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具有相似传导速度的轴突对单个豚鼠颈上神经节细胞的神经支配。

Innervation of individual guinea-pig superior cervical ganglion cells by axons with similar conduction velocities.

作者信息

Wigston D J

出版信息

J Physiol. 1983 Jan;334:179-87. doi: 10.1113/jphysiol.1983.sp014488.

Abstract
  1. Individual neurones in the guinea-pig superior cervical ganglion were studied to determine whether they are innervated by preganglionic axons with similar conduction velocities. 2. Latencies of synaptic responses recorded intracellularly in ganglion cells after stimulation of individual ventral roots varied from 28 to 430 msec. Most of this variability arose from differences in preganglionic conduction velocity. 3. The twelve different axons that on average innervate each ganglion cell tended to have broadly similar conduction velocities; a neurone receiving a rapidly conducting input was usually contacted by other rapidly conducting axons, and vice versa. 4. Preferential innervation of individual neurones by axons with similar conduction velocities was evident even when only axons arising from the same spinal segment were compared. Thus preferential innervation by axons of similar conduction velocity cannot be simply a manifestation of segmental preferences. 5. These results suggest that the mature pattern of innervation in mammalian sympathetic ganglia reflects the functional as well as the positional qualities of the synaptic partners.
摘要
  1. 对豚鼠颈上神经节中的单个神经元进行了研究,以确定它们是否由具有相似传导速度的节前轴突支配。2. 刺激单个腹根后,在神经节细胞内记录到的突触反应潜伏期从28毫秒到430毫秒不等。这种变异性大多源于节前传导速度的差异。3. 平均支配每个神经节细胞的12条不同轴突往往具有大致相似的传导速度;接受快速传导输入的神经元通常也会被其他快速传导的轴突所接触,反之亦然。4. 即使仅比较来自同一脊髓节段的轴突,具有相似传导速度的轴突对单个神经元的优先支配也很明显。因此,相似传导速度轴突的优先支配不能简单地表现为节段偏好。5. 这些结果表明,哺乳动物交感神经节中成熟的支配模式反映了突触伙伴的功能以及位置特性。

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1
The action potential of the superior cervical ganglion.颈上神经节的动作电位。
J Physiol. 1935 Oct 26;85(2):179-206.2. doi: 10.1113/jphysiol.1935.sp003313.
6
The organization of lumbar preganglionic neurons.腰段节前神经元的组织
J Auton Nerv Syst. 1981 Apr;3(2-4):177-91. doi: 10.1016/0165-1838(81)90062-x.
9
Functional differentiation in sB and sC neurons of toad sympathetic ganglia.
Jpn J Physiol. 1970 Jun 15;20(3):281-95. doi: 10.2170/jjphysiol.20.281.

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