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普通章鱼平衡囊重力感受器系统中的神经元和突触组织。

Neuronal and synaptic organization in the gravity receptor system of the statocyst of Octopus vulgaris.

作者信息

Colmers W F

出版信息

Cell Tissue Res. 1977 Dec 28;185(4):491-503. doi: 10.1007/BF00220653.

Abstract

The neuronal and synaptic organization of the sensory epithelium (macula) of the gravity receptor system of Octopus vulgaris was investigated by serial electron microscopic reconstruction. Three different types of afferent neurons, unipolar, bipolar, and multipolar, are described. Afferent synapses exist between the secondary sensory cells (hair cells) and the afferent neurons. Consequently, the neurons are first-order neurons. Two morphologically distinct types of afferent synapses could be identified: the most common type, present on every hair cell, has a finger-like postsynaptic process; the second type, which does not occur on every hair cell, has a flat or somewhat curved postsynaptic process. As a rule, the hair cells each form synapses with more than one afferent neuron. The neurons, in turn, form synapses with more than one hair cell. A complicated arrangement of efferent synapses was found at the level of both the hair cells and the neurons. The results are discussed with reference to their physiological consequences.

摘要

通过连续电子显微镜重建技术,研究了普通章鱼重力感受器系统感觉上皮(黄斑)的神经元和突触组织。描述了三种不同类型的传入神经元:单极、双极和多极。在次级感觉细胞(毛细胞)和传入神经元之间存在传入突触。因此,这些神经元是一级神经元。可以识别出两种形态不同的传入突触类型:最常见的类型存在于每个毛细胞上,具有指状突触后突起;第二种类型并非存在于每个毛细胞上,具有扁平或略弯曲的突触后突起。通常,每个毛细胞与不止一个传入神经元形成突触。反过来,这些神经元与不止一个毛细胞形成突触。在毛细胞和神经元水平均发现了复杂的传出突触排列。并参考其生理后果对结果进行了讨论。

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