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七鳃鳗脊髓中突触传递的形态学关联

Morphological correlates of synaptic transmission in lamprey spinal cord.

作者信息

Christensen B N

出版信息

J Neurophysiol. 1976 Mar;39(2):197-212. doi: 10.1152/jn.1976.39.2.197.

Abstract

The dye Procion brown was used to identify in the light and electron microscope, synaptic contacts made between monosynaptically coupled neurons in the lamprey spinal cord whose synaptic interaction had been recorded. Synaptic contacts were made on different dendrites of the postsynaptic cell at different distances from the soma. Some of the contacts were made on dentritic spines and some on the smooth shaft of the dentrites. Serial sections through synaptic contacts made on dendritic processess of the postsynaptic cells were used for three-dimensional reconstruction of the synapses using computer graphics techniques. The computer reconstructions and detailed examination of the serial EM micrographs revealed the large proliferation of membrane involved in making these en passant synapses as well as the morphological changes due to stimulation of the presynaptic axon. These changes include depletion of synaptic vesicles and formation of complex vesicles and synaptic cisternae. Besides chemical synaptic contacts, four electrotonic contacts were located, confirming the mixed electrochemical synaptic response recorded from the postsynaptic cell. The mean quantum content was estimated and compared with the estimate of the available transmitter pool, assuming the quantal release hypothesis applies at these synapses. The total transmitter pool was estimated by counting all synaptic vesicles in all synaptic contacts. It was estimated that about 6% of the total transmitter pool is available for release at these synapses. This compares with less than 1% at the neuromuscular junction and about 20% at sympathetic synapses. These results support the hypothesis that synaptic vesicles may be recycled as described by Heuser and Reese (22) at the neuromuscular junction. Ongoing studies are investigating the effect on a variety of synaptic junctions to stimulation for different periods of time of presynaptic axons. The methods described in this study can also be used to test the models of synaptic interaction on dendritic trees described by Rall (39) and Jack and Redman (24).

摘要

使用普罗辛棕染料在光学显微镜和电子显微镜下识别七鳃鳗脊髓中经单突触耦合的神经元之间形成的突触连接,这些神经元的突触相互作用已被记录下来。突触连接形成于突触后细胞的不同树突上,距胞体的距离各不相同。一些连接形成于树突棘上,一些则形成于树突的光滑轴上。利用计算机图形技术,对突触后细胞树突过程上形成的突触连接进行连续切片,以对突触进行三维重建。计算机重建以及对连续电子显微镜照片的详细检查揭示了形成这些依傍型突触时膜的大量增殖,以及由于突触前轴突刺激导致的形态学变化。这些变化包括突触小泡的耗尽以及复合小泡和突触池的形成。除了化学突触连接外,还发现了四个电突触连接,证实了从突触后细胞记录到的混合电化学突触反应。假设量子释放假说是适用于这些突触的,估计了平均量子含量并与可用递质池的估计值进行了比较。通过计算所有突触连接中的所有突触小泡来估计总递质池。据估计,在这些突触中,约6%的总递质池可用于释放。相比之下,神经肌肉接头处不到1%,交感突触处约为20%。这些结果支持了这样的假说,即突触小泡可能如赫苏尔和里斯(22)在神经肌肉接头处所描述的那样进行循环利用。正在进行的研究正在调查突触前轴突不同时间刺激对各种突触连接的影响。本研究中描述的方法也可用于测试拉尔(39)以及杰克和雷德曼(24)所描述的树突树上突触相互作用的模型。

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