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Interactions between spinal interneurons and ventral spinocerebellar tract neurons

机译:脊髓神经元与腹脊髓小脑束神经元之间的相互作用

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摘要

Recent evidence indicates that ventral spinocerebellar tract (VSCT) neurons do not merely receive information provided by spinal interneurons but may also modulate the activity of these interneurons. Hence, interactions between them may be mutual. However, while it is well established that spinal interneurons may provide both excitatory and inhibitory input to ascending tract neurons, the functional consequences of the almost exclusively inhibitory input from premotor interneurons to subpopulations of VSCT neurons were only recently addressed. These are discussed in the first part of this review. The second part of the review summarizes evidence that some VSCT neurons may operate both as projection neurons and as spinal interneurons and play a role in spinal circuitry. It outlines the evidence that initial axon collaterals of VSCT neurons target premotor inhibitory interneurons in disynaptic reflex pathways from tendon organs and muscle spindles (group Ia, Ib and/or II muscle afferents) to motoneurons. By activating these interneurons VSCT neurons may evoke disynaptic IPSPs in motoneurons and thus facilitate inhibitory actions of contralateral muscle afferents on motoneurons. In this way they may contribute to the coordination between neuronal networks on both sides of the spinal cord in advance of modulatory actions evoked via the cerebellar control systems.
机译:最近的证据表明,腹侧脊髓小脑束(VSCT)神经元不仅会收到脊柱中神经元提供的信息,而且还会调节这些中神经元的活性。因此,它们之间的相互作用可能是相互的。然而,尽管已经充分认识到脊髓中神经元可以为上升道神经元提供兴奋性和抑制性输入,但直到最近才解决了从运动前神经元到VSCT神经元亚群几乎完全抑制性输入的功能后果。这些将在本审查的第一部分中讨论。综述的第二部分总结了一些VSCT神经元既可以作为投射神经元又可以作为脊髓中神经元并在脊髓回路中起作用的证据。它概述了以下证据:VSCT神经元的初始轴突侧支靶向从肌腱器官和肌肉纺锤体(Ia,Ib和/或II型肌肉传入肌群)到运动神经元的突触反射通路中的运动前抑制性中间神经元。通过激活这些中间神经元,VSCT神经元可以在运动神经元中引起突触性IPSP,从而促进对侧肌肉传入神经对运动神经元的抑制作用。这样,在通过小脑控制系统引起的调节作用之前,它们可能有助于脊髓两侧神经元网络之间的协调。

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