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房室结输入变化对房室传导的影响。

Effect of changes in inputs to atrioventricular node on AV conduction.

作者信息

Konishi T, Matsuyama E

出版信息

Jpn Circ J. 1976 Dec;40(12):1392-400. doi: 10.1253/jcj.40.1392.

Abstract

The effect of different inputs into the atrioventricular node (AVN) on orthograde impulse transmission was studied. In rabbit AVN preparations, two stimulating electrodes were placed posteriorly in the crista terminalis (P) and anteriorly in the interatrial septum (A). Electric stimuli were given individually (P,A) or simultaneously (P + A). Premature stimulation, when properly timed (e.g. 70-100 msec at the basic cycle length of 400 msec) achieved AV conduction only in P + A but not in either P or A. Action potentials (APs) in AVN in this situation revealed an incomplete depolarization in P and A, but became a fullsized AP in P + A. This might be explained by summation. The site of simmation appeared to be in the upper node, because APs distal to the middle node as well as APs in the His bundle behaved in an "all or none" fashion. Time intervals between the stimulus artifact and the His bundle AP upstroke (S-H) were shorter in P + A was enhanced with the decrease of the S-H difference between P and A suggested an accelerated conduction by summation in AVN. A hyperpolarizing current flowing through the suction electrodes which were attached in the vicinity of AVN caused different amounts of S-H shortening between P and A input. The above data support the view that AVN has a summating property engendered by the slow inactivation of ionic channel on which the upstroke of AP depends and by the limited number and sites of atrial inputs which might connect with some preferential paths within the AVN.

摘要

研究了不同输入到房室结(AVN)对顺行冲动传导的影响。在兔AVN标本中,两个刺激电极分别置于终嵴后部(P)和房间隔前部(A)。电刺激分别给予(P、A)或同时给予(P + A)。适时的过早刺激(例如在400毫秒的基本周期长度下为70 - 100毫秒)仅在P + A时实现房室传导,而在P或A单独刺激时均未实现。在此情况下,AVN中的动作电位(APs)显示P和A处为不完全去极化,但在P + A时变为全尺寸AP。这可能由总和效应来解释。总和部位似乎在上部结,因为中间结远端的APs以及希氏束中的APs表现为“全或无”方式。刺激伪迹与希氏束AP上升支之间的时间间隔(S - H)在P + A时更短,且随着P和A之间S - H差异的减小而增强,提示AVN中通过总和实现传导加速。流经附着在AVN附近的吸引电极的超极化电流在P和A输入之间引起不同程度的S - H缩短。上述数据支持这样的观点,即AVN具有由AP上升支所依赖的离子通道缓慢失活以及可能与AVN内某些优先路径相连的心房输入数量和部位有限所产生的总和特性。

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