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小脑疾病患者的握力-负荷力协调

Grip-load force coordination in cerebellar patients.

作者信息

Serrien D J, Wiesendanger M

机构信息

Department of Neurology, University of Berne, Berne, Switzerland.

出版信息

Exp Brain Res. 1999 Sep;128(1-2):76-80. doi: 10.1007/s002210050820.

Abstract

The study examined the anticipatory grip force modulations to load force changes during a drawer-opening task. An impact force was induced by a mechanical stop which abruptly arrested movement of the pulling hand. In performing this task, normal subjects generated a typical grip force profile characterized by an initial force impulse related to drawer movement onset, followed by a ramp-like grip force increase prior to the impending load perturbation. Finally, a reactive response was triggered by the impact. In patients with bilateral cerebellar dysfunction, the drawer-opening task was performed with an alternative control strategy. During pulling, grip force was increased to a high (overestimated) default level. The latter suggests that cerebellar patients were unable to adjust and to scale precisely the grip force according to the load force. In addition, the latency between impact and reactive activity was prolonged in the patients, suggesting an impaired cerebellar transmission of the long-latency responses. In conclusion, these data demonstrate the involvement of cerebellar circuits in both proactive and reactive mechanisms in view of predictable load perturbations during manipulative behavior.

摘要

该研究考察了在抽屉开启任务中,预期握力对负载力变化的调制情况。通过一个机械止动装置产生冲击力,该装置会突然阻止拉动手的运动。在执行此任务时,正常受试者产生了一种典型的握力曲线,其特征是与抽屉运动开始相关的初始力脉冲,随后在即将到来的负载扰动之前握力呈斜坡状增加。最后,由冲击力触发了一种反应性反应。在双侧小脑功能障碍患者中,采用了另一种控制策略来执行抽屉开启任务。在拉动过程中,握力增加到一个较高(高估)的默认水平。后者表明小脑患者无法根据负载力精确调整和缩放握力。此外,患者中冲击与反应性活动之间的潜伏期延长,这表明小脑对长潜伏期反应的传递受损。总之,这些数据表明,鉴于在操纵行为中可预测的负载扰动,小脑回路参与了主动和反应机制。

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