Departamento de Ingeniería Mecánica y Construcción, Universitat Jaume I, Castellón, Spain.
J Biomech. 2013 Oct 18;46(15):2644-50. doi: 10.1016/j.jbiomech.2013.08.005. Epub 2013 Sep 6.
The elasticity and damping of the soft tissues of the hand contribute to dexterity while grasping and also help to stabilise the objects in manipulation tasks. Although some previous works have studied the force-displacement response of the fingertips, the responses in all other regions of the hand that usually participate in grasping have not been analysed to date. In this work we performed experimental measurements in 20 subjects to obtain a stiffness map of the different grasping contact areas of the human hand. A force-displacement apparatus was used to simultaneously measure force and displacement at 39 different points on the hand at six levels of force ranging from 1N to 6N. A non-linear force-displacement response was found for all points, with stiffness increasing with the amount of force applied. Mean stiffness for the different points and force levels was within the range from 0.2N/mm to 7.7N/mm. However, the stiffness range and variation with level of force were found to be different from point to point. A total of 13 regions with similar stiffness behaviours were identified. The stiffness in the fingertips increased linearly with the amount of force applied, while in the palm it remained more constant for the range of forces considered. It is hypothesised that the differences in the stiffness behaviour from one region to another allow these regions to play different roles during grasping.
手部软组织的弹性和阻尼有助于抓握时的灵活性,同时也有助于在操作任务中稳定物体。尽管之前的一些研究已经研究了指尖的力-位移响应,但迄今为止尚未分析手部所有其他通常参与抓握的区域的响应。在这项工作中,我们对 20 名受试者进行了实验测量,以获得人手不同抓握接触区域的刚度图。使用力-位移装置在六个力水平(从 1N 到 6N)的 39 个不同点上同时测量力和位移。发现所有点的力-位移响应都是非线性的,随着施加力的增加而增加。不同点和力水平的平均刚度在 0.2N/mm 到 7.7N/mm 之间。然而,发现刚度范围和随力水平的变化在不同点之间存在差异。总共确定了 13 个具有相似刚度行为的区域。指尖的刚度与施加的力呈线性增加,而在手掌中,考虑到的力范围内,刚度保持更恒定。据假设,从一个区域到另一个区域的刚度行为的差异允许这些区域在抓握过程中发挥不同的作用。