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幼鳗下行脑神经元:脊髓投射模式和运动起始。

Descending brain neurons in larval lamprey: spinal projection patterns and initiation of locomotion.

机构信息

Division of Biological Sciences, University of Missouri, Columbia, MO 65211-6190, USA.

出版信息

Exp Neurol. 2010 Aug;224(2):527-41. doi: 10.1016/j.expneurol.2010.05.016. Epub 2010 May 25.

DOI:10.1016/j.expneurol.2010.05.016
PMID:20510243
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2920350/
Abstract

In larval lamprey, partial lesions were made in the rostral spinal cord to determine which spinal tracts are important for descending activation of locomotion and to identify descending brain neurons that project in these tracts. In whole animals and in vitro brain/spinal cord preparations, brain-initiated spinal locomotor activity was present when the lateral or intermediate spinal tracts were spared but usually was abolished when the medial tracts were spared. We previously showed that descending brain neurons are located in eleven cell groups, including reticulospinal (RS) neurons in the mesenecephalic reticular nucleus (MRN) as well as the anterior (ARRN), middle (MRRN), and posterior (PRRN) rhombencephalic reticular nuclei. Other descending brain neurons are located in the diencephalic (Di) as well as the anterolateral (ALV), dorsolateral (DLV), and posterolateral (PLV) vagal groups. In the present study, the Mauthner and auxillary Mauthner cells, most neurons in the Di, ALV, DLV, and PLV cell groups, and some neurons in the ARRN and PRRN had crossed descending axons. The majority of neurons projecting in medial spinal tracts included large identified Müller cells and neurons in the Di, MRN, ALV, and DLV. Axons of individual descending brain neurons usually did not switch spinal tracts, have branches in multiple tracts, or cross the midline within the rostral cord. Most neurons that projected in the lateral/intermediate spinal tracts were in the ARRN, MRRN, and PRRN. Thus, output neurons of the locomotor command system are distributed in several reticular nuclei, whose neurons project in relatively wide areas of the cord.

摘要

在幼体七鳃鳗中,对颅脊髓进行部分损伤,以确定哪些脊髓束对下行激活运动很重要,并确定投射到这些束中的下行脑神经元。在整体动物和脑/脊髓体外标本中,当保留外侧或中间脊髓束时,存在由脑引发的脊髓运动活动,但当保留内侧脊髓束时,通常会消除这种活动。我们之前曾表明,下行脑神经元位于十一个细胞群中,包括中脑网状核 (MRN) 中的网状脊髓 (RS) 神经元以及前 (ARRN)、中 (MRRN) 和后 (PRRN) 延髓网状核。其他下行脑神经元位于间脑 (Di) 以及前外侧 (ALV)、背外侧 (DLV) 和后外侧 (PLV) 迷走神经群中。在本研究中,Mauthner 和辅助 Mauthner 细胞、Di、ALV、DLV 和 PLV 细胞群中的大多数神经元以及 ARRN 和 PRRN 中的一些神经元具有交叉下行轴突。投射到内侧脊髓束中的大多数神经元包括大型已鉴定的 Müller 细胞和 Di、MRN、ALV 和 DLV 中的神经元。单个下行脑神经元的轴突通常不会切换脊髓束,在多个束中有分支,或者在颅脊髓的前中线交叉。投射到外侧/中间脊髓束中的大多数神经元位于 ARRN、MRRN 和 PRRN 中。因此,运动指令系统的输出神经元分布在几个网状核中,其神经元投射到脊髓的相对广泛区域。

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