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中风侧上肢的多关节反射:肘部与肩部的神经耦合

Multijoint reflexes of the stroke arm: neural coupling of the elbow and shoulder.

作者信息

Sangani Samir G, Starsky Andrew J, McGuire John R, Schmit Brian D

机构信息

Department of Biomedical Engineering, Marquette University, P.O. Box 1881, Milwaukee, Wisconsin 53201-1881, USA.

出版信息

Muscle Nerve. 2007 Nov;36(5):694-703. doi: 10.1002/mus.20852.

Abstract

The reflex torque responses of the elbow and shoulder to constant velocity angular extensions of the full comfortable range of the spastic elbow were measured in 16 people with unilateral stroke and 6 neurologically intact controls in order to identify the interjoint reflex coupling that occurs after stroke. The resulting responses showed a substantial reflex torque at the elbow and shoulder in subjects with stroke, with 12 of the 16 subjects producing adduction of the shoulder in response to passive extension of the elbow. The presence of simultaneous shoulder flexion torque with elbow flexion torque and with an identical waveform indicated an active role of biarticular elbow/shoulder flexors, such as the biceps. As the biceps muscle produces a shoulder abduction moment, shoulder adduction produced during elbow extension was thought to be associated with neural rather than biomechanical coupling. These results suggest that spasticity in people with stroke is more complex than its traditional perception as a hyperexcitable stretch reflex, and includes potent heteronymous reflex pathways. The reflex coupling observed between the shoulder and elbow should be considered in the diagnosis and clinical management of spasticity. The potential impact of this reflex on the coordination of volitional arm movements will be examined in future studies.

摘要

为了确定中风后发生的关节间反射耦合,对16名单侧中风患者和6名神经功能正常的对照者测量了肘部和肩部对痉挛性肘部完全舒适范围内的等速角伸展的反射扭矩反应。结果显示,中风患者的肘部和肩部存在显著的反射扭矩,16名受试者中有12名在肘部被动伸展时出现肩部内收。肘部屈曲扭矩与肩部屈曲扭矩同时出现且波形相同,表明双关节肘/肩屈肌(如肱二头肌)发挥了积极作用。由于肱二头肌会产生肩部外展力矩,因此肘部伸展时产生的肩部内收被认为与神经耦合而非生物力学耦合有关。这些结果表明,中风患者的痉挛比其传统上被认为是过度兴奋的牵张反射更为复杂,并且包括强大的异源反射通路。在痉挛的诊断和临床管理中应考虑肩部和肘部之间观察到的反射耦合。这种反射对随意手臂运动协调性的潜在影响将在未来的研究中进行研究。

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