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鸽子迷走神经的电生理和电子显微镜分析,特别涉及心脏神经支配。

Electrophysiological and electron microscopic analysis of the vagus nerve of the pigeon, with particular reference to the cardiac innervation.

作者信息

Schwaber J S, Cohen D H

出版信息

Brain Res. 1978 May 19;147(1):65-78. doi: 10.1016/0006-8993(78)90772-2.

DOI:10.1016/0006-8993(78)90772-2
PMID:656917
Abstract

The compound action potential components and their associated fiber contingents were investigated in the pigeon vagus nerve with a view toward identifying the vagal cardioinhibitory fibers. In the cervical vagus, the compound action potential evoked by electrical stimulation included four major components that conducted at 17.0-30.0 (A-wave), 8.0-14.5 (B2-wave) and 0.8-2.0 (C-wave) m/sec. Cardiac slowing was not elicited until activation of the Bl-wave, and the bradycardic response was maximal when this component was maximized. Electron microscopic analysis of the cervical vagus revealed myelinated fibers 1.1-6.8 micron in diameter and unmyelinated fibers 0.3-1.4 micron in diameter. A contingent of myelinated fibers approximately 2-4 micron in diameter apparently generated the Bl-wave, while the prominent unmyelinated fiber contingent (37%) accounted for the C-wave. Analysis of various vagal branches indicated that approximatley 20% of the cervical vagal fibers exit the main trunk between cervical and mid-thoracic levels, but few of these are the larger myelinated fibers greater than 2 micron in diameter. The upper abdominal vagus consists largely of unmyelinated and small myelinated fibers, and consequently the vast majority of larger myelinated fibers found in the cervical vagus exit between mid-thoracic and upper abdominal levels, presumably in the cardiac branches. Direct examination of the cardiac branches confirmed this. Thus, it is concluded that the Bl-wave of the compound action potential is uniquely associated with cardiac slowing, that this component is generated by myelinated fibers ranging from 2 to 4 micron in diameter, and that almost all such fibers are destined for the cardiac branches of the vagus.

摘要

为了识别迷走神经的心抑制纤维,对鸽迷走神经的复合动作电位成分及其相关的纤维群进行了研究。在颈迷走神经中,电刺激诱发的复合动作电位包括四个主要成分,其传导速度分别为17.0 - 30.0(A波)、8.0 - 14.5(B2波)和0.8 - 2.0(C波)m/秒。直到B1波被激活才会引起心率减慢,当该成分达到最大值时,心动过缓反应也最大。对颈迷走神经的电子显微镜分析显示,有直径为1.1 - 6.8微米的有髓纤维和直径为0.3 - 1.4微米的无髓纤维。一群直径约为2 - 4微米的有髓纤维显然产生了B1波,而突出的无髓纤维群(37%)构成了C波。对各种迷走神经分支的分析表明,大约20%的颈迷走神经纤维在颈段和胸中段之间离开主干,但其中很少是直径大于2微米的较大有髓纤维。上腹部迷走神经主要由无髓纤维和小的有髓纤维组成,因此在颈迷走神经中发现的绝大多数较大有髓纤维在胸中段和上腹部之间离开,大概是在心脏分支中。对心脏分支的直接检查证实了这一点。因此,可以得出结论:复合动作电位的B1波与心率减慢有独特的关联,该成分由直径为2至4微米的有髓纤维产生,并且几乎所有这些纤维都通向迷走神经的心脏分支。

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