Höppner Hannes, McIntyre Joseph, van der Smagt Patrick
Institute of Robotics and Mechatronics, German Aerospace Center, Wessling, Germany.
PLoS One. 2013 Dec 4;8(12):e80889. doi: 10.1371/journal.pone.0080889. eCollection 2013.
It is widely known that the pinch-grip forces of the human hand are linearly related to the weight of the grasped object. Less is known about the relationship between grip force and grip stiffness. We set out to determine variations to these dependencies in different tasks with and without visual feedback. In two different settings, subjects were asked to (a) grasp and hold a stiffness-measuring manipulandum with a predefined grip force, differing from experiment to experiment, or (b) grasp and hold this manipulandum of which we varied the weight between trials in a more natural task. Both situations led to grip forces in comparable ranges. As the measured grip stiffness is the result of muscle and tendon properties, and since muscle/tendon stiffness increases more-or-less linearly as a function of muscle force, we found, as might be predicted, a linear relationship between grip force and grip stiffness. However, the measured stiffness ranges and the increase of stiffness with grip force varied significantly between the two tasks. Furthermore, we found a strong correlation between regression slope and mean stiffness for the force task which we ascribe to a force stiffness curve going through the origin. Based on a biomechanical model, we attributed the difference between both tasks to changes in wrist configuration, rather than to changes in cocontraction. In a new set of experiments where we prevent the wrist from moving by fixing it and resting it on a pedestal, we found subjects exhibiting similar stiffness/force characteristics in both tasks.
众所周知,人手的捏握力与所握持物体的重量呈线性关系。而握力与握力刚度之间的关系则鲜为人知。我们着手确定在有无视觉反馈的不同任务中,这些相关性的变化情况。在两种不同的设置中,受试者被要求:(a) 以预先定义的握力(每次实验不同)握住并保持一个用于测量刚度的操作手柄,或者 (b) 在一项更自然的任务中,握住这个操作手柄,我们在各次试验中改变其重量。两种情况都导致握力处于相当的范围。由于所测量的握力刚度是肌肉和肌腱特性的结果,并且由于肌肉/肌腱刚度大致随肌肉力呈线性增加,正如我们所预期的,我们发现握力与握力刚度之间存在线性关系。然而,在这两项任务中,所测量的刚度范围以及刚度随握力的增加情况有显著差异。此外,我们发现力任务的回归斜率与平均刚度之间存在很强的相关性,我们将其归因于一条经过原点的力刚度曲线。基于一个生物力学模型,我们将两项任务之间的差异归因于手腕配置的变化,而非协同收缩的变化。在一组新的实验中,我们通过将手腕固定并使其靠在基座上来防止其移动,我们发现受试者在两项任务中表现出相似的刚度/力特性。