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小脑脊髓神经元是否将信息传递给猫的红核中神经元的脊髓作用?

Do spinocerebellar neurones forward information on spinal actions of neurones in the feline red nucleus?

机构信息

Department Neuroscience and Physiology, Sahlgrenska Academy, University of Gothenburg, 405 30 Göteborg, Sweden.

出版信息

J Physiol. 2011 Dec 1;589(Pt 23):5727-39. doi: 10.1113/jphysiol.2011.213694. Epub 2011 Oct 10.

Abstract

We recently demonstrated that feline ventral spinocerebellar tract (VSCT) neurones monitor descending commands for voluntary movements initiated by pyramidal tract (PT) neurones as well as locomotor movements relayed by reticulospinal (RS) neurones. The aim of the present study was to examine whether VSCT neurones likewise monitor descending commands from the red nucleus (RN). Extracellular records from the spinal border (SB) subpopulation of VSCT neurons revealed that a third (31%) of SB neurones may be discharged by trains of stimuli applied in the RN. Moreover, when RN stimuli failed to discharge SB neurones they facilitated activation of some of these neurones by RS and/or PT neurones, while activation of other SB neurones was depressed. We propose that the facilitation and depression of actions of RS neurones by RN neurones might serve to reflect a higher or lower excitability of motoneurones and therefore a likely higher or lower efficacy of the RS descending commands, prompting the cerebellum to adjust the activation of reticulospinal neurones. Activation of SB neurones by RN stimuli alone would also allow monitoring and adjusting the RN descending commands. Intracellular records from SB neurones revealed both monosynaptic and disynaptic EPSPs and disynaptic IPSPs evoked by RN stimuli. The disynaptic actions remained following transection of axons of reticulospinal neurones within the medullary longitudinal fascicle (MLF) and were therefore taken to be relayed primarily by spinal neurones, in contrast to EPSPs and IPSPs evoked by PT stimuli found to be relayed by reticulospinal rather than spinal neurones.

摘要

我们最近的研究表明,猫的腹侧脊髓小脑束(VSCT)神经元监测来自锥体束(PT)神经元的随意运动启动的下行命令,以及中继网状脊髓(RS)神经元的运动。本研究的目的是检验 VSCT 神经元是否同样监测来自红核(RN)的下行命令。来自 VSCT 神经元脊髓边界(SB)亚群的细胞外记录显示,SB 神经元中有三分之一(31%)可能会被施加在 RN 中的刺激序列放电。此外,当 RN 刺激不能放电 SB 神经元时,它们会促进 RS 和/或 PT 神经元激活其中一些神经元,而其他 SB 神经元的激活则受到抑制。我们提出,RN 神经元对 RS 神经元的兴奋和抑制作用可能反映了运动神经元的兴奋性更高或更低,因此 RS 下行命令的效果可能更高或更低,促使小脑调整 RS 神经元的激活。仅由 RN 刺激激活 SB 神经元也可以允许监测和调整 RN 下行命令。来自 SB 神经元的细胞内记录显示,由 RN 刺激引起的单突触和双突触 EPSP 和 IPSP。在切断延髓纵束(MLF)内的 RS 神经元轴突后,双突触作用仍然存在,因此主要由脊髓神经元中继,而与由 PT 刺激引起的 EPSP 和 IPSP 不同,发现由 RS 神经元而不是脊髓神经元中继。

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