Chirife R
Division of Electrophysiology and Pacemakers, Pombo Foundation, National Academy of Medicine, Buenos Aires, Argentina.
Pacing Clin Electrophysiol. 1995 Jan;18(1 Pt 1):49-56. doi: 10.1111/j.1540-8159.1995.tb02475.x.
Electrical pacing of the right heart is known to cause delays in the depolarization of left heart chambers, leading to abnormal left heart AV sequence. Interatrial conduction time, defined as the time from the right atrial pacing pulse or intrinsic P to the onset of left atrial P wave, and P wave sensing delay cause a shorter left heart AV interval during atrial pacing-ventricular sensing and atrial sense-ventricular pace. Interventricular conduction time (the time from the right ventricular pacing pulse to the onset of left ventricular depolarization), lengthens left heart AV interval during atrial sensing-ventricular pacing. These delays may add up or partly cancel out, depending on pacing mode. Thus, an algorithm for DDD pacemakers to optimize left heart AV interval by compensating for the above delays is proposed. This algorithm takes into account pacing and sensing delays to deliver a certain AV sequence to the right heart, aimed at producing a physiological left heart AV interval. The optimization of left heart AV interval is achieved by automatically changing right heart AV interval and pacing mode in accordance with known interatrial and interventricular conduction delays, and P wave sense offset.
已知右心的电起搏会导致左心腔去极化延迟,从而导致异常的左心房室顺序。心房传导时间定义为从右心房起搏脉冲或固有P波到左心房P波起始的时间,P波感知延迟会导致心房起搏-心室感知和心房感知-心室起搏期间左心房室间期缩短。心室间传导时间(从右心室起搏脉冲到左心室去极化起始的时间),会在心房感知-心室起搏期间延长左心房室间期。这些延迟可能会累加或部分抵消,具体取决于起搏模式。因此,提出了一种用于DDD起搏器的算法,通过补偿上述延迟来优化左心房室间期。该算法考虑了起搏和感知延迟,以便向右心传递特定的房室顺序,旨在产生生理性的左心房室间期。通过根据已知的心房间和心室间传导延迟以及P波感知偏移自动改变右心房室间期和起搏模式,实现左心房室间期的优化。