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    • 3. 发明申请
    • System And Method For Determining The Origin Of A Sensed Beat
    • 确定感觉节拍的起源的系统和方法
    • US20080281369A1
    • 2008-11-13
    • US11745667
    • 2007-05-08
    • Bruce KenKnightSteven D. Girouard
    • Bruce KenKnightSteven D. Girouard
    • A61N1/36
    • A61B5/04525A61B5/042A61B5/0456A61B5/7239A61N1/3702
    • A method for monitoring a biological cardiac pacemaker is provided. The method may include stimulating a heart at a region selected for implantation of a biological pacemaker and sensing at least one electrical signal indicative of a cardiac depolarization originating in the region selected for implantation of the biological pacemaker. The method may further include sensing at least one subsequent electrical signal produced by the heart and determining if the subsequent electrical signal originated in the region selected for the biological pacemaker or another region of the heart. In an alternative embodiment, the method may include determining a template time difference between two points on cardiac complexes sensed in two or more different cardiac locations during normal sinus rhythm. The method may further include determining a time difference between two points on a subsequent cardiac complex sensed in two or more different cardiac locations. The time differences may be compared to determine if the subsequently-sensed cardiac complex originates in a left ventricular biological pacemaker site or in another cardiac site.
    • 提供了一种用于监测生物心脏起搏器的方法。 该方法可以包括在选择用于植入生物起搏器的区域处刺激心脏,并感测至少一个电信号,其指示源于选择用于植入生物起搏器的区域的心脏去极化。 该方法还可以包括感测由心脏产生的至少一个随后的电信号,并确定后续的电信号是否起源于为生物起搏器或心脏另一区域选择的区域。 在替代实施例中,该方法可以包括确定在正常窦性心律期间在两个或更多个不同心脏位置中感测到的心脏复合体上的两个点之间的模板时间差。 该方法还可以包括确定在两个或更多个不同心脏位置中感测到的随后的心脏复合体上的两个点之间的时间差。 可以比较时间差以确定随后感测的心脏复合物是否起源于左心室生物起搏器位点或另一心脏位点。
    • 10. 发明申请
    • APPARATUS FOR PROVIDING ON-PATIENT COMMUNICATION
    • 用于提供患者通信的装置
    • US20090069867A1
    • 2009-03-12
    • US12240706
    • 2008-09-29
    • Bruce KenKnightGust H. Bardy
    • Bruce KenKnightGust H. Bardy
    • A61N1/08
    • G06Q50/24A61B5/0031G06F19/3418G16H10/60G16H40/63G16H50/30Y10S128/903Y10S128/904
    • An apparatus for providing on-patient communication is described. An implantable medical device including a sensor of physiometry is implanted in a patient. A communication module is remotely interconnected to an interrogation device external to the patient's body and the physiometry is exchanged with the interrogation device. Spoken communication from the patient is received by an implantable microphone including a communication module and is relayed to the interrogation device. voice prompts received from the interrogation device are played by An implantable speaker including a communication module. Pre-defined uniquely identifying patient characteristics are further included with at least one of the implantable medical device, implantable microphone, and implantable speaker and the characteristics are presented on demand by the communication module of the implantable medical device, implantable microphone, and implantable speaker.
    • 描述了一种用于提供门诊通信的装置。 将包括物理测量传感器的可植入医疗装置植入患者体内。 通信模块远程互连到病人身体外部的询问装置,并且与询问装置交换物理学。 来自患者的口语通信由包括通信模块的可植入麦克风接收并被中继到询问设备。 由询问装置接收到的语音提示由包括通信模块的可植入扬声器播放。 可植入医疗装置,可植入麦克风和可植入扬声器中的至少一个进一步包括预定义的唯一识别患者特征,并且根据需要由可植入医疗装置,可植入麦克风和可植入扬声器的通信模块呈现特征。