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雪貂中影响膈肌和颏舌肌活动的神经通路的跨神经元追踪

Transneuronal tracing of neural pathways influencing both diaphragm and genioglossal muscle activity in the ferret.

作者信息

Shintani T, Anker A R, Billig I, Card J P, Yates B J

机构信息

Univ. of Pittsburgh, School of Medicine, Dept. of Otolaryngology, Eye and Ear Institute, Rm. 106, Pittsburgh, PA 15213, USA.

出版信息

J Appl Physiol (1985). 2003 Oct;95(4):1453-9. doi: 10.1152/japplphysiol.00558.2003. Epub 2003 Jun 27.

Abstract

In prior experiments that employed the transneuronal transport of isogenic recombinants of pseudorabies virus (PRV), we demonstrated that neurons located ventrally in the medial medullary reticular formation (MRF) of the ferret provide collateralized projections to both diaphragm and abdominal muscle motoneurons as well as to multiple abdominal muscle motoneuron pools. The goal of the present study was to determine whether single MRF neurons also furnish inputs to diaphragm motoneurons and those innervating an airway muscle with inspiratory-related activity: the tongue protruder genioglossus. For this purpose, PRV recombinants expressing unique reporters (beta-galactosidase or enhanced green fluorescent protein) were injected into either the diaphragm or the genioglossal muscle. The virus injections produced transneuronal infection of overlapping populations of MRF neurons. A small proportion of these neurons (<15%) was infected by both PRV recombinants, which indicated that they provide collateralized inputs to genioglossal and diaphragm motoneurons. These findings show that, whereas some MRF neurons simultaneously influence the activity of upper airway and respiratory pump muscles, other cells in this brain stem region independently contribute to diaphragm and genioglossal muscle contraction regulation.

摘要

在先前利用伪狂犬病病毒(PRV)同基因重组体进行跨神经元运输的实验中,我们证明,雪貂延髓内侧网状结构(MRF)腹侧的神经元向膈肌和腹肌运动神经元以及多个腹肌运动神经元池提供侧支投射。本研究的目的是确定单个MRF神经元是否也向膈肌运动神经元以及支配具有吸气相关活动的气道肌肉(即舌突出肌颏舌肌)的神经元提供输入。为此,将表达独特报告基因(β-半乳糖苷酶或增强型绿色荧光蛋白)的PRV重组体注射到膈肌或颏舌肌中。病毒注射导致MRF神经元重叠群体的跨神经元感染。这些神经元中有一小部分(<15%)被两种PRV重组体感染,这表明它们向颏舌肌和膈肌运动神经元提供侧支输入。这些发现表明,虽然一些MRF神经元同时影响上呼吸道和呼吸泵肌肉的活动,但该脑干区域的其他细胞独立地参与膈肌和颏舌肌收缩的调节。

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