Suppr超能文献

蜜蜂的第一视觉神经节。IV. 感受器细胞轴突和一级中间神经元的突触精细结构及连接模式。

The first optic ganglion of the bee. IV. Synaptic fine structure and connectivity patterns of receptor cell axons and first order interneurones.

作者信息

Ribi W A

出版信息

Cell Tissue Res. 1981;215(3):443-64. doi: 10.1007/BF00233522.

Abstract

The synaptic relationships between and within receptor-cell axons (RCAs), first-order interneurones (L-fibres) and accessory fibres (acc) in the first optic ganglion (the lamina) of the worker bee were studied in serial sections with Golgi-EM and routine transmission electron microscopy. The ommatidium contains nine retinular (photoreceptor) cells all of which project as RCAs to a single optical cartridge in the lamina. Six of the RCAs end as short visual fibres (svf) in the lamina, while the remaining three, the so-called long visual fibres (lvf), pass the lamina and end in the second optic ganglion, the medulla. In addition to the RCAs and an unknown number of accessory fibres, the cartridge also contains four L-fibres (L1--4). The spatial arrangement of the RCAs and L-fibres within a cartridge is constant throughout the depth of the lamina. Serial sections reveal a great number of chemical synapses interconnecting RCAs, L-and ace fibres. Double T-shaped presynaptic dense projections are surrounded and in close association with either spherical or flattened synaptic vesicles. The finding of gap junctions between and within identified RCAs and L-fibres suggest that these axons may be electronically coupled. A model for information processing in the lamina of the bee is suggested from observations of synaptic connectivity between and within fibres of one cartridge.

摘要

利用高尔基电子显微镜(Golgi-EM)和常规透射电子显微镜,在连续切片中研究了工蜂第一视觉神经节(即视神经叶)中受体细胞轴突(RCA)、一级中间神经元(L纤维)和辅助纤维(acc)之间以及它们内部的突触关系。小眼包含九个视杆细胞(光感受器),所有这些细胞都作为RCA投射到视神经叶中的单个光学小柱。其中六个RCA在视神经叶中以短视纤维(svf)结束,而其余三个,即所谓的长视纤维(lvf),穿过视神经叶并在第二视觉神经节即髓质中结束。除了RCA和数量未知的辅助纤维外,小柱还包含四个L纤维(L1 - 4)。在整个视神经叶深度内,小柱内RCA和L纤维的空间排列是恒定的。连续切片显示大量化学突触将RCA、L纤维和辅助纤维相互连接。双T形突触前致密突起被球形或扁平突触小泡包围并紧密相连。在已识别的RCA和L纤维之间及内部发现间隙连接,这表明这些轴突可能是电耦合的。根据对一个小柱内纤维之间及内部突触连接的观察,提出了蜜蜂视神经叶中信息处理的模型。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验