Flanagan J R, Wing A M
MRC Applied Psychology Unit, Cambridge, UK.
Exp Brain Res. 1993;95(1):131-43. doi: 10.1007/BF00229662.
In this paper, we examine grip forces and load forces during point-to-point arm movements with objects grasped with a precision grip. We demonstrate that grip force is finely modulated with load force. Variations in load force arise from inertial forces related to movement; grip force rises as the load force increases and falls as load force decreases. The same finding is observed in vertical and horizontal movements performed at various rates. In vertical movements, maximum grip force coincides in time with maximum load force. The maxima occur early in upward and later in downward movements. In horizontal movements, where peaks in load force are observed during both the acceleratory and deceleratory phases, grip force rises at the beginning of the movement and remains high until the end. The results suggest that when moving an object with the hand the programming of grip force is an integral part of the planning process.
在本文中,我们研究了用精确抓握方式抓握物体进行点对点手臂运动时的握力和负载力。我们证明握力会随负载力进行精细调节。负载力的变化源于与运动相关的惯性力;握力随负载力增加而上升,随负载力减小而下降。在以各种速率进行的垂直和水平运动中都观察到了相同的结果。在垂直运动中,最大握力与最大负载力在时间上重合。最大值在向上运动时出现得早,在向下运动时出现得晚。在水平运动中,在加速和减速阶段都会观察到负载力的峰值,握力在运动开始时上升并一直保持较高水平直到运动结束。结果表明,当用手移动物体时,握力的编程是规划过程中不可或缺的一部分。