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    • 3. 发明授权
    • Method for self-test of defibrillation and pacing circuits including a patient isolation switch
    • 包括患者隔离开关在内的除颤和起搏回路自检的方法
    • US07096062B2
    • 2006-08-22
    • US10141687
    • 2002-05-07
    • Patrick F. KellyPaul S. TamuraPatricia EwenMichelle C. Beyersdorf
    • Patrick F. KellyPaul S. TamuraPatricia EwenMichelle C. Beyersdorf
    • A61N1/08
    • A61N1/3931A61N1/3912
    • A method and apparatus for performing self-tests on defibrillation and pacing circuits including a patient isolation switch is disclosed. Tests are provided for the defibrillation and pacing circuitry as well as the isolation switch. For testing the defibrillation circuitry, the impedance drive circuits and preamplifier may be utilized such that the energy storage capacitor is not required to be charged and discharged during the test, thus conserving energy. For testing the pacing circuitry and the isolation switch, the defibrillation circuitry is utilized. For certain of the tests, the test stimulus is the output voltage on the energy storage capacitor, while for other tests the test stimulus may be the pace current as indicated by the voltage across the input to the preamplifier. Alternative tests may be performed depending on whether the impedance at the output of the defibrillator is determined to be an open circuit or a short circuit.
    • 公开了一种在包括病人隔离开关的除颤和起搏电路上执行自检的方法和装置。 为除颤和起搏电路以及隔离开关提供了测试。 为了测试除颤电路,可以利用阻抗驱动电路和前置放大器,使得在测试期间不需要对储能电容器进行充电和放电,从而节省能量。 为了测试起搏电路和隔离开关,利用除颤电路。 对于某些测试,测试刺激是储能电容器上的输出电压,而对于其他测试,测试激励可以是由前置放大器的输入端两端的电压所示的速度电流。 可以根据除颤器输出端的阻抗是否被确定为开路还是短路来进行替代测试。
    • 4. 发明授权
    • Method and apparatus for self-test of defibrillation and pacing circuits including a patient isolation switch
    • 包括患者隔离开关在内的除颤和起搏回路自检的方法和装置
    • US06965796B2
    • 2005-11-15
    • US10096408
    • 2002-03-11
    • Patrick F. Kelly
    • Patrick F. Kelly
    • A61N1/39
    • A61N1/3931A61N1/3912
    • A method and apparatus for performing self-tests on defibrillation and pacing circuits including a patient isolation switch is disclosed. Following a test of the defibrillation and pacing circuitry, the isolation switch is tested by closing certain switches within the defibrillation circuitry so as to create a circuit path, and then opening and closing the isolation switch. Alternative tests may be performed depending on whether the impedance at the output of the defibrillator is determined to be an open circuit or a short circuit. If the output is determined to be an open circuit, then the test monitors the voltage across the output of the defibrillator as indicated by the voltage of a DC offset of a preamplifier coupled to the output of the defibrillator. For the short circuit test, the voltage on the energy storage capacitor is monitored.
    • 公开了一种在包括病人隔离开关的除颤和起搏电路上执行自检的方法和装置。 在除颤和起搏电路的测试之后,通过闭合除颤电路中的某些开关来测试隔离开关,以便产生电路路径,然后打开和关闭隔离开关。 可以根据除颤器输出端的阻抗是否被确定为开路还是短路来进行替代测试。 如果输出被确定为开路,则测试将监视除颤器输出端两端的电压,如耦合到除颤器输出端的前置放大器的直流偏移电压所示。 对于短路测试,可以监视储能电容器上的电压。
    • 5. 发明授权
    • Hazard mitigation in medical device
    • 医疗器械减轻危害
    • US06957368B2
    • 2005-10-18
    • US10056554
    • 2002-01-23
    • James S. NeumillerGary A. DeBardiPatrick F. Kelly
    • James S. NeumillerGary A. DeBardiPatrick F. Kelly
    • H04L1/22G06F11/00
    • H04L1/22
    • Delivery of energy by a defibrillator or other medical device is inhibited when the processor or software that controls a module of the medical device operates abnormally. A windowed watchdog timer (WWDT) incorporated into one module of the medical device is used to control the operation of other modules of the medical device via a software-based extension technique. As a result, the risk of harm to the patient is reduced compared to medical devices that incorporate over-limit type watchdog timers. In addition, costs associated with implementing WWDTs in multiple modules of the defibrillator are avoided, thereby lowering the overall cost of implementation.
    • 当控制医疗设备的模块的处理器或软件异常运行时,除颤器或其他医疗设备的能量输送被禁止。 通过结合在医疗器械的一个模块中的窗口看门狗定时器(WWDT),用于通过基于软件的扩展技术来控制医疗设备的其他模块的操作。 因此,与纳入超限型看门狗定时器的医疗设备相比,损害患者的风险降低。 此外,避免了在除颤器的多个模块中实现WWDT的成本,从而降低了整体执行成本。
    • 6. 发明授权
    • External defibrillator with charge advisory algorithm
    • 外部除颤器带充电咨询算法
    • US08831719B2
    • 2014-09-09
    • US13032400
    • 2011-02-22
    • Joseph L. SullivanPatrick F. KellyRichard C. NovaJames W. Taylor
    • Joseph L. SullivanPatrick F. KellyRichard C. NovaJames W. Taylor
    • A61N1/39
    • A61N1/39A61N1/3931A61N1/3987A61N1/3993
    • An external defibrillator includes a therapy delivery circuit, a sensor, and a processor. The therapy delivery circuit is configured to be electrically charged and to deliver electrical therapy to a patient. The sensor is configured to sense a physiological condition of the patient and generate data indicative of a probability that therapy will be delivered to the patient. The processor is configured to analyze data generated by the sensor to determine whether there is a threshold level of the probability that the therapy delivery will be delivered to the patient, if the probability is at least at the threshold level, charge the therapy delivery circuit, and determine whether therapy delivery is advisable based on the physiological condition of the patient after determining whether the probability is at least at the threshold level.
    • 外部除颤器包括治疗输送电路,传感器和处理器。 治疗递送电路被配置为带电并且向患者递送电疗法。 该传感器被配置为感测患者的生理状态,并产生指示治疗将被递送给患者的概率的数据。 所述处理器被配置为分析由所述传感器产生的数据,以确定是否存在将所述治疗递送递送给所述患者的概率的阈值水平,如果所述概率至少为阈值水平,对所述治疗递送电路充电, 并且在确定概率是否至少在阈值水平之后,基于患者的生理状况确定治疗递送是否可取。
    • 8. 发明授权
    • Hazard mitigation in medical device
    • 医疗器械减轻危害
    • US07356740B2
    • 2008-04-08
    • US11251716
    • 2005-10-17
    • James S. NeumillerGary A. DeBardiPatrick F. Kelly
    • James S. NeumillerGary A. DeBardiPatrick F. Kelly
    • G06F11/00
    • H04L1/22
    • Delivery of energy by a defibrillator or other medical device is inhibited when the processor or software that controls a module of the medical device operates abnormally. A windowed watchdog timer (WWDT) incorporated into one module of the medical device is used to control the operation of other modules of the medical device via a software-based extension technique. As a result, the risk of harm to the patient is reduced compared to medical devices that incorporate over-limit type watchdog timers. In addition, costs associated with implementing WWDTs in multiple modules of the defibrillator are avoided, thereby lowering the overall cost of implementation.
    • 当控制医疗设备的模块的处理器或软件异常运行时,除颤器或其他医疗设备的能量输送被禁止。 通过结合在医疗器械的一个模块中的窗口看门狗定时器(WWDT),用于通过基于软件的扩展技术来控制医疗设备的其他模块的操作。 因此,与纳入超限型看门狗定时器的医疗设备相比,损害患者的风险降低。 此外,避免了在除颤器的多个模块中实现WWDT的成本,从而降低了整体执行成本。