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SYSTEMS AND METHODS FOR OPTIMIZING MULTI-SITE LEFT VENTRICULAR PACING BASED ON INTERELECTRODE CONDUCTION DELAYS

机译:基于电极间导电延迟的多点左心室起搏优化系统和方法

摘要

Techniques are provided for use with an implantable cardiac stimulation device equipped for multi-site left ventricular (MSLV) pacing using a multi-pole LV lead. In one example, MSLV interelectrode conduction delays are determined among the electrodes of the multi-pole LV lead. MSLV interelectrode pacing delays are then set based on the MSLV interelectrode conduction delays for use in delivering MSLV pacing. To this end, various criteria are exploited for determining optimal values for the pacing delays based on the interelectrode conduction delays. MSLV pacing is then controlled using the specified MSLV interelectrode pacing delays. In some examples, the optimization procedure is performed by the implantable device itself. In other examples, the procedure is performed by an external programmer device. In such an embodiment, the external device determines optimal MSLV interelectrode pacing delays and then transmits programming commands to the implantable device to program the device to use the pacing delays.
机译:提供了与可植入的心脏刺激设备一起使用的技术,该设备配备了使用多极LV导线进行多部位左心室(MSLV)起搏的功能。在一示例中,在多极LV引线的电极之间确定MSLV电极间传导延迟。然后基于MSLV电极间导通延迟设置MSLV电极间起搏延迟,以用于传递MSLV起搏。为此,利用各种标准来基于电极间传导延迟来确定起搏延迟的最佳值。然后使用指定的MSLV电极间起搏延迟来控制MSLV起搏。在一些示例中,优化过程由可植入设备本身执行。在其他示例中,该过程由外部编程器设备执行。在这样的实施例中,外部设备确定最佳的MSLV电极间起搏延迟,然后将编程命令发送到可植入设备以对该设备进行编程以使用起搏延迟。

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