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机械刺激腰椎区域会抑制脊髓猫的类似运动活动,并增加来自爪子的皮肤反射增益。

Mechanically stimulating the lumbar region inhibits locomotor-like activity and increases the gain of cutaneous reflexes from the paws in spinal cats.

作者信息

Merlet Angèle N, Harnie Jonathan, Macovei Madalina, Doelman Adam, Gaudreault Nathaly, Frigon Alain

机构信息

Department of Pharmacology-Physiology, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, Quebec, Canada.

School of Rehabilitation, Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, Quebec, Canada.

出版信息

J Neurophysiol. 2020 Mar 1;123(3):1026-1041. doi: 10.1152/jn.00747.2019. Epub 2020 Feb 12.

Abstract

Mechanically stimulating the dorsal lumbar region inhibits locomotion and reduces weight support during standing in rabbits and cats. However, how this inhibitory effect from the lumbar skin is mediated is poorly understood. Here we evaluated the effect of mechanically stimulating (vibration or pinch) the dorsal lumbar region on short-latency (8- to 13-ms onset) cutaneous reflex responses, evoked by electrically stimulating the superficial peroneal or distal tibial nerves, in seven adult cats with a low thoracic spinal transection (spinal cats). Cutaneous reflexes were evoked before, during, and after mechanical stimulation of the dorsal lumbar region. We found that mechanically stimulating the lumbar region by vibration or manual pinch abolished alternating bursts of activity between flexors and extensors initiated by nerve stimulation. The activity of extensor muscles was abolished bilaterally, whereas the activity of some ipsilateral flexor muscles was sustained during vibration/pinch. Mechanically stimulating the lumbar region increased ipsilateral and contralateral short-latency excitatory responses evoked by cutaneous inputs, a phenomenon that was generalized to muscles crossing different joints and located in different limbs. Our results indicate that the inhibitory effect on locomotion and weight support is not mediated by reducing cutaneous reflex gain and instead points to an inhibition of central pattern-generating circuitry, particularly the extensor component. The results provide greater insight into interactions between different types of somatosensory inputs within spinal motor circuits. Vibration or pinch of the lumbar region in spinal-transected cats abolished alternating bursts of activity between flexors and extensors initiated by nerve stimulation. Mechanically stimulating the lumbar region increased ipsilateral and contralateral short-latency excitatory responses evoked by cutaneous inputs in hindlimb muscles. Sensory inputs from mechanoreceptors of the lumbar region do not mediate their inhibitory effect on locomotion and weight support by reducing the gain of short-latency excitatory cutaneous reflexes from the foot.

摘要

机械刺激兔和猫的腰背部会抑制其运动,并减少站立时的体重支撑。然而,人们对来自腰部皮肤的这种抑制作用是如何介导的知之甚少。在此,我们评估了在七只胸段低位脊髓横断的成年猫(脊髓猫)中,机械刺激(振动或捏压)腰背部对由电刺激腓浅神经或胫神经远端诱发的短潜伏期(起始于8至13毫秒)皮肤反射反应的影响。在机械刺激腰背部之前、期间和之后诱发皮肤反射。我们发现,通过振动或手动捏压机械刺激腰部区域,会消除由神经刺激引发的屈肌和伸肌之间交替的活动爆发。双侧伸肌的活动被消除,而在振动/捏压期间,一些同侧屈肌的活动得以持续。机械刺激腰部区域会增加由皮肤输入诱发的同侧和对侧短潜伏期兴奋性反应,这一现象在跨越不同关节和位于不同肢体的肌肉中普遍存在。我们的结果表明,对运动和体重支撑的抑制作用不是通过降低皮肤反射增益来介导的,而是指向对中枢模式发生器回路的抑制,特别是伸肌成分。这些结果为深入了解脊髓运动回路中不同类型的体感输入之间的相互作用提供了更多信息。脊髓横断猫的腰部区域振动或捏压会消除由神经刺激引发的屈肌和伸肌之间交替的活动爆发。机械刺激腰部区域会增加后肢肌肉中由皮肤输入诱发的同侧和对侧短潜伏期兴奋性反应。腰部区域机械感受器的感觉输入不会通过降低来自足部的短潜伏期兴奋性皮肤反射的增益来介导其对运动和体重支撑的抑制作用。

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