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猫运动皮层与同侧后肢运动神经元之间双交叉通路中的神经元中继。

Neuronal relays in double crossed pathways between feline motor cortex and ipsilateral hindlimb motoneurones.

作者信息

Jankowska E, Stecina K, Cabaj A, Pettersson L-G, Edgley S A

机构信息

Department of Physiology, Medicinaregatan 11, Box 432, 405 30 Göteborg, Sweden.

出版信息

J Physiol. 2006 Sep 1;575(Pt 2):527-41. doi: 10.1113/jphysiol.2006.112425. Epub 2006 Jun 1.

Abstract

Coupling between pyramidal tract (PT) neurones and ipsilateral hindlimb motoneurones was investigated by recording from commissural interneurones interposed between them. Near maximal stimulation of either the left or right PT induced short latency EPSPs in more than 80% of 20 commissural interneurones that were monosynaptically excited by reticulospinal tract fibres in the medial longitudinal fascicle (MLF). The EPSPs were evoked at latencies that were only 1-2 ms longer than those of EPSPs evoked from the MLF, compatible with a disynaptic coupling between PT fibres and these commissural interneurones. EPSPs evoked by PT stimulation were frequently associated with IPSPs which either followed or preceded the EPSPs. The latencies of the IPSPs (on average about 1 ms longer than latencies of the earliest EPSPs) indicated that they were mediated via single additional inhibitory interneurones. Records from a sample of nine commissural interneurones from a different population (with monosynaptic input from group I and/or II muscle afferents, and disynaptically excited from the MLF) suggest that actions of PT fibres on such interneurones are weaker because only four of them were excited by PT stimuli and at longer latencies. By demonstrating disynaptic coupling between PT neurones and commissural interneurones via reticulospinal fibres, the results provide a direct demonstration of trisynaptic coupling in the most direct pathways between PT neurones and ipsilateral motoneurones, and thereby strengthen the proposal that the double crossed pathways between PT neurones and ipsilateral motoneurones might be used to replace crossed actions of damaged PT neurones.

摘要

通过记录介于锥体束(PT)神经元和同侧后肢运动神经元之间的连合中间神经元的活动,研究了它们之间的耦合关系。对左侧或右侧PT进行接近最大强度的刺激,在20个连合中间神经元中的80%以上诱发了短潜伏期兴奋性突触后电位(EPSP),这些中间神经元由内侧纵束(MLF)中的网状脊髓束纤维单突触兴奋。PT诱发的EPSP潜伏期仅比MLF诱发的EPSP长1 - 2毫秒,这与PT纤维和这些连合中间神经元之间的双突触耦合相符。PT刺激诱发的EPSP常常伴有抑制性突触后电位(IPSP),这些IPSP在EPSP之后或之前出现。IPSP的潜伏期(平均比最早的EPSP潜伏期长约1毫秒)表明它们是通过单个额外的抑制性中间神经元介导的。对来自不同群体的9个连合中间神经元样本的记录(它们接受来自I组和/或II组肌肉传入纤维的单突触输入,并由MLF双突触兴奋)表明,PT纤维对这类中间神经元的作用较弱,因为其中只有4个被PT刺激兴奋,且潜伏期更长。通过证明PT神经元和连合中间神经元之间通过网状脊髓纤维的双突触耦合,这些结果直接证明了PT神经元和同侧运动神经元之间最直接通路中的三突触耦合,从而强化了这样一种观点,即PT神经元和同侧运动神经元之间的双交叉通路可能用于替代受损PT神经元的交叉作用。

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