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龟视网膜外丛状层的突触组织:连续切片的电子显微镜研究

Synaptic organization of the outer plexiform layer of the turtle retina: an electron microscope study of serial sections.

作者信息

Kolb H, Jones J

出版信息

J Neurocytol. 1984 Aug;13(4):567-91. doi: 10.1007/BF01148080.

Abstract

Neural connections in the outer plexiform layer of the Pseudemys turtle retina have been studied by electron microscopy of serial ultrathin sections. While the distinguishing features of the photoreceptors have been described elsewhere, in this paper we describe the patterns of connectivity between identified second order neurons and identified photoreceptors or amongst second order neurons themselves. Basal telodendria emitted from double cone pedicles interconnect the two members of the double cone. Three morphologically different types of junction are made between bipolar cells and cone pedicles. H1 horizontal cells can be distinguished from H2 horizontal cells and synapses occur between them. Axon terminals of H1 cells are presynaptic to H1 cell bodies. Photoreceptors, H1 cell bodies and H1 axon terminals engage in electrical junctions while chemical synapses occur from both types of horizontal cell to bipolar cells. On rare occasions, bipolar cell dendrites were seen to be presynaptic to other bipolar cell dendrites. The significance of some of these contacts for the electrophysiological findings on the OPL of the turtle retina is discussed.

摘要

通过对连续超薄切片的电子显微镜观察,对伪龟视网膜外网状层的神经连接进行了研究。虽然光感受器的显著特征已在其他地方进行了描述,但在本文中,我们描述了已识别的二阶神经元与已识别的光感受器之间或二阶神经元自身之间的连接模式。从双锥柄发出的基底终末相互连接双锥的两个成员。双极细胞与锥柄之间形成了三种形态不同的连接类型。H1水平细胞可与H2水平细胞区分开来,并且它们之间存在突触。H1细胞的轴突终末位于H1细胞体的突触前。光感受器、H1细胞体和H1轴突终末参与电突触,而两种类型的水平细胞与双极细胞之间均存在化学突触。在极少数情况下,可见双极细胞树突位于其他双极细胞树突的突触前。讨论了其中一些接触对龟视网膜外网状层电生理结果的意义。

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