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    • 74. 发明申请
    • SYSTEM FOR EVALUATING PERFORMANCE OF AN IMPLANTABLE MEDICAL DEVICE
    • 用于评估可植入医疗器械性能的系统
    • US20090043355A1
    • 2009-02-12
    • US11835812
    • 2007-08-08
    • Shelley M. CazaresHaresh G. SachanandaniBenjamin EttoriDan LiYanting Dong
    • Shelley M. CazaresHaresh G. SachanandaniBenjamin EttoriDan LiYanting Dong
    • A61N1/02
    • A61N1/37282A61B5/0031A61N1/3627A61N1/36585G06F19/00G06F19/3418G16H40/63
    • A system evaluates the performance of an implantable medical device, such as by using a remote external server and a user interface and stored historical physiological data of a population of congestive heart failure (CHF) patients. A processor is coupled to a patient data storage device to apply multiple algorithm variations against the same implantable physiological data from the patient to produce corresponding resulting CHF indicators. The user interface includes a display that is configured to display to a user information allowing comparison between the resulting CHF indicators from the multiple algorithm variations. The display also includes a population data selector to permit the user to select physiological data from a population that includes a different set of one or more patients or physiological data collected over a period of time from the patient. This permits optimization of an algorithm parameter or selection of a best performing algorithm.
    • 系统评估可植入医疗装置的性能,例如通过使用远程外部服务器和用户界面以及存储充血性心力衰竭(CHF)患者群体的历史生理数据。 处理器耦合到患者数据存储装置,以对来自患者的相同的可植入生理数据应用多个算法变化,以产生相应的所得CHF指示符。 用户界面包括被配置为向用户显示信息的显示器,允许根据多个算法变化比较所得到的CHF指示符。 显示器还包括种群数据选择器,以允许用户从包括不同组的一个或多个患者或在患者的一段时间内收集的生理数据的群体中选择生理数据。 这允许优化算法参数或选择最佳执行算法。
    • 75. 发明申请
    • PATIENT CHARACTERISTIC BASED ADAPTIVE ANTI-TACHY PACING PROGRAMMING
    • 基于特征特征的自适应防篡改编程
    • US20080262558A1
    • 2008-10-23
    • US11736286
    • 2007-04-17
    • Yanting DongQuan NiXuan WeiDan LiQian Zhong
    • Yanting DongQuan NiXuan WeiDan LiQian Zhong
    • A61N1/365
    • A61N1/3621
    • A system including at least one implantable sensor circuit adapted to produce an electrical sensor signal related to one or more physiologic cardiovascular events of a subject, a therapy circuit configured to provide anti-tachycardia pacing (ATP) therapy, and a controller. The controller includes a tachyarrhythmia detection circuit and an efficacy circuit. The tachyarrhythmia detection circuit is configured to detect a tachyarrhythmia episode in the subject using the electrical sensor signal, and to determine whether the tachyarrhythmia episode is of a type that is treatable with ATP. The efficacy circuit is configured to estimate an efficacy of a currently configured ATP therapy for the subject, and the controller is configured to alter a delivery regimen of the currently configured ATP therapy when the estimated ATP therapy efficacy is deemed insufficient. Other systems and methods are described.
    • 一种系统,包括适于产生与受试者的一个或多个生理性心血管事件相关的电传感器信号的至少一个可植入传感器电路,被配置为提供抗心动过速起搏(ATP)治疗的治疗电路和控制器。 控制器包括快速性心律失常检测电路和功效电路。 快速心律失常检测电路被配置为使用电传感器信号检测受试者的快速性心律失常发作,并且确定快速性心律失常发作是否是可用ATP治疗的类型。 功效电路被配置为估计当前配置的ATP治疗对受试者的功效,并且当估计的ATP治疗功效被认为不足时,控制器被配置为改变当前配置的ATP治疗的递送方案。 描述了其他系统和方法。
    • 79. 发明申请
    • PHRENIC NERVE STIMULATION DETECTION
    • 腓肠神经刺激检测
    • US20130261476A1
    • 2013-10-03
    • US13781177
    • 2013-02-28
    • Holly RockweilerSunipa SahaYanting Dong
    • Holly RockweilerSunipa SahaYanting Dong
    • A61B5/04
    • A61B5/04001A61B5/1107A61B5/4052A61B5/686A61B5/7217A61B5/7221A61B5/7246A61B2562/0219
    • In an example, a system includes a cardiac pulse generator configured to generate cardiac paces to pace the heart, a sensor configured to sense a physiological signal for use in detecting pace-induced phrenic nerve stimulation where the pace-induced phrenic nerve stimulation is phrenic nerve stimulation induced by electrical cardiac pace signals, and a phrenic nerve stimulation detector configured to analyze the sensed physiological signal to detect PS beats where the PS beats are cardiac paces that induce phrenic nerve stimulation. The detector may be configured to correlate signal data for sensed beat signals to a PS template to detect PS beats, or may be configured to analyze morphological features of sensed beat signals to detect PS beats, or may be configured to detect PS beats using a combination that both correlates signal data for sensed beat signals to a PS template and analyzes morphological features of sensed beat signals.
    • 在一个示例中,系统包括心脏脉冲发生器,其被配置为产生心脏步调以心跳,传感器被配置为感测生理信号,以用于检测步速诱发的膈神经刺激,其中步速诱发的膈神经刺激是膈神经 由心脏心电图信号引起的刺激,以及膈神经刺激检测器,其被配置成分析感测到的生理信号以检测PS节拍,其中PS节拍是诱导膈神经刺激的心脏步。 检测器可以被配置为将用于感测的拍频信号的信号数据与PS模板相关联以检测PS拍子,或者可以被配置为分析感测的拍子信号的形态特征以检测PS拍子,或者可以被配置为使用组合来检测PS拍子 两者将感测到的拍频信号的信号数据相关联到PS模板并且分析感测到的拍频信号的形态特征。