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用力时上肢不对称性取决于力量水平。

Upper Limb Asymmetry in the Sense of Effort Is Dependent on Force Level.

作者信息

Mitchell Mark, Martin Bernard J, Adamo Diane E

机构信息

Rehabilitation Institute of Michigan, DetroitMI, USA.

Department of Industrial and Operations Engineering, University of Michigan, Ann ArborMI, USA.

出版信息

Front Psychol. 2017 Apr 26;8:643. doi: 10.3389/fpsyg.2017.00643. eCollection 2017.

Abstract

Previous studies have shown that asymmetries in upper limb sensorimotor function are dependent on the source of sensory and motor information, hand preference and differences in hand strength. Further, the utilization of sensory and motor information and the mode of control of force may differ between the right hand/left hemisphere and left hand/right hemisphere systems. To more clearly understand the unique contribution of hand strength and intrinsic differences to the control of grasp force, we investigated hand/hemisphere differences when the source of force information was encoded at two different force levels corresponding to a 20 and 70% maximum voluntary contraction or the right and left hand of each participant. Eleven, adult males who demonstrated a stronger right than left maximum grasp force were requested to match a right or left hand 20 or 70% maximal voluntary contraction reference force with the opposite hand. During the matching task, visual feedback corresponding to the production of the reference force was available and then removed when the contralateral hand performed the match. The matching relative force error was significantly different between hands for the 70% MVC reference force but not for the 20% MVC reference force. Directional asymmetries, quantified as the matching force constant error, showed right hand overshoots and left undershoots were force dependent and primarily due to greater undershoots when matching with the left hand the right hand reference force. Findings further suggest that the interaction between internal sources of information, such as efferent copy and proprioception, as well as hand strength differences appear to be hand/hemisphere system dependent. Investigations of force matching tasks under conditions whereby force level is varied and visual feedback of the reference force is available provides critical baseline information for building effective interventions for asymmetric (stroke-related, Parkinson's Disease) and symmetric (Amyotrophic Lateral Sclerosis) upper limb recovery of neurological conditions where the various sources of sensory - motor information have been significantly altered by the disease process.

摘要

先前的研究表明,上肢感觉运动功能的不对称性取决于感觉和运动信息的来源、手偏好以及手部力量的差异。此外,右手/左半球和左手/右半球系统在感觉和运动信息的利用以及力的控制模式上可能有所不同。为了更清楚地了解手部力量和内在差异对抓握力控制的独特贡献,我们研究了在对应于最大自主收缩20%和70%的两个不同力水平对力信息进行编码时,或者在每个参与者的右手和左手时,手/半球的差异。11名成年男性,其右手最大抓握力强于左手,被要求用对侧手匹配右手或左手20%或70%最大自主收缩的参考力。在匹配任务期间,有与参考力产生相对应的视觉反馈,当对侧手进行匹配时视觉反馈被移除。对于70%最大自主收缩参考力,两手之间的匹配相对力误差有显著差异,但对于20%最大自主收缩参考力则没有。以匹配力恒定误差量化的方向不对称性表明,右手超调而左手欠调是与力相关的,主要是因为用左手匹配右手参考力时欠调更大。研究结果进一步表明,诸如传出副本和本体感觉等内部信息源之间的相互作用以及手部力量差异似乎取决于手/半球系统。在力水平变化且有参考力视觉反馈的条件下对力匹配任务进行研究,为针对不对称性(与中风相关、帕金森病)和对称性(肌萎缩侧索硬化症)上肢神经疾病恢复构建有效干预措施提供了关键的基线信息,在这些疾病中,各种感觉 - 运动信息源已被疾病过程显著改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b81c/5405061/e84c3df29f24/fpsyg-08-00643-g001.jpg

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