Lake M J, Lafortune M A
Liverpool John Moores University, UK.
Med Sci Sports Exerc. 1998 Jan;30(1):136-43. doi: 10.1097/00005768-199801000-00019.
Human responses to repetitive locomotor loadings are likely dependent upon the perceived severity of the impact. Few researchers have attempted to identify the mechanical variables upon which perception of impact severity is based. This study examined the relationship of selected impact loading variables to the perception of impact severity by employing an established psychophysical test procedure.
A human pendulum apparatus was used to administer and measure impact loadings similar to those encountered during running. Nineteen subjects experienced over 100 right foot impacts which comprised nine different impact conditions presented in a random manner. The conditions represented combinations of three impact velocities and three interface materials covering a force platform.
Group mean subjective ratings of impact severity were highly related to all measured biomechanical descriptors of impact severity. The variables of impact force rate of loading (FRA) and peak shank acceleration had correlation coefficients of 0.99 with perceived severity. When all individual results were combined to determine the relationship of impact loading variables to perception, correlations were generally 0.7 or above with FRA alone explaining 64% of the perceptual rating variability.
These results indicate that impact perception was highly associated with the mechanical input variables commonly measured and that midsole materials such as those typically found in athletic footwear do not remove our ability to perceive the severity of impact loads.
人类对重复性运动负荷的反应可能取决于对撞击严重程度的感知。很少有研究人员试图确定影响撞击严重程度感知的力学变量。本研究通过采用既定的心理物理学测试程序,研究了选定的撞击负荷变量与撞击严重程度感知之间的关系。
使用人体摆锤装置施加和测量类似于跑步时遇到的撞击负荷。19名受试者经历了100多次右脚撞击,这些撞击包括以随机方式呈现的九种不同撞击条件。这些条件代表了三种撞击速度和三种覆盖力平台的界面材料的组合。
撞击严重程度的组平均主观评分与所有测量的撞击严重程度的生物力学描述符高度相关。撞击力加载率(FRA)和峰值小腿加速度变量与感知严重程度的相关系数为0.99。当将所有个体结果结合起来确定撞击负荷变量与感知之间的关系时,相关性通常在0.7或以上,仅FRA就解释了64%的感知评分变异性。
这些结果表明,撞击感知与通常测量的机械输入变量高度相关,并且运动鞋中常见的中底材料不会消除我们感知撞击负荷严重程度的能力。