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    • 4. 发明申请
    • Multi-site PESP with fusion pacing
    • 多站点PESP与融合起搏
    • US20060247698A1
    • 2006-11-02
    • US11116877
    • 2005-04-28
    • John BurnesGlenn ZillmerD. Deno
    • John BurnesGlenn ZillmerD. Deno
    • A61N1/362
    • A61N1/3627
    • In some embodiments, a method of operating an implantable cardiac pacing device to provide coupled ventricular pacing may include one or more of the following steps: (a) sensing ventricular events at a first ventricular site and generating a ventricular sense event signal in response thereto, (b) providing coupled pacing pulses simultaneously at the first ventricular site and at a second ventricular site at a ventricular extra stimulus interval (VESI) timed from immediately preceding ventricular sense event signals sufficient to effect post-extra-systolic potentiation (PESP) of the ventricular sites, and (c) providing pacing pulse at the second ventricular site after sensing ventricular events at the first ventricular site.
    • 在一些实施例中,操作可植入心脏起搏装置以提供联合心室起搏的方法可以包括以下步骤中的一个或多个:(a)感测第一心室位点处的心室事件并响应于此产生心室感测事件信号, (b)在心室额外刺激间隔(VESI)的第一心室部位和第二心室部位处同时提供耦合的起搏脉冲,其从紧接在前的心室感测事件信号定时,足以影响术后收缩期增强(PESP) 心室部位,以及(c)在感测第一心室部位的心室事件后在第二心室部位提供起搏脉冲。
    • 6. 发明申请
    • Extra-systolic stimulation therapy delivery and sensing via different electrode sets
    • 超声心动图刺激治疗通过不同电极组传递和感测
    • US20050075674A1
    • 2005-04-07
    • US10680493
    • 2003-10-07
    • Glenn ZillmerD. DenoNirav Sheth
    • Glenn ZillmerD. DenoNirav Sheth
    • A61N1/362A61N1/365
    • A61N1/365A61N1/3622
    • Techniques for delivering ESS to a heart of a patient are disclosed. An implantable medical device delivers ESS stimulation, and in some embodiments pacing stimulation, to a chamber of the heart via a first electrode set. The implantable medical device senses electrical activity within the chamber via a second set of electrodes. In some embodiments, the implantable medical device is able to apply a shorter blanking interval than is typical in the pacing art to a sense amplifier coupled to the second set of electrodes, allowing the implantable medical device to better detect arrhythmias and evoked responses. A variety of electrodes may be used in conjunction with the present invention; including without limitation, tip, ring, coil, can-based, endocardial, epicardial, pericardial, cardiac vein-based, subcutaneous, and/or surface electrodes.
    • 公开了将ESS递送到患者心脏的技术。 可植入医疗装置通过第一电极组将ESS刺激,并且在一些实施例中将起搏刺激提供给心脏室。 可植入医疗装置经由第二组电极感测室内的电活动。 在一些实施例中,可植入医疗装置能够将比起搏技术中典型的更短的消隐间隔应用于耦合到第二组电极的感测放大器,从而允许可植入医疗装置更好地检测心律失常和诱发反应。 可以结合本发明使用各种电极; 包括但不限于尖端,环形,线圈,罐基,心内膜,心外膜,心包,心静脉,皮下和/或表面电极。
    • 10. 发明申请
    • IMPLANTABLE SENSORS HAVING HIGH IMPEDANCE COUPLINGS PROVIDING CURRENT PATHWAYS FOR IMPROVED FAULT TOLERANCE
    • 具有提供电流路径的高阻抗耦合的可插入传感器,用于改善故障容限
    • US20070265666A1
    • 2007-11-15
    • US11380529
    • 2006-04-27
    • Jonathan RobertsW. WoldGlenn Zillmer
    • Jonathan RobertsW. WoldGlenn Zillmer
    • A61N1/00
    • A61N1/056A61N1/0563A61N1/36564A61N1/37A61N1/3962A61N2001/083
    • One aspect of the invention involves a possible fault scenario due to a breach of an inner layer of insulation of an elongated medical electrical lead which couples an active electrical circuit for an active implantable medical device (AIMD)—typically within a conductive AIMD housing—to a sensor disposed within a sensor capsule. In one form, the AIMD provides physiological sensing of a patient parameter, such as endocardial pressure via a chronically implanted absolute pressure sensor. In such a physiological monitor, a high impedance connection is established between the active electrical circuit and the conductive AIMD housing. In a therapy delivering AIMD, a high impedance connection is established between therapy electrodes and the active electrical circuit. As a result, any errant electrical current(s) will be shunted directly to the reference-ground of the sensor-bearing lead in lieu of traveling through a patient's tissue or conductive body fluid.
    • 本发明的一个方面涉及可能的故障情况,这是由于细长的医疗电线的绝缘层的内部破裂,其将用于有源可植入医疗装置(AIMD)的有源电路(典型地在导电AIMD外壳内)耦合到 设置在传感器胶囊内的传感器。 在一种形式中,AIMD通过长期植入的绝对压力传感器提供患者参数的生理感测,例如心内膜压。 在这样的生理监视器中,在有源电路和导电AIMD外壳之间建立高阻抗连接。 在提供AIMD的治疗中,在治疗电极和有源电路之间建立了高阻抗连接。 结果,任何错误的电流将被直接分流到传感器承载引线的参考地,以代替穿过病人的组织或导电体液。