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房室传导系统远端的横向扩散与纵向分离

Transverse spread and longitudinal dissociation in the distal A-V conducting system.

作者信息

Myerburg R J, Nilsson K, Befeler B, Castellanos A, Gelband H

出版信息

J Clin Invest. 1973 Apr;52(4):885-95. doi: 10.1172/JCI107253.

Abstract

Isolated preparations of portions of the canine intraventricular conducting system were studied by microelectrode techniques in order to determine the nature of transverse spread and longitudinal dissociation of impulses in bundle branches and false tendons. Driving stimuli were delivered to an eccentric location on normal conducting tissue, and the arrival times of the propagating impulses were mapped along the length and width of the bundle branch, or along the false tendon ipsilateral and contralateral to the site of stimulation. The difference between the arrival times on the two sides was found to decrease progressively as a function of distance from the site of stimulation, the data suggesting that transverse spread of impulses involves propagation through transverse crossover points between the longitudinally oriented conducting elements. Impulses originating eccentrically became uniformly conducted across the transverse axis of bundle branches 8-15 mm from the level of the stimulating electrode, and of false tendons 2-4 mm from the stimulus site. True longitudinal dissociation, producing conduction maps different from those representing normal transverse propagation, was seen occasionally in tissue having longitudinally oriented strips of abnormal tissue. However, early premature stimulation commonly resulted in longitudinal temporal dissociation of the premature responses, possibly due to functional block in the transverse crossover fibers.

摘要

采用微电极技术研究了犬心室内传导系统部分的分离标本,以确定冲动在束支和假腱索中的横向传播和纵向分离的性质。将驱动刺激施加于正常传导组织上的偏心位置,并沿束支的长度和宽度,或沿刺激部位同侧和对侧的假腱索,绘制传播冲动的到达时间。发现两侧到达时间的差异随着距刺激部位距离的增加而逐渐减小,数据表明冲动的横向传播涉及通过纵向排列的传导元件之间的横向交叉点进行传播。在距刺激电极水平8 - 15毫米的束支横轴以及距刺激部位2 - 4毫米的假腱索处,偏心起源的冲动能够均匀地在横轴上传导。在具有纵向排列的异常组织条带的组织中,偶尔会出现真正的纵向分离,产生与代表正常横向传播的传导图不同的传导图。然而,早期过早刺激通常会导致过早反应的纵向时间分离,这可能是由于横向交叉纤维中的功能性阻滞所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc46/302336/6f51789ed085/jcinvest00180-0180-a.jpg

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