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突触后几何结构与支配自主神经节细胞的突触前轴突数量之间的关系。

The relation of postsynaptic geometry to the number of presynaptic axons that innervate autonomic ganglion cells.

作者信息

Purves D, Hume R I

出版信息

J Neurosci. 1981 May;1(5):441-52. doi: 10.1523/JNEUROSCI.01-05-00441.1981.

Abstract

We have studied the shape of rabbit ciliary ganglion cells in relation to the number of axons that innervate each neuron. Adult ganglion cells receive synapses from one to seven different preganglionic axons. Some neurons lack dendrites altogether, whereas others have complex arborizations of up to eight primary dendrites. The neurons that receive all of their synaptic contacts from a single preganglionic axon usually have no dendrites; on the other hand, multiply innervated ganglion cells receive synapses from a number of different axons that increases in proportion to the number of primary dendrites that they possess. A possible explanation of these results is that individual ciliary ganglion cells comprise a number of separate spatial domains, each of which is largely constrained to receive innervation from a single preganglionic axon.

摘要

我们研究了兔睫状神经节细胞的形态与支配每个神经元的轴突数量之间的关系。成年神经节细胞接收来自一至七条不同节前轴突的突触。一些神经元完全没有树突,而另一些则有多达八条初级树突的复杂分支。那些从单个节前轴突接收所有突触联系的神经元通常没有树突;另一方面,多重支配的神经节细胞从许多不同的轴突接收突触,且这些轴突的数量与它们所拥有的初级树突数量成比例增加。这些结果的一个可能解释是,单个睫状神经节细胞由多个独立的空间区域组成,每个区域在很大程度上被限制为仅接收来自单个节前轴突的神经支配。

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