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严重胸段脊髓挫伤后猫的运动恢复情况

Recovery of locomotion in cats after severe contusion of the low thoracic spinal cord.

作者信息

Delivet-Mongrain Hugo, Dea Melvin, Gossard Jean-Pierre, Rossignol Serge

机构信息

Department of Neuroscience, Groupe de Recherche sur le Système Nerveux Central (GRSNC of FRQ-S), Faculty of Medicine, Université de Montréal, Montreal, Canada.

出版信息

J Neurophysiol. 2020 Apr 1;123(4):1504-1525. doi: 10.1152/jn.00498.2019. Epub 2020 Feb 26.

Abstract

Large bilateral contusions of the T10 thoracic spinal cord were performed in 16 adult cats using a calibrated impactor. EMG and video recordings allowed weekly assessments of key locomotor parameters during treadmill training for 5 wk. Thirty-five days postcontusion, several hindlimb locomotor parameters were very similar to the prelesion ones despite some long-term deficits such as paw drag and disrupted fore-hindlimb coupling. Nine out of ten tested cats could step over obstacles placed on the treadmill. Acute electrophysiological experiments showed viable connectivity between segments rostral and caudal to the contusion. At the fifth postcontusion week, a complete spinalization was performed at T13 in 10 cats and all expressed remarkable bilateral hindlimb locomotion within 24-72 h. From our histological evaluation, we concluded that only a small percentage (~10%) of spinal cord pathways was necessary to initiate and maintain a voluntary quadrupedal locomotor pattern on a treadmill and even to negotiate obstacles. Our findings suggest that hindlimb stepping largely resulted from the activity of spinal locomotor circuits, which gradually recovered autonomy week after week. Our histological and electrophysiological evidence indicated that the persistence of specific deficits or else the maintenance of specific functions was related to the integrity of specific supraspinal and propriospinal pathways. The conclusion is that the recovery of locomotion after large spinal contusions depends on a homeostatic recalibration of a tripartite control system involving interactions between spinal circuits (central pattern generator), supraspinal influences, and sensory feedback activated through locomotor training. The recovery of quadrupedal treadmill locomotion after a large bilateral contusion at the low thoracic T10 spinal level and the ability to negotiate obstacles were studied for 5 wk in 16 cats. Ten cats were further completely spinalized at T13 and were found to walk with the hindlimbs within 24-72 h. We conclude that the extent of locomotor recovery after large spinal contusions hinges both on remnant supraspinal pathways and on a spinal pattern generator.

摘要

使用校准的冲击器在16只成年猫身上造成T10胸段脊髓的双侧大面积挫伤。肌电图(EMG)和视频记录允许在为期5周的跑步机训练期间每周评估关键运动参数。挫伤后35天,尽管存在一些长期缺陷,如爪子拖地和前后肢协调障碍,但几个后肢运动参数与损伤前非常相似。十分之九的受试猫能够跨过放置在跑步机上的障碍物。急性电生理实验表明,挫伤部位头端和尾端节段之间存在可行的连接。在挫伤后第5周,对10只猫在T13水平进行完全脊髓横断,所有猫在24 - 72小时内均表现出明显的双侧后肢运动。根据我们的组织学评估,我们得出结论,仅一小部分(约10%)的脊髓通路对于在跑步机上启动和维持自愿四足运动模式甚至越过障碍物是必要的。我们的研究结果表明,后肢迈步很大程度上源于脊髓运动回路的活动,该回路每周逐渐恢复自主性。我们的组织学和电生理证据表明,特定缺陷的持续存在或特定功能的维持与特定的脊髓上和脊髓固有通路的完整性有关。结论是,大面积脊髓挫伤后运动功能的恢复取决于一个三方控制系统的稳态重新校准,该系统涉及脊髓回路(中枢模式发生器)、脊髓上影响以及通过运动训练激活的感觉反馈之间的相互作用。研究了16只猫在T10胸段脊髓水平双侧大面积挫伤后四足跑步机运动的恢复情况以及越过障碍物的能力,为期5周。10只猫在T13水平进一步进行完全脊髓横断,发现它们在24 - 72小时内能够用后肢行走。我们得出结论,大面积脊髓挫伤后运动恢复的程度既取决于残余的脊髓上通路,也取决于脊髓模式发生器。

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