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    • 1. 发明申请
    • CARDIAC-SAFE ELECTROTHERAPY METHOD AND APPARATUS
    • WO2014160930A1
    • 2014-10-02
    • PCT/US2014/032163
    • 2014-03-28
    • GALVANI, LTD.
    • KROLL, Mark, William
    • A61N1/39A61N1/362A61N1/365
    • A61N1/3987A61N1/3906
    • A multi-modal electrotherapy apparatus including circuitry for administering defibrillation therapy and for administering medium voltage therapy (MVT) adapted to reduce the side effects of MVT. The electrotherapy apparatus is configured to selectively deliver MVT to vectors not involving the ventricles and defibrillation therapy to vectors involving the ventricles. The apparatus can use biphasic waveforms configured to avoid capture of cardiac cells during MVT. The electrotherapy apparatus can minimize the risk of applying MVT at inappropriate times, such as during atrial fibrillation or where conventional ventricular tachycardia or ventricular fibrillation therapy is more appropriate.
    • 一种多模式电疗装置,包括用于施用除颤治疗和用于施用适于减少MVT的副作用的中压治疗(MVT)的电路。 电疗设备被配置为选择性地将MVT递送到不涉及心室的矢量和除颤疗法到涉及心室的矢量。 该装置可以使用配置为避免在MVT期间捕获心脏细胞的双相波形。 电疗装置可以在不适当的时间(例如在心房颤动期间或在常规的室性心动过速或心室颤动疗法更合适的情况下)最小化应用MVT的风险。
    • 2. 发明申请
    • MEDIUM VOLTAGE THERAPY APPLICATIONS IN TREATING CARDIAC ARREST
    • 中等电压治疗应用于治疗心脏病
    • WO2006058133A2
    • 2006-06-01
    • PCT/US2005042569
    • 2005-11-23
    • GALVANI LTDKROLL KAIKROLL MARKBUGLIOSI THOMAS
    • KROLL KAIKROLL MARKBUGLIOSI THOMAS
    • A61N1/39
    • A61N1/39A61N1/3625A61N1/3925A61N1/3993
    • A method and system for treating an individual experiencing cardiac arrest using an automatic external defibrillator (AED) includes placing a first and a second electrode of the AED in electrical communication with an exterior surface of the individual. A need to apply a high voltage defibrillation signal to the individual is automatically determined. The method also includes automatically causing the AED to apply a medium voltage therapy (MVT) signal through the first and the second electrodes to the individual. The MVT signal is applied to induce a hemodynamic effect in the individual. Alternatively, or additionally, the MVT signal is applied to induce a respiratory effect in the individual. Optionally, the MVT signal is applied before determining the need to apply the defibrillation signal.
    • 使用自动外部除颤器(AED)治疗体验心跳骤停的个体的方法和系统包括将AED的第一和第二电极放置在与个体的外表面电连通。 自动确定对个体施加高电压除颤信号的需要。 该方法还包括自动使AED通过第一和第二电极向个体施加中压治疗(MVT)信号。 应用MVT信号以诱导个体的血液动力学效应。 或者或另外,施加MVT信号以在个体中诱发呼吸作用。 可选地,在确定需要施加除颤信号之前施加MVT信号。
    • 3. 发明申请
    • A METHOD AND APPARATUS FOR PREVENTING CLOTTING DURING ATRIAL FIBRILLATION
    • 一种用于在ATRIAL FIBRILLATION期间防止衣服的方法和装置
    • WO2000013748A1
    • 2000-03-16
    • PCT/US1999/020589
    • 1999-09-08
    • GALVANI, LTD.
    • KROLL, Kai
    • A61N1/39
    • A61N1/3925A61N1/395A61N1/3956
    • The present invention is a device for preventing clotting during atrial fibrillation. The device of the present invention includes optional electrical cardiac output forcing (ECOF) or ICD/AED back-up. The device includes a power supply (40) for operating the device, and for providing the necessary output forcing signals. The power supply is located in a housing which may be implanted into a human patient. In one embodiment of the invention, the housing acts as an electrode. At least one additional electrode is connected to the housing, and may be inserted into the human heart. A ventricular lead (18) is mounted to the electrode along with an atrial lead (14). The housing also contains an electrical cardiac stimulator (34). When a certain cardiac event, such as atrial fibrillation, is detected, anti-clotting pulses are applied to the heart via the atrial lead. If, and when ventricular fibrillation is detected, further pulses of a different voltage level are applied to the heart via the ventricular lead. In one embodiment of the invention, the anti-clotting pulses are synchronized to the R-wave sensed by the ventricular lead.
    • 本发明是一种用于在心房颤动期间预防凝血的装置。 本发明的装置包括可选的电心脏输出强迫(ECOF)或ICD / AED备用。 该装置包括用于操作该装置的电源(40),并提供必要的输出强制信号。 电源位于可以植入人类患者的外壳中。 在本发明的一个实施例中,壳体充当电极。 至少一个附加电极连接到壳体,并且可以插入到人的心脏中。 心室引线(18)与心房引线(14)一起安装到电极上。 壳体还包含电心脏刺激器(34)。 当检测到某种心脏事件(例如心房颤动)时,通过心房引线将抗凝血脉冲施加到心脏。 如果并且当检测到心室颤动时,通过心室引线将不同电压水平的另外的脉冲施加到心脏。 在本发明的一个实施方案中,抗凝血脉冲与由心室导线感测到的R波同步。
    • 7. 发明申请
    • A METHOD AND APPARATUS FOR PREVENTING CLOTTING DURING ATRIAL FIBRILLATION
    • 一种用于在ATRIAL FIBRILLATION期间防止衣服的方法和装置
    • WO0013748A9
    • 2002-08-22
    • PCT/US9920589
    • 1999-09-08
    • GALVANI LTD
    • KROLL KAI
    • A61N1/39
    • A61N1/3925A61N1/395A61N1/3956
    • The present invention is a device for preventing clotting during atrial fibrillation. The device of the present invention includes optional electrical cardiac output forcing (ECOF) or ICD/AED back-up. The device includes a power supply (40) for operating the device, and for providing the necessary output forcing signals. The power supply is located in a housing which may be implanted into a human patient. In one embodiment of the invention, the housing acts as an electrode. At least one additional electrode is connected to the housing, and may be inserted into the human heart. A ventricular lead (18) is mounted to the electrode along with an atrial lead (14). The housing also contains an electrical cardiac stimulator (34). When a certain cardiac event, such as atrial fibrillation, is detected, anti-clotting pulses are applied to the heart via the atrial lead. If, and when ventricular fibrillation is detected, further pulses of a different voltage level are applied to the heart via the ventricular lead. In one embodiment of the invention, the anti-clotting pulses are synchronized to the R-wave sensed by the ventricular lead.
    • 本发明是一种用于在心房颤动期间预防凝血的装置。 本发明的装置包括可选的电心脏输出强迫(ECOF)或ICD / AED备用。 该装置包括用于操作该装置的电源(40),并提供必要的输出强制信号。 电源位于可以植入人类患者的外壳中。 在本发明的一个实施例中,壳体充当电极。 至少一个附加电极连接到壳体,并且可以插入到人的心脏中。 心室引线(18)与心房引线(14)一起安装到电极。 壳体还包含电心脏刺激器(34)。 当检测到某种心脏事件(例如心房颤动)时,通过心房引线将抗凝血脉冲施加到心脏。 如果并且当检测到心室颤动时,通过心室引线将不同电压水平的另外的脉冲施加到心脏。 在本发明的一个实施方案中,抗凝血脉冲与由心室导线感测到的R波同步。
    • 8. 发明申请
    • METHOD AND APPARATUS FOR MONITORING SYNCOPE
    • 用于监测同步的方法和装置
    • WO2000013741A2
    • 2000-03-16
    • PCT/US1999020565
    • 1999-09-08
    • GALVANI, LTD.
    • GALVANI, LTD.KROLL, Kai
    • A61N
    • A61N1/08A61N1/3702
    • The present invention comprises a method and an apparatus for monitoring syncope, and having available for use an electrical cardiac output forcing (ECOF) back up. The present invention is an implantable device for recording the electrical activity within a human heart. The device of the present invention includes ECOF back up. The device includes a power supply for operating the device and for providing the necessary output forcing signals. A monitoring or detection device is provided connected to the power supply. The electrodes are provided to electrically connect the power supply and the detection device to a patient's heart. A memory device is also provided which is connected to the detection device for recording electrical activity and/or blood pressure data of the patient's heart. In a preferred embodiment of the present invention, the memory device is comprised of a short term loop buffer for continuously recording the electrical data from the patient's heart and a long term storage buffer. The short term loop buffer may be of a desired size, for example, capable of storing from 1-30 minutes of data before overriding occurs. Upon the occurrence of a predetermined event, for example, a bout of syncope, the data in the short term loop buffer is transferred to the long term storage buffer. An output control circuit is also provided which is connected to the detection device and to the power supply and to the electrodes. Upon the occurrence of a second predetermined event, such as fibrillation of the heart, the output control circuit causes the delivery of an electrical cardiac output forcing signal to the patient's heart.
    • 本发明包括用于监测晕厥的方法和装置,并且可用于使用电心电输出强迫(ECOF)备份。 本发明是用于记录人心脏内的电活动的可植入装置。 本发明的装置包括ECOF备份。 该装置包括用于操作该装置并提供必要的输出强制信号的电源。 提供连接到电源的监视或检测装置。 提供电极以将电源和检测装置电连接到患者的心脏。 还提供了一种存储装置,其连接到用于记录患者心脏的电活动和/或血压数据的检测装置。 在本发明的一个优选实施例中,存储器件包括用于从患者的心脏和长期存储缓冲器连续记录电气数据的短期环路缓冲器。 短期环路缓冲器可以是期望的大小,例如,能够在覆盖发生之前存储1-30分钟的数据。 在发生预定事件(例如,晕厥发生)时,将短期环路缓冲器中的数据传送到长期存储缓冲器。 还提供了一种输出控制电路,其连接到检​​测装置以及电源和电极。 在发生第二预定事件(例如心脏原纤维)的情况下,输出控制电路导致电心电输出强迫信号送到患者的心脏。