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小鼠屈肌神经刺激的交叉反射反应。

Crossed reflex responses to flexor nerve stimulation in mice.

机构信息

Atlantic Mobility Action Project, Department of Medical Neuroscience, Brain Repair Center, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

J Neurophysiol. 2022 Feb 1;127(2):493-503. doi: 10.1152/jn.00385.2021. Epub 2022 Jan 5.

Abstract

Motor responses in one leg to sensory stimulation of the contralateral leg have been named "crossed reflexes" and are extensively investigated in cats and humans. Despite this effort, a circuit-level understanding of the crossed reflexes has remained missing. In mice, advances in molecular genetics enabled insights into the "commissural spinal circuitry" that ensures coordinated leg movements during locomotion. Despite some common features between the commissural spinal circuitry and the circuit for the crossed reflexes, the degree to which they overlap has remained obscure. Here, we describe excitatory crossed reflex responses elicited by electrically stimulating the common peroneal nerve that mainly innervates ankle flexor muscles and the skin on anterolateral aspect of the hind leg. Stimulation of the peroneal nerve with low current intensity evoked low-amplitude motor responses in the contralateral flexor and extensor muscles. At higher current strengths, stimulation of the same nerve evoked stronger and more synchronous responses in the same contralateral muscles. In addition to the excitatory crossed reflex pathway indicated by muscle activation, we demonstrate the presence of an inhibitory crossed reflex pathway, which was modulated when the motor pools were active during walking. The results are compared with the crossed reflex responses initiated by stimulating proprioceptors from extensor muscles and cutaneous afferents from the posterior part of the leg. We anticipate that these findings will be essential for future research combining the in vivo experiments presented here with mouse genetics to understand crossed reflex pathways at the network level in vivo. Insights into the mechanisms of crossed reflexes are essential for understanding coordinated leg movements that maintain stable locomotion. Advances in mouse genetics allow for the selective manipulation of spinal interneurons and provide opportunities to understand crossed reflexes. Crossed reflexes in mice, however, are poorly described. Here, we describe crossed reflex responses in mice initiated by stimulation of the common peroneal nerve, which serves as a starting point for investigating crossed reflexes at the cellular level.

摘要

对侧腿部感觉刺激引起的一条腿的运动反应被称为“交叉反射”,在猫和人类中得到了广泛的研究。尽管进行了这些努力,但对交叉反射的回路水平理解仍然缺失。在小鼠中,分子遗传学的进步使人们能够深入了解“联络性脊髓回路”,该回路确保了运动过程中腿部的协调运动。尽管联络性脊髓回路和交叉反射的回路之间存在一些共同特征,但它们的重叠程度仍然不清楚。在这里,我们描述了通过电刺激主要支配踝关节屈肌和后腿前外侧皮肤的腓总神经引起的兴奋性交叉反射反应。用低电流强度刺激腓总神经会在对侧屈肌和伸肌中引起小幅度的运动反应。在更高的电流强度下,刺激同一神经会在同一对侧肌肉中引起更强和更同步的反应。除了肌肉激活所表示的兴奋性交叉反射通路外,我们还证明了存在抑制性交叉反射通路,当运动池在行走时活跃时,该通路会被调制。结果与通过刺激伸肌本体感受器和来自后腿后部的皮肤传入纤维引发的交叉反射反应进行了比较。我们预计,这些发现对于将这里提出的活体实验与小鼠遗传学相结合以在体内水平上理解交叉反射通路的未来研究将是必不可少的。对交叉反射机制的深入了解对于理解维持稳定运动的协调腿部运动至关重要。小鼠遗传学的进步允许对脊髓中间神经元进行选择性操作,并为理解交叉反射提供了机会。然而,小鼠的交叉反射反应描述得很差。在这里,我们描述了通过刺激腓总神经引发的小鼠交叉反射反应,这为在细胞水平上研究交叉反射提供了一个起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2821/8836714/3d2c9827a2bb/jn-00385-2021r01.jpg

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