Cesari P, Newell K M
Department of Kinesiology, Pennsylvania State University, University Park 16802, USA.
J Exp Psychol Hum Percept Perform. 1999 Aug;25(4):927-35. doi: 10.1037//0096-1523.25.4.927.
The many degrees of freedom of the hand and arm afford the wide range and rich adaptability of human grip configurations in action. Several classification schemes of human grip configurations have been proposed, but none is based on scaling laws of physical biology, which are well established for other categorizations of fundamental physical activities such as locomotion. This study examined the preferred human grip configurations used to displace to a new location cubes that varied systematically in length (L), mass (M), and density (ML-3). The body-scaled equation K = log L + (log M)/h (where h refers to anthropometric measures of the hand) predicted the grip configurations used to displace objects. The findings suggest that information about the dynamic scaling relation is picked up visually and organizes the many degrees of freedom of the hand-arm complex in the coordination of prehensile grip configurations.
手和手臂的多个自由度使得人类在行动中握姿的范围广泛且适应性丰富。已经提出了几种人类握姿的分类方案,但没有一种是基于物理生物学的比例定律,而这些定律在诸如运动等基本身体活动的其他分类中已得到充分确立。本研究考察了用于移动到新位置的立方体的首选人类握姿,这些立方体在长度(L)、质量(M)和密度(ML-3)上系统变化。身体比例方程K = log L + (log M)/h(其中h指手部的人体测量指标)预测了用于移动物体的握姿。研究结果表明,关于动态比例关系的信息是通过视觉获取的,并在手 - 臂复合体协调抓握握姿时组织其多个自由度。