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Vestibular-mediated synaptic inputs and pathways to sympathetic preganglionic neurons in the neonatal mouse.前庭介导的突触输入和途径到新生小鼠交感节前神经元。
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Organization of functional synaptic connections between medullary reticulospinal neurons and lumbar descending commissural interneurons in the neonatal mouse.新生小鼠延髓网状脊髓神经元和腰骶下行连合中间神经元之间功能性突触连接的组织。
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新生小鼠中脑桥网状脊髓输入至控制轴肌和肢体肌肉的运动神经元的组织方式。

Organization of pontine reticulospinal inputs to motoneurons controlling axial and limb muscles in the neonatal mouse.

作者信息

Sivertsen Magne S, Glover Joel C, Perreault Marie-Claude

机构信息

Laboratory of Neural Development and Optical Recording (NDEVOR), Department of Physiology, Institute of Basic Medical Sciences, Faculty of Medicine, University of Oslo, Oslo, Norway; and.

Department of Physiology, Emory University School of Medicine, Atlanta, Georgia

出版信息

J Neurophysiol. 2014 Oct 1;112(7):1628-43. doi: 10.1152/jn.00820.2013. Epub 2014 Jun 18.

DOI:10.1152/jn.00820.2013
PMID:24944221
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4631545/
Abstract

Using optical recording of synaptically mediated calcium transients and selective spinal lesions, we investigated the pattern of activation of spinal motoneurons (MNs) by the pontine reticulospinal projection in isolated brain stem-spinal cord preparations from the neonatal mouse. Stimulation sites throughout the region where the pontine reticulospinal neurons reside reliably activated MNs at cervical, thoracic, and lumbar levels. Activation was similar in MNs ipsi- and contralateral to the stimulation site, similar in medial and lateral motor columns that contain trunk and limb MNs, respectively, and similar in the L2 and L5 segments that predominantly contain flexor and extensor MNs, respectively. In nonlesioned preparations, responses in both ipsi- and contralateral MNs followed individual stimuli in stimulus trains nearly one-to-one (with few failures). After unilateral hemisection at C1 on the same side as the stimulation, responses had substantially smaller magnitudes and longer latencies and no longer followed individual stimuli. After unilateral hemisection at C1 on the side opposite to the stimulation, the responses were also smaller, but their latencies were not affected. Thus we distinguish two pontine reticulospinal pathways to spinal MNs, one uncrossed and the other crossed, of which the uncrossed pathway transmits more faithfully and appears to be more direct.

摘要

利用突触介导的钙瞬变的光学记录和选择性脊髓损伤,我们在新生小鼠的离体脑干-脊髓标本中研究了脑桥网状脊髓投射对脊髓运动神经元(MNs)的激活模式。在脑桥网状脊髓神经元所在区域的各个刺激位点,均能可靠地激活颈、胸和腰段的运动神经元。刺激位点同侧和对侧的运动神经元激活情况相似,分别包含躯干和肢体运动神经元的内侧和外侧运动柱中的激活情况相似,主要分别包含屈肌和伸肌运动神经元的L2和L5节段中的激活情况也相似。在未损伤的标本中,同侧和对侧运动神经元对刺激序列中单个刺激的反应几乎是一对一的(很少有失败情况)。在与刺激同侧的C1水平进行单侧半横切后,反应的幅度显著减小,潜伏期延长,不再跟随单个刺激。在与刺激相对侧的C1水平进行单侧半横切后,反应也较小,但潜伏期不受影响。因此,我们区分出两条通向脊髓运动神经元的脑桥网状脊髓通路,一条是不交叉的,另一条是交叉的,其中不交叉的通路传递更可靠,似乎更直接。