., Helical electrode for nerve stimulation.
  48. Liao, Wangcai; Zhang, Jicong, Identifying seizures using heart data from two or more windows.
  49. Liao, Wangcai, Identifying seizures using heart rate decrease.
  50. Armstrong, Randolph K.; Armstrong, Scott A., Implantable medical device charge balance assessment.
  51. Norton, John D; Ries, Andrew J; Crutchfield, Randolph E, Implantable medical device having isolated multi-cell power sources.
  52. Cabelka, Lonny V; Boone, Mark R; Crutchfield, Randolph E; Kuehn, Kevin P; Meador, John T; Norton, John D; Schmidt, Craig L, Implantable medical devices having multi-cell power sources.
  53. Crutchfield, Randolph E; Boone, Mark R; Cabelka, Lonny V; Kuehn, Kevin P; Meador, John T; Norton, John D; Schmidt, Craig L, Implantable medical devices having multi-cell power sources.
  54. Rasmussen, Marshall J.; Cabelka, Lonny V.; Crutchfield, Randolph E.; Zimmer, Jon E., Implantable medical devices with active component monitoring.
  55. Kuiper Edoardo C.,NLX, Implantable stimulator with battery status measurement.
  56. Armstrong, Randolph K., Lead condition assessment for an implantable medical device.
  57. Armstrong, Randolph K., Lead condition assessment for an implantable medical device.
  58. Armstrong, Randolph K., Lead condition assessment for an implantable medical device.
  59. Kozlowski James D., Method and apparatus for measurement of electrochemical cell and battery impedances.
  60. Huang,Yung Sheng, Method and apparatus for monitoring the condition of a battery by measuring its internal resistance.
  61. Zaccaria, Robert, Method and apparatus for the continuous performance monitoring of a lead acid battery system.
  62. Bruce, Robert, Method and system for communication between wireless devices.
  63. Osorio, Ivan; Frei, Mark G., Method and system for logging quantitative seizure information and assessing efficacy of therapy using cardiac signals.
  64. Thompson, David L., Method and system of follow-up support for a medical device.
  65. Frei, Mark; Osorio, Ivan, Method, apparatus and system for validating and quantifying cardiac beat data quality.
  66. Bukhman, Vladislav, Methods and systems for detecting epileptic events using NNXX, optionally with nonlinear analysis parameters.
  67. Liao, Wangcai, Methods and systems to diagnose depression.
  68. Norton, John D; Schmidt, Craig L, Monitoring multi-cell power source of an implantable medical device.
  69. Maschino, Steven E.; Byerman, Bryan P., Multi-electrode assembly for an implantable medical device.
  70. Crutchfield, Randolph E; Boone, Mark R; Cabelka, Lonny V; Meador, John T, Multi-primary transformer charging circuits for implantable medical devices.
  71. Busacker James W. ; Cinbis Can, Multilevel ERI for implantable medical devices.
  72. Boone, Mark R; Crutchfield, Randolph E; Cabelka, Lonny V; Kuehn, Kevin P; Meador, John T, Multiple transformer charging circuits for implantable medical devices.
  73. Sabesan, Shivkumar, Optimization of cranial nerve stimulation to treat seizure disorders during sleep.
  74. Sabesan, Shivkumar, Optimization of cranial nerve stimulation to treat seizure disorders during sleep.
  75. Sabesan, Shivkumar, Optimization of cranial nerve stimulation to treat seizure disorderse during sleep.
  76. Juran Carleen J. ; Yakimow Kristin ; Shelton Michael B. ; Stroebel John C. ; Markowitz H. Toby ; Vatterott Pierce ; Strandquist Harry A., Pacemaker implant recognition.
  77. Faley, Brian; LeBow, David; Bhatt, Pankaj H., Power control systems and methods.
  78. Armstrong, Randolph K.; Armstrong, Scott A.; Inman, D. Michael; Scott, Timothy L., Power supply monitoring for an implantable device.
  79. Armstrong, Randolph K.; Armstrong, Scott A.; Inman, D. Michael; Scott, Timothy L., Power supply monitoring for an implantable device.
  80. Armstrong, Randolph K.; Guzman, Albert W.; Nguyen, Huan D., Power supply monitoring for an implantable device.
  81. Armstrong, Randolph; Armstrong, Scott A.; Inman, Dana Michael; Scott, Timothy, Power supply monitoring for an implantable device.
  82. Juran Carleen J. ; Busacker James W. ; Shelton Michael B. ; Brynelsen Charles R. ; Edery Thomas P. ; Wahlstrand John D., Resetting ERI/POR/PIR/indicators in implantable medical devices.
  83. Osorio, Ivan; Lyubushin, Alexey; Sornette, Didier, Seizure detection methods, apparatus, and systems using an autoregression algorithm.
  84. Colborn, John C., Seizure detection using coordinate data.
  85. Colborn, John C., Seizure detection using coordinate data.
  86. Kiuchi, Hideki, Semiconductor device, battery state monitoring module, and vehicle system.
  87. Kiuchi, Hideki, Semiconductor device, battery state monitoring module, and vehicle system.
  88. Peck, Tobias M.; Carpenter, Jonathan D.; Thompson, Donald L.; Foster, Mike L., Status monitoring cables for generators.
  89. Richardson, James Patrick; Le, Than Quoc, Switching systems and methods for use in uninterruptible power supplies.
  90. Richardson, James Patrick; Le, Thanh Quoc, Switching systems and methods for use in uninterruptible power supplies.
  91. Koopman Jan (Dieren NLX), System and method for determining indicated pacemaker replacement time based upon battery impedance measurement.
  92. Cowley, Anthony W.; Hussain, Saadat, System and method for estimating battery capacity.
  93. Stessman, Nicholas J., System and method for measuring battery current.
  94. Stessman, Nicholas J., System and method for measuring battery current.
  95. Stessman,Nicholas J., System and method for measuring battery current.
  96. Rondoni, John C.; Jain, Mukul, System and method for monitoring a power source of an implantable medical device.
  97. Krig,David B.; Tobacman,Kenneth; Boon,Scot; James,Kristofer J.; Gandhi,Rajesh Krishan, System and method for monitoring or reporting battery status of implantable medical device.
  98. Osorio, Ivan, Systems approach to comorbidity assessment.
  99. Meador, John T; Crutchfield, Randolph E; Boone, Mark R; Cabelka, Lonny V, Transformer-based charging circuits for implantable medical devices.
  100. Rasmussen, Marshall J; Crutchfield, Randolph E; Boone, Mark R; Cabelka, Lonny V; Kuehn, Kevin P; Pape, Forrest C. M., Transthoracic protection circuit for implantable medical devices.
  101. Scott, Timothy L., Use of cardiac parameters in methods and systems for treating a chronic medical condition.
  102. Davis, Jon P.; Goetz, Steven M.; Torgerson, Nathan A.; Singal, Ashish; Davenport, Lynn A.; Sahasrabudhe, Rajeev M.; Gokaldas, Shyam; Anderson, Joel A.; Perz, Leroy L.; Straka, Scott E., User interface for optimizing energy management in a neurostimulation system.
  103. Frei, Mark; Osorio, Ivan, Validity test adaptive constraint modification for cardiac data used for detection of state changes.
  104. Stessman,Nicholas J., Voltage independent measurement apparatus, system, and method.
  105. Youm, WooSub; Lee, Sung Q; Hwang, Gunn, Wireless power transmission system calculating the battery charge state of the receiver based on the supply impedance of the power source and the summed impedance of the wireless transmitter, wireless receiver, medium therebetween, and battery charge circuit.

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