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四指任务中最大自主收缩时的运动冗余

Motor redundancy during maximal voluntary contraction in four-finger tasks.

作者信息

Li Z M, Latash M L, Newell K M, Zatsiorsky V M

机构信息

Department of Kinesiology, The Pennsylvania State University, University Park 16802, USA.

出版信息

Exp Brain Res. 1998 Sep;122(1):71-8. doi: 10.1007/s002210050492.

Abstract

The goal of the study was to investigate force-sharing patterns in multi-finger tasks. Maximal normal force (MNF) as well as the force-time curves produced by individual fingers were measured in 10 young male subjects in three tasks: (1) holding an instrumented handle in a pad opposition with the thumb at seven different locations, from opposing the index finger (L0) to opposing the little finger (L6); (2) holding the handle in a pad opposition with the thumb at an individually selected comfortable location; and (3) pressing with the four fingers against the same handle fixed to the external support. We found that: (1) The moment due to the normal finger forces changed systematically when the thumb position varied from L0 to L5/ L6, and it was equal to zero at a certain middle position of the thumb, the neutral position. At this position, the shear force produced by the fingers was zero. (2) The total MNF changed in an ascending-descending manner when the thumb position varied from L0 to L5/L6. The highest value of the maximal total normal force was produced at a position of the thumb that was preferred as the most comfortable position in the grip task. (3) In the press task, the neutral line - the line with respect to which the moment generated by the four fingers equals zero - was at the same location as the preferred thumb position in the grip tasks. (4) Larger total normal force corresponded to smaller total shear forces. (5) In grip tasks, with the thumb in a comfortable position, the force-force relationships among fingers were approximately linear. Hence, in these thumb positions, the force-sharing pattern was established at the beginning of the trial. At the extreme positions of the thumb, irregular patterns of the force-force relationships were observed. (6) In trials with different thumb locations, a significant correlation was found between the maximal force produced by the index and small fingers. (7) Peak force exerted by individual fingers in the multi-finger tasks was much smaller than the maximal force displayed by the same fingers in the single-finger tasks. The peak force depended on the thumb position and varied from 11.3% to 65.2% of the maximal force exerted by the same finger in the single-finger task. With the thumb in the comfortable position, the relative peak force for all fingers was approximately at the same level, 50-55%. The data are in agreement with the hypothesis that the total force is shared among individual fingers, minimizing the moment with respect to the functional hand axis.

摘要

本研究的目的是调查多手指任务中的力分配模式。在10名年轻男性受试者中测量了最大法向力(MNF)以及各手指产生的力-时间曲线,这些受试者执行了三项任务:(1)用拇指与食指在七个不同位置进行掌面相对握持一个装有传感器的手柄,从与食指相对(L0)到与小指相对(L6);(2)在拇指单独选择的舒适位置进行掌面相对握持手柄;(3)用四个手指按压固定在外部支撑上的同一手柄。我们发现:(1)当拇指位置从L0变化到L5/L6时,由于手指法向力产生的力矩有系统地变化,并且在拇指的某个中间位置,即中立位置,该力矩等于零。在这个位置,手指产生的剪切力为零。(2)当拇指位置从L0变化到L5/L6时,总MNF呈先升后降的变化。最大总法向力的最高值出现在拇指的一个位置,该位置在抓握任务中被认为是最舒适的位置。(3)在按压任务中,中性线——四个手指产生的力矩相对于其为零的线——与抓握任务中拇指的偏好位置在同一位置。(4)较大的总法向力对应较小的总剪切力。(5)在抓握任务中,当拇指处于舒适位置时,手指之间的力-力关系近似线性。因此,在这些拇指位置,力分配模式在试验开始时就已确立。在拇指的极端位置,观察到力-力关系的不规则模式。(6)在拇指位置不同的试验中,发现食指和小指产生的最大力之间存在显著相关性。(7)在多手指任务中,单个手指施加的峰值力远小于同一手指在单手指任务中显示的最大力。峰值力取决于拇指位置,在单手指任务中同一手指施加的最大力的11.3%至65.2%之间变化。当拇指处于舒适位置时,所有手指的相对峰值力大致处于同一水平,即约50 - 55%。这些数据与以下假设一致,即总力在各个手指之间分配,使相对于功能手轴的力矩最小化。

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