Department of Biomedical Engineering, Cleveland Clinic, Cleveland, OH, 44195, USA.
Exp Brain Res. 2013 Apr;225(4):589-602. doi: 10.1007/s00221-013-3403-x. Epub 2013 Jan 16.
We investigated the effects of exercise-induced fatigue of a digit on the biomechanics of a static prehension task. The participants were divided into two groups. One group performed the fatiguing exercise using the thumb (group-thumb) and the second group performed the exercise using the index finger (group-index). We analyzed the prehensile action as being based on a two-level hierarchy. Our first hypothesis was that fatigue of the thumb would have stronger effects at the upper level (action shared between the thumb and all four fingers combined-virtual finger) and fatigue of the index finger would have stronger effects at the lower level of the hierarchy (action of the virtual finger shared among actual fingers). We also hypothesized that fatigue would cause a decrease in the normal force applied by the exercised digit and correspondingly lead to a decrease in the normal force applied by the opposing digit(s). Our third hypothesis was that fatigue would leave the tangential forces unaffected. Fatigue led to a significant drop in the normal force of both exercised and non-exercised (opposing) digits. The tangential forces of the exercised digits increased after fatigue. This led to a drop in the safety margin in the group-thumb, but not group-index. As such, the results supported the first two hypotheses but not the third hypothesis. Overall, the results suggested that fatigue triggered a chain reaction that involved both forces and moments of force produced by individual digits leading to a violation of the principle of superposition. The findings are interpreted within the framework of the referent configuration hypothesis.
我们研究了手指疲劳对静态抓握任务生物力学的影响。参与者被分为两组。一组使用拇指进行疲劳运动(拇指组),另一组使用食指进行疲劳运动(食指组)。我们分析了抓握动作是基于两级层次结构。我们的第一个假设是拇指疲劳将在上层(拇指和所有四个手指的共同动作-虚拟手指)产生更强的影响,而食指疲劳将在层次结构的下层(实际手指之间共享的虚拟手指的动作)产生更强的影响。我们还假设疲劳会导致所锻炼手指施加的法向力减小,并相应导致对侧手指施加的法向力减小。我们的第三个假设是疲劳不会影响切向力。疲劳导致锻炼和非锻炼(对侧)手指的法向力显著下降。锻炼手指的切向力在疲劳后增加。这导致拇指组的安全裕度下降,但食指组没有。因此,结果支持了前两个假设,但不支持第三个假设。总的来说,结果表明疲劳引发了一种连锁反应,涉及单个手指产生的力和力矩,导致叠加原理的违反。研究结果在参考配置假设的框架内进行了解释。