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P-wave locking in the postventricular atrial refractory period of cardiac resynchronization devices

机译:心脏再同步装置心室后不应期的P波锁定

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摘要

Electrical desynchronization in cardiac resynchronization therapy (CRT) occurs when sinus P waves are continually locked in the postventricular atrial refractory period (PVARP). This process is characterized by sequences of a P wave as an atrial event in the PVARP followed by a conducted and sensed ventricular event. Such sequences are more common in patients with a prolonged PR interval, often initiated by premature ventricular complexes (PVC) and terminated by PVCs or slowing of the sinus rate. Specific algorithms automatically identify a recurring pattern of P wave locking in the PVARP, whereupon they shorten the PVARP temporarily until atrial tracking is restored with the programmed sensed AV interval. The Biotronik family of Lumax CRT devices use an AV control window which is not an algorithm that “unlocks” P waves trapped in the PVARP. Rather, it prevents P waves from becoming trapped in the PVARP. A ventricular sensed event occurring within the AV control interval does not start a PVARP so that P wave locking cannot occur when the AV conduction time is shorter than the AV control interval.
机译:当窦性P波在心房后不应期(PVARP)持续锁定时,心脏再同步治疗(CRT)中就会发生电去同步。该过程的特征是在PVARP中作为心房事件的P波序列,然后是传导性和感测性心室事件。此类序列在PR间隔延长的患者中更为常见,通常由过早的心室复合物(PVC)引发,并由PVC终止或鼻窦窦速度减慢而终止。特定算法会自动识别PVARP中P波锁定的重复模式,随后它们会暂时缩短PVARP,直到以编程的检测到的AV间隔恢复心房跟踪。 Lumax CRT设备的Biotronik系列使用AV控制窗口,该窗口不是“解锁” PVARP中捕获的P波的算法。相反,它可以防止P波陷入PVARP中。在AV控制间隔内发生的心室感测事件不会启动PVARP,因此当AV传导时间短于AV控制间隔时,P波锁定不会发生。

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