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蟑螂的风激活胸段中间神经元:II. 来自腹侧巨中间神经元的连接模式

Wind-activated thoracic interneurons of the cockroach: II. Patterns of connection from ventral giant interneurons.

作者信息

Ritzmann R E, Pollack A J

机构信息

Department of Biology, Case Western Reserve University, Cleveland, Ohio 44106.

出版信息

J Neurobiol. 1988 Oct;19(7):589-611. doi: 10.1002/neu.480190703.

DOI:10.1002/neu.480190703
PMID:3225557
Abstract

A number of thoracic interneurons (TIs) have been found to receive inputs from ventral giant interneurons (vGIs). Each of these cells responds to wind with short latency depolarizations. The previous paper described response properties of several TIs to wind stimuli, including those excited by vGIs. The data showed a correlation between the shape of the TI's wind fields and its morphology. The presence of ventral branches located near the midline of the ganglion predicts a strong response to wind on that side. These ventral median (VM) branches are in the proper location to permit overlap with processes from vGIs. Here we describe the patterns of connections between individual vGIs and 13 of the thoracic interneurons located in the meso- and metathoracic ganglia. A correlation was found between the presence of VM branches and excitation by vGIs. TIs were only excited by vGIs on the side(s) on which VM branches exist. However, presence of a VM branch does not imply that all vGIs on that side make connections with the TI. Summation was found between various vGIs that excited each individual thoracic interneuron. In unilateral thoracic interneurons, no sign of inhibition was found from vGIs on the sides opposite that which contained excitatory vGI axons. Neither was there any evidence of inhibition from dorsal giant interneurons. In addition preliminary evidence indicated that left-right homologues do not inhibit one another. Thus, the data suggest that directional wind fields are primarily the result of selective connection from specific vGIs.

摘要

已发现许多胸段中间神经元(TIs)接收来自腹侧巨中间神经元(vGIs)的输入。这些细胞中的每一个对风的反应都是潜伏期短的去极化。上一篇论文描述了几种TIs对风刺激的反应特性,包括那些由vGIs兴奋的TIs。数据显示TI风场的形状与其形态之间存在相关性。位于神经节中线附近的腹侧分支的存在预示着对该侧风的强烈反应。这些腹侧中线(VM)分支处于适当位置,以允许与vGIs的突起重叠。在这里,我们描述了单个vGIs与位于中胸和后胸神经节中的13个胸段中间神经元之间的连接模式。发现VM分支的存在与vGIs的兴奋之间存在相关性。TIs仅在存在VM分支的一侧被vGIs兴奋。然而,VM分支的存在并不意味着该侧的所有vGIs都与TI建立连接。发现兴奋每个单个胸段中间神经元各种vGIs之间存在总和。在单侧胸段中间神经元中,未发现来自与含有兴奋性vGI轴突一侧相对侧的vGIs的抑制迹象。也没有任何来自背侧巨中间神经元抑制的证据。此外,初步证据表明左右同源物之间不会相互抑制。因此,数据表明定向风场主要是特定vGIs选择性连接产生的结果。

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Wind-activated thoracic interneurons of the cockroach: II. Patterns of connection from ventral giant interneurons.蟑螂的风激活胸段中间神经元:II. 来自腹侧巨中间神经元的连接模式
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