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在蝴蝶卡里戈·贝尔特劳伊里格(鳞翅目)的心脏和翼肌中具有神经血窦和突触轴突的多核神经元。

Multinucleate neurons with neurohaemal and synapsing axons at the heart and alary muscles of the butterfly Caligo beltrao Illiger (Lepidoptera).

作者信息

Wasserthal W, Wasserthal L T

出版信息

Cell Tissue Res. 1980;212(3):351-62. doi: 10.1007/BF00236502.

Abstract

The segmental heart nerves of Caligo beltrao Illiger (Brassolidae) were examined by transmission and scanning electron microscopy. Heart and alary muscles are innervated by branching processes of single multinucleate neurons (MNNs). There is one MNN situated at each segmental fan-shaped group of alary muscles. The main nerve of the MNN consists of a bundle of processes. This nerve extends centripetally toward the CNS and corresponds to the dorsal portion of the transverse nerve. However, neither axo-somatic nor axo-axonic synapses were found, the presence of which might suggest that this nerve contains axons of different neuronal origin. The synaptic contacts of the MNN with axons originating from the CNS are therefore assumed to be established beyond the spiracular region. In addition to the neuro-muscular junctions of the smaller centrifugal axon branches there are neurohaemal release sites along the entire length of all MNN axon bundles. Axon terminals are packed with either dense-cored or multigranular vesicles. Both morphological types of vesicles are, however, found side by side in the large axons and in the perikaryon, often at the same golgi element. These morphological findings may support the concept that more than one transmitter is produced in a single neuron. Questions that arise in reference to dual or polyfunctional neurons and to the control of cardiac activity are discussed.

摘要

对伊氏裳凤蝶(裳凤蝶科)的节段性心脏神经进行了透射电子显微镜和扫描电子显微镜检查。心脏和翼肌由单个多核神经元(MNNs)的分支过程支配。在每个节段性扇形翼肌群处都有一个MNN。MNN的主要神经由一束突起组成。这条神经向中枢神经系统(CNS)呈向心性延伸,对应于横神经的背侧部分。然而,未发现轴体突触或轴-轴突触,其存在可能表明这条神经包含不同神经元起源的轴突。因此,推测MNN与源自CNS的轴突的突触接触是在气门区域之外建立的。除了较小的离心轴突分支的神经肌肉接头外,在所有MNN轴突束的全长上都有神经血分泌位点。轴突终末充满了致密核心或多颗粒小泡。然而,在大轴突和核周中,这两种形态类型的小泡并排存在,常常在同一个高尔基体元件处。这些形态学发现可能支持单个神经元产生不止一种递质的概念。讨论了与双功能或多功能神经元以及心脏活动控制相关的问题。

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