首页> 外文会议>ASME international mechanical engineering congress and exposition >A SUBJECT SPECIFIC KINEMATIC AND KINETIC RELATIONSHIP DURING A SINGLE-LEG DROP LANDING
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A SUBJECT SPECIFIC KINEMATIC AND KINETIC RELATIONSHIP DURING A SINGLE-LEG DROP LANDING

机译:单腿降落过程中的特定运动学和运动学关系

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A single-leg landing is a common type of high-risk maneuver performed by athletes. The majority of anterior cruciate ligament injury is accounted for by non-contact mechanisms, such as single-leg landings. The purpose of this study was to develop a subject specific single-leg drop landing to analyze the kinematics and kinetics of two different types of landings. Kinematic data was analyzed at five points during the landing phase: initial contact (IC), peak vertical ground reaction force (pVGRF), peak joint reaction force (pJRF), maximum knee flexion (MKF), and maximum valgus angle (MFP). A linear relationship was noted in comparing the average maximum peak vertical ground reaction force, average maximum knee flexion, and average maximum valgus angle to the platform heights in both landing styles. An increase in platform height was directly related to increased knee valgus angle in both landing styles. Significant difference (p < 0.05) was noted in the peak vertical ground reaction force between the 60% and 80% platform heights, as well as between 60% and 100% with arms above. Landing with arms across the body yielded more significant difference (p < 0.05) between platform heights in both frontal and sagittal planes. However, comparing both landing styles to each other only yielded significant difference (p < 0.05) at the 100% platform height. A valgus-varus-valgus movement was observed in all landings, and is a probable contributor to single-leg landing ACL ruptures.
机译:单腿着陆是运动员进行的高风险动作的一种常见类型。前交叉韧带损伤的大部分是由非接触性机制引起的,例如单腿着陆。这项研究的目的是开发特定于主题的单腿下降着陆,以分析两种不同类型着陆的运动学和动力学。在着陆阶段的五个点分析了运动学数据:初始接触(IC),峰值地面反作用力(pVGRF),峰值关节反作用力(pJRF),最大膝关节屈曲(MKF)和最大外翻角(MFP)。在比较两种着陆方式中,平均最大峰值垂直地面反作用力,平均最大膝盖弯曲度和平均最大外翻角度与平台高度之间存在线性关系。在两种着陆方式中,平台高度的增加都与膝外翻角度的增加直接相关。在平台高度的60%和80%之间以及臂上方的60%和100%之间,峰值垂直地面反作用力之间存在显着差异(p <0.05)。手臂越过身体着陆在额面和矢状面的平台高度之间产生了更大的差异(p <0.05)。但是,将两种着陆方式相互比较只会在平台高度为100%时产生显着差异(p <0.05)。在所有着陆中均观察到外翻-外翻-外翻运动,这可能是单腿着陆ACL破裂的原因。

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