van der Zijden A M, Groen B E, Tanck E, Nienhuis B, Verdonschot N, Weerdesteyn V
Sint Maartenskliniek Research, Nijmegen, The Netherlands; Radboud University Medical Center, Orthopaedic Research Laboratory, Nijmegen, The Netherlands.
Sint Maartenskliniek Research, Nijmegen, The Netherlands.
J Biomech. 2017 Mar 21;54:19-25. doi: 10.1016/j.jbiomech.2017.01.033. Epub 2017 Jan 31.
Many research groups have studied fall impact mechanics to understand how fall severity can be reduced to prevent hip fractures. Yet, direct impact force measurements with force plates are restricted to a very limited repertoire of experimental falls. The purpose of this study was to develop a generic model for estimating hip impact forces (i.e. fall severity) in in vivo sideways falls without the use of force plates. Twelve experienced judokas performed sideways Martial Arts (MA) and Block ('natural') falls on a force plate, both with and without a mat on top. Data were analyzed to determine the hip impact force and to derive 11 selected (subject-specific and kinematic) variables. Falls from kneeling height were used to perform a stepwise regression procedure to assess the effects of these input variables and build the model. The final model includes four input variables, involving one subject-specific measure and three kinematic variables: maximum upper body deceleration, body mass, shoulder angle at the instant of 'maximum impact' and maximum hip deceleration. The results showed that estimated and measured hip impact forces were linearly related (explained variances ranging from 46 to 63%). Hip impact forces of MA falls onto the mat from a standing position (3650±916N) estimated by the final model were comparable with measured values (3698±689N), even though these data were not used for training the model. In conclusion, a generic linear regression model was developed that enables the assessment of fall severity through kinematic measures of sideways falls, without using force plates.
许多研究小组研究了跌倒冲击力学,以了解如何降低跌倒严重程度以预防髋部骨折。然而,使用测力板进行的直接冲击力测量仅限于非常有限的一系列实验性跌倒。本研究的目的是开发一种通用模型,用于在不使用测力板的情况下估计体内侧向跌倒时的髋部冲击力(即跌倒严重程度)。12名经验丰富的柔道运动员在测力板上进行了侧向武术(MA)和格挡(“自然”)跌倒,测力板上有无垫子。对数据进行分析,以确定髋部冲击力并得出11个选定的(个体特异性和运动学)变量。使用从跪姿高度的跌倒进行逐步回归程序,以评估这些输入变量的影响并建立模型。最终模型包括四个输入变量,涉及一项个体特异性测量和三个运动学变量:最大上身减速、体重、“最大冲击”瞬间的肩部角度和最大髋部减速。结果表明,估计的和测量的髋部冲击力呈线性相关(解释方差范围为46%至63%)。最终模型估计的从站立姿势MA跌倒在垫子上的髋部冲击力(3650±916N)与测量值(3698±689N)相当,尽管这些数据未用于训练模型。总之,开发了一种通用线性回归模型,该模型能够通过侧向跌倒的运动学测量来评估跌倒严重程度,而无需使用测力板。