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细胞培养中哺乳动物中枢神经元之间的突触相互作用。II. 兴奋性突触后电位的量子分析。

Synaptic interactions between mammalian central neurons in cell culture. II. Quantal Analysis of EPSPs.

作者信息

Nelson P G, Marshall K C, Pun R Y, Christian C N, Sheriff W H, Macdonald R L, Neale E A

出版信息

J Neurophysiol. 1983 Jun;49(6):1442-58. doi: 10.1152/jn.1983.49.6.1442.

Abstract

The presynaptic release mechanism involved in excitatory synaptic connections between neurons in cell cultures of fetal mouse spinal cord were studied by statistical analysis of intracellularly recorded postsynaptic responses. Quantal parameters were determined for the EPSPs evoked in spinal cord (SC) neurons by stimulation of either other SC or dorsal root ganglion (DRG) neurons. Transmitter release was manipulated by varying the Ca2+ and Mg2+ content of the culture medium. The release process was represented better by binomial than by Poisson statistics. A method was derived for obtaining the probability of release and the number of release elements. The quantal content and the number of release elements were substantially higher for the SC-SC connection than for the DRG-SC connection. This was partially compensated for by a larger quantal amplitude for the DRG-SC connection. There was some indication that the probability of release was higher for the SC-SC connection. The relationship between transmitter output and effective external Ca2+ ion concentration was approximately linear.

摘要

通过对细胞内记录的突触后反应进行统计分析,研究了胎鼠脊髓细胞培养物中神经元之间兴奋性突触连接所涉及的突触前释放机制。通过刺激其他脊髓(SC)神经元或背根神经节(DRG)神经元,测定脊髓(SC)神经元中诱发的兴奋性突触后电位(EPSP)的量子参数。通过改变培养基中Ca2+和Mg2+的含量来操纵递质释放。与泊松统计相比,二项式统计能更好地描述释放过程。推导了一种获得释放概率和释放元件数量的方法。SC-SC连接的量子含量和释放元件数量显著高于DRG-SC连接。DRG-SC连接较大的量子幅度对此起到了部分补偿作用。有迹象表明,SC-SC连接的释放概率更高。递质输出与有效外部Ca2+离子浓度之间的关系近似呈线性。

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