Aoki Tomoko, Latash Mark L, Zatsiorsky Vladimir M
Faculty of Environmental and Symbiotic Sciences, Prefectural University of Kumamoto, Japan.
J Mot Behav. 2007 Jul;39(4):276-90. doi: 10.3200/JMBR.39.4.276-290.
The authors studied the effects of surface friction at the digit-object interface on digit forces and moments when 12 participants statically held an object in a 5-digit grasp. The authors changed low-friction contact (LFC) with rayon and high-friction contact (HFC) with sandpaper independently for each digit in all 32 possible combinations. Normal forces of the thumb and virtual finger (VF), an imagined finger with a mechanical effect equal to that of the 4 fingers, increased with the thumb at LFC or with an increase in the number of fingers at LFC. When the thumb was at LFC, the thumb tangential force decreased. The VF tangential force decreased when the number of fingers at LFC increased. The interaction of the local responses to friction and the synergic responses necessary to maintain the equilibrium explain the coordination of individual digit forces.
作者研究了12名参与者以五指抓握方式静态握持物体时,手指与物体界面处的表面摩擦力对指力和力矩的影响。作者针对每根手指,独立地将人造丝造成的低摩擦接触(LFC)和砂纸造成的高摩擦接触(HFC)以所有32种可能的组合进行了改变。拇指和虚拟手指(VF,一种机械效应等同于4根手指的假想手指)的法向力,在低摩擦接触时随着拇指变化而增加,或者在低摩擦接触时随着手指数量增加而增加。当拇指处于低摩擦接触时,拇指切向力减小。当处于低摩擦接触的手指数量增加时,虚拟手指切向力减小。对摩擦力的局部反应与维持平衡所需的协同反应之间的相互作用,解释了各手指力的协调情况。