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猕猴(恒河猴)单侧胸段皮质脊髓束损伤后的运动和足部抓握能力

Performance of locomotion and foot grasping following a unilateral thoracic corticospinal tract lesion in monkeys (Macaca mulatta).

作者信息

Courtine Grégoire, Roy Roland R, Raven Joseph, Hodgson John, McKay Heather, Yang Hong, Zhong Hui, Tuszynski Mark H, Edgerton V Reggie

机构信息

Department of Physiological Science, University of California, Los Angeles, CA 90095-1527, USA.

出版信息

Brain. 2005 Oct;128(Pt 10):2338-58. doi: 10.1093/brain/awh604. Epub 2005 Jul 27.

Abstract

Six adult monkeys (Macaca mulatta) received a unilateral lesion of the lateral corticospinal tract (CST) in the thoracic spinal cord. Prior to surgery, the animals were trained to perform quadrupedal stepping on a treadmill, and item retrieval with the foot. Whole body kinematics and electromyogram (EMG) recordings were made prior to, and at regular intervals over a period of 12 weeks after the CST lesion. After 1 week of recovery, all monkeys were able to walk unaided quadrupedally on the treadmill. The animals, however, dragged the hindpaw ipsilateral to the lesion along the treadmill belt during the swing phase and showed a significant reorganization of the spatiotemporal pattern of hindlimb (HL) and forelimb (FL) displacements. The inability to appropriately trigger the swing phase resulted in an increase in the cycle duration and stride length of both HLs. The stance duration decreased in the ipsilateral HL, and increased in the contralateral HL and both FLs. Consequently, there was a dramatic disruption of interlimb and intralimb coupling that was reflected in the limb kinematic and EMG patterns. The CST lesion completely abolished the ability of the monkeys to retrieve items with the foot ipsilateral to the lesion and significantly disrupted the level of performance of the contralateral HL during the first 2 weeks post-lesion. Interestingly, selected HL muscles remained almost quiescent when the monkeys attempted to retrieve items, but were unsuccessful with the affected foot at 1 week post-lesion, whereas the capacity to activate the same muscles was preserved, although reduced, during stepping. Spatial and temporal parameters of gait, kinematics, and EMG patterns recorded during locomotion generally converged toward control values over time, but significant differences persisted up to 12 weeks post-lesion. Although some control was recovered over the distal foot musculature, fine foot grasping remained significantly impaired at the end of the testing period. These findings demonstrate that the CST pathway from the brain normally makes an important contribution to interlimb and intralimb coordination during basic locomotion, and to muscle activation to produce dexterous foot digit movements in the monkey. Furthermore, the present study indicates that the primate has the ability to rapidly accommodate locomotor performance, and to a lesser degree fine foot motor skills, to a reduction in supraspinal control. Identification of the neural substrates mediating the rapid recovery of motor function following injury to the primate spinal cord could provide insight into developing repair strategies to augment functional recovery from neuromotor impairments.

摘要

六只成年猕猴(恒河猴)在胸段脊髓接受了单侧皮质脊髓束(CST)损伤。手术前,训练这些动物在跑步机上进行四足行走以及用脚取物。在CST损伤前以及损伤后的12周内定期进行全身运动学和肌电图(EMG)记录。恢复1周后,所有猕猴都能够在跑步机上独立进行四足行走。然而,这些动物在摆动期会沿着跑步机皮带拖动损伤同侧的后爪,并且后肢(HL)和前肢(FL)位移的时空模式出现了显著重组。无法适当地触发摆动期导致双侧HL的周期持续时间和步幅增加。同侧HL的站立持续时间减少,对侧HL和双侧FL的站立持续时间增加。因此,肢体间和肢体内部的耦合出现了显著紊乱,这在肢体运动学和EMG模式中得到了体现。CST损伤完全消除了猕猴用损伤同侧的脚取物的能力,并且在损伤后的前两周显著扰乱了对侧HL的表现水平。有趣的是,当猕猴试图取物但在损伤后1周用受影响的脚未成功时,选定的HL肌肉几乎保持静止,而在行走过程中激活相同肌肉的能力虽然有所降低但仍得以保留。随着时间的推移,运动过程中记录的步态、运动学和EMG模式的空间和时间参数通常趋向于对照值,但在损伤后12周仍存在显著差异。尽管对远端足部肌肉组织恢复了一些控制,但在测试期结束时精细的足部抓握能力仍然显著受损。这些发现表明,大脑中的CST通路通常在基本运动过程中对肢体间和肢体内部的协调以及产生灵巧的脚趾运动的肌肉激活做出重要贡献。此外,本研究表明,灵长类动物有能力迅速适应运动表现,并在较小程度上适应精细的足部运动技能,以应对脊髓上控制的减少。确定介导灵长类动物脊髓损伤后运动功能快速恢复的神经基质,可能为制定增强神经运动障碍功能恢复的修复策略提供见解。

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