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    • 1. 发明授权
    • Battery recharge management for implantable medical device
    • 可植入医疗器械的电池充电管理
    • US08989869B2
    • 2015-03-24
    • US12959138
    • 2010-12-02
    • Nathan A. TorgersonJames E. Riekels
    • Nathan A. TorgersonJames E. Riekels
    • A61N1/365A61N1/378
    • A61N1/3787A61N1/36142
    • An implantable medical device having an implantable power source such as a rechargeable lithium ion battery. The implantable medical device includes a recharge module that regulates the recharging process of the implantable power source using closed-loop feedback control. The recharge module includes a recharge regulator, a recharge measurement device monitoring at least one recharge parameter, and a recharge regulation control unit for regulating the recharge energy delivered to the power source in response to the recharge measurement device. The recharge module adjusts the energy provided to the power source to ensure that the power source is being recharged under safe levels.
    • 一种具有可植入电源的可植入医疗装置,例如可充电锂离子电池。 可植入医疗装置包括充电模块,其使用闭环反馈控制来调节可植入电源的再充电过程。 再充电模块包括再充电调节器,监视至少一个再充电参数的再充电测量装置,以及用于响应于再充电测量装置调节传送到电源的再充电能量的再充电调节控制单元。 充电模块调整提供给电源的能量,以确保电源在安全水平下充电。
    • 2. 发明授权
    • Power management for an implantable medical device
    • 可植入医疗器械的电源管理
    • US06453198B1
    • 2002-09-17
    • US09560755
    • 2000-04-28
    • Nathan A. TorgersonJames E. Riekels
    • Nathan A. TorgersonJames E. Riekels
    • A61N118
    • A61N1/08
    • A power management system and technique to manage and allocate the energy provided to various components of an implanted device during periods of low energy. The power management system includes an implantable power source delivering energy to various components within the implantable medical device, a measurement device to measure the energy of the power source, and a processor responsive to the measurement device. The processor monitors the energy level of the power source. During periods of low energy, the processor limits the energy to certain device-critical components of the implantable medical device. This minimizes the risk of damage to the power source resulting from high energy drain during periods of low energy. Further, this preserves operation of device-critical components of the implanted device during periods of low energy.
    • 一种电力管理系统和技术,用于在低能量期间管理和分配提供给植入装置的各种部件的能量。 电力管理系统包括向可植入医疗装置内的各种部件输送能量的可植入电源,测量电源的能量的测量装置以及响应于测量装置的处理器。 处理器监视电源的能级。 在低能量期间,处理器将能量限制在可植入医疗设备的某些器件关键部件上。 这样可以最大限度地降低在低能量期间由于能量消耗导致的电源损坏的风险。 此外,这在低能量期间保持植入装置的装置关键部件的操作。
    • 3. 发明授权
    • Battery recharge management for implantable medical device
    • 可植入医疗器械的电池充电管理
    • US07865245B2
    • 2011-01-04
    • US11641263
    • 2006-12-19
    • Nathan A. TorgersonJames E. Riekels
    • Nathan A. TorgersonJames E. Riekels
    • A61N1/372
    • A61N1/3787A61N1/36142
    • An implantable medical device having an implantable power source such as a rechargeable lithium ion battery. The implantable medical device includes a recharge module that regulates the recharging process of the implantable power source using closed-loop feedback control. The recharge module includes a recharge regulator, a recharge measurement device monitoring at least one recharge parameter, and a recharge regulation control unit for regulating the recharge energy delivered to the power source in response to the recharge measurement device. The recharge module adjusts the energy provided to the power source to ensure that the power source is being recharged under safe levels.
    • 一种具有可植入电源的可植入医疗装置,例如可充电锂离子电池。 可植入医疗装置包括充电模块,其使用闭环反馈控制来调节可植入电源的再充电过程。 再充电模块包括再充电调节器,监视至少一个再充电参数的再充电测量装置,以及用于响应于再充电测量装置调节传送到电源的再充电能量的再充电调节控制单元。 充电模块调整提供给电源的能量,以确保电源在安全水平下充电。
    • 4. 发明申请
    • Battery recharge management for implantable medical device
    • 可植入医疗器械的电池充电管理
    • US20100234921A1
    • 2010-09-16
    • US11641263
    • 2006-12-19
    • Nathan A. TorgersonJames E. Riekels
    • Nathan A. TorgersonJames E. Riekels
    • A61N1/00
    • A61N1/3787A61N1/36142
    • An implantable medical device having an implantable power source such as a rechargeable lithium ion battery. The implantable medical device includes a recharge module that regulates the recharging process of the implantable power source using closed-loop feedback control. The recharge module includes a recharge regulator, a recharge measurement device monitoring at least one recharge parameter, and a recharge regulation control unit for regulating the recharge energy delivered to the power source in response to the recharge measurement device. The recharge module adjusts the energy provided to the power source to ensure that the power source is being recharged under safe levels.
    • 一种具有可植入电源的可植入医疗装置,例如可充电锂离子电池。 可植入医疗装置包括充电模块,其使用闭环反馈控制来调节可植入电源的再充电过程。 再充电模块包括再充电调节器,监测至少一个再充电参数的再充电测量装置,以及用于响应于再充电测量装置调节传送到电源的再充电能量的再充电调节控制单元。 充电模块调整提供给电源的能量,以确保电源在安全水平下充电。
    • 5. 发明申请
    • BATTERY RECHARGE MANAGEMENT FOR IMPLANTABLE MEDICAL DEVICE
    • 用于可植入医疗器械的电池充电管理
    • US20110077720A1
    • 2011-03-31
    • US12959138
    • 2010-12-02
    • Nathan A. TorgersonJames E. Riekels
    • Nathan A. TorgersonJames E. Riekels
    • A61N1/02
    • A61N1/3787A61N1/36142
    • An implantable medical device having an implantable power source such as a rechargeable lithium ion battery. The implantable medical device includes a recharge module that regulates the recharging process of the implantable power source using closed-loop feedback control. The recharge module includes a recharge regulator, a recharge measurement device monitoring at least one recharge parameter, and a recharge regulation control unit for regulating the recharge energy delivered to the power source in response to the recharge measurement device. The recharge module adjusts the energy provided to the power source to ensure that the power source is being recharged under safe levels.
    • 一种具有可植入电源的可植入医疗装置,例如可充电锂离子电池。 可植入医疗装置包括充电模块,其使用闭环反馈控制来调节可植入电源的再充电过程。 再充电模块包括再充电调节器,监视至少一个再充电参数的再充电测量装置,以及用于响应于再充电测量装置调节传送到电源的再充电能量的再充电调节控制单元。 充电模块调整提供给电源的能量,以确保电源在安全水平下充电。
    • 6. 发明授权
    • Battery recharge management for an implantable medical device
    • 可植入医疗器械的电池充电管理
    • US07167756B1
    • 2007-01-23
    • US09562221
    • 2000-04-28
    • Nathan A. TorgersonJames E. Riekels
    • Nathan A. TorgersonJames E. Riekels
    • A61N1/08
    • A61N1/3787A61N1/36142
    • An implantable medical device having an implantable power source such as a rechargeable lithium ion battery. The implantable medical device includes a recharge module that regulates the recharging process of the implantable power source using closed-loop feedback control. The recharge module includes a recharge regulator, a recharge measurement device monitoring at least one recharge parameter, and a recharge regulation control unit for regulating the recharge energy delivered to the power source in response to the recharge measurement device. The recharge module adjusts the energy provided to the power source to ensure that the power source is being recharged under safe levels.
    • 一种具有可植入电源的可植入医疗装置,例如可充电锂离子电池。 可植入医疗装置包括充电模块,其使用闭环反馈控制来调节可植入电源的再充电过程。 再充电模块包括再充电调节器,监视至少一个再充电参数的再充电测量装置,以及用于响应于再充电测量装置调节传送到电源的再充电能量的再充电调节控制单元。 充电模块调整提供给电源的能量,以确保电源在安全水平下充电。
    • 7. 发明授权
    • Implantable medical device and electrical stimulation device with magnetic shield
    • 可植入医疗器械和带有磁屏蔽的电刺激装置
    • US07945334B2
    • 2011-05-17
    • US10998485
    • 2004-11-29
    • Oscar JimenezGuillermo EcharriJohn E. KastJames E. RiekelsMark E. Schommer
    • Oscar JimenezGuillermo EcharriJohn E. KastJames E. RiekelsMark E. Schommer
    • A61N1/18
    • A61N1/3787
    • A rechargeable implantable medical device with a magnetic shield placed on the distal side of a secondary recharging coil to improve charging efficiency is disclosed. The rechargeable implantable medical device can be a wide variety of medical devices such as neuro stimulators, drug delivery pumps, pacemakers, defibrillators, diagnostic recorders, cochlear implants. The implantable medical device has a secondary recharging coil carried over a magnetic shield and coupled to electronics and a rechargable power source carried inside the housing. The electronics are configured to perform a medical therapy. Additionally a method for enhancing electromagnetic coupling during recharging of an implantable medical device is disclosed, and a method for reducing temperature rise during recharging of an implantable medical device is disclosed.
    • 公开了一种具有放置在次级再充电线圈的远侧上的磁屏蔽以提高充电效率的可充电可植入医疗装置。 可充电植入式医疗装置可以是各种各样的医疗装置,例如神经刺激器,药物输送泵,起搏器,去纤颤器,诊断记录器,人工耳蜗植入物。 可植入医疗装置具有一个承载在磁屏蔽上的二次再充电线圈,并耦合到电子装置和一个可充电的电源,该充电电源承载在外壳内。 电子设备被配置为执行医疗治疗。 此外,公开了一种用于在可植入医疗装置的再充电期间增强电磁耦合的方法,并且公开了一种用于在可植入医疗装置的再充电期间降低温度升高的方法。
    • 8. 发明授权
    • Method for refreshing a non-volatile memory
    • 刷新非易失性存储器的方法
    • US07447096B2
    • 2008-11-04
    • US11619677
    • 2007-01-04
    • James E. RiekelsSamuel Schlesinger
    • James E. RiekelsSamuel Schlesinger
    • G11C7/00
    • G11C11/406G11C7/1051G11C7/1063G11C7/20G11C11/40615G11C16/10G11C16/3418G11C16/3431
    • A non-volatile memory and a method of refreshing a memory are described. The method includes allowing an external system to control refreshing operations within the memory. The memory may generate a refresh request signal and transmit the refresh request signal to the external system. When the external system finds an available time to process the refresh request, the external system acknowledges the refresh request and transmits a refresh acknowledge signal to the memory. The memory may also comprise a page register for reading and rewriting a data state back to the memory. The page register may comprise latches in lieu of supplemental non-volatile storage elements, thereby conserving real estate within the memory.
    • 描述非易失性存储器和刷新存储器的方法。 该方法包括允许外部系统控制存储器内的刷新操作。 存储器可以产生刷新请求信号并将刷新请求信号发送到外部系统。 当外部系统找到处理刷新请求的可用时间时,外部系统确认刷新请求并向存储器发送刷新确认信号。 存储器还可以包括用于读取和重写数据状态回到存储器的页寄存器。 页面寄存器可以包括代替补充的非易失性存储元件的锁存器,从而节省存储器内的不动产。
    • 9. 发明授权
    • Implantable medical device with a recharging coil magnetic shield
    • 具有充电线圈磁屏蔽的可植入医疗器械
    • US06850803B1
    • 2005-02-01
    • US09596402
    • 2000-06-16
    • Oscar JimenezGuillermo EcharriJohn E. KastJames E. RiekelsMark E. Schommer
    • Oscar JimenezGuillermo EcharriJohn E. KastJames E. RiekelsMark E. Schommer
    • A61N1/378A61N1/40
    • A61N1/3787
    • A rechargeable implantable medical device with a magnetic shield placed on the distal side of a secondary recharging coil to improve recharging efficiency is disclosed. The rechargeable implantable medical device can be a wide variety of medical devices such as neuro stimulators, drug delivery pumps, pacemakers, defibrillators, diagnostic recorders, and cochlear implants. The implantable medical device has a secondary recharging coil carried over a magnetic shield and coupled to electronics and a rechargeable power source carried inside the housing. The electronics are configured to perform a medical therapy. Additionally a method for enhancing electromagnetic coupling during recharging of an implantable medical device is disclosed, and a method for reducing temperature rise during recharging of an implantable medical device is disclosed.
    • 公开了一种具有放置在次级再充电线圈的远侧上的磁屏蔽以提高再充电效率的可充电植入式医疗装置。 可充电植入式医疗装置可以是各种各样的医疗装置,例如神经刺激器,药物输送泵,起搏器,去纤颤器,诊断记录器和人工耳蜗。 可植入式医疗装置具有一个承载在磁屏蔽上的二次再充电线圈,并耦合到电子装置和一个承载在壳体内部的可充电电源。 电子设备被配置为执行医疗治疗。 此外,公开了一种用于在可植入医疗装置的再充电期间增强电磁耦合的方法,并且公开了一种用于在可植入医疗装置的再充电期间降低温度升高的方法。
    • 10. 发明授权
    • Method of charging an implantable medical device
    • 对可植入医疗器械进行充电的方法
    • US08170681B2
    • 2012-05-01
    • US10998486
    • 2004-11-29
    • Oscar JimenezGuillermo EcharriJohn E. KastJames E. RiekelsMark E. Schommer
    • Oscar JimenezGuillermo EcharriJohn E. KastJames E. RiekelsMark E. Schommer
    • A61N1/40
    • A61N1/3787
    • A rechargeable implantable medical device with a magnetic shield placed on the distal side of a secondary recharging coil to improve charging efficiency is disclosed. The rechargeable implantable medical device can be a wide variety of medical devices such as neuro stimulators, drug delivery pumps, pacemakers, defibrillators, diagnostic recorders, cochlear implants. The implantable medical device has a secondary recharging coil carried over a magnetic shield and coupled to electronics and a rechargeable power source carried inside the housing. The electronics are configured to perform a medical therapy. Additionally a method for enhancing electromagnetic coupling during recharging of an implantable medical device is disclosed, and a method for reducing temperature rise during recharging of an implantable medical device is disclosed.
    • 公开了一种具有放置在次级再充电线圈的远侧上的磁屏蔽以提高充电效率的可充电可植入医疗装置。 可充电植入式医疗装置可以是各种各样的医疗装置,例如神经刺激器,药物输送泵,起搏器,去纤颤器,诊断记录器,人工耳蜗植入物。 可植入式医疗装置具有一个承载在磁屏蔽上的二次再充电线圈,并耦合到电子装置和一个承载在壳体内部的可充电电源。 电子设备被配置为执行医疗治疗。 此外,公开了一种用于在可植入医疗装置的再充电期间增强电磁耦合的方法,并且公开了一种用于在可植入医疗装置的再充电期间降低温度升高的方法。