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Modifying landing mat material properties may decrease peak contact forces but increase forefoot forces in gymnastics landings

机译:修改着陆垫材料的性能可能会降低峰值接触力,但会增加体操着陆时的前脚力

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This study investigated how changes in the material properties of a landing mat could minimise ground reaction forces (GRF) and internal loading on a gymnast during landing. A multi-layer model of a gymnastics competition landing mat and a subject-specific seven-link wobbling mass model of a gymnast were developed to address this aim. Landing mat properties (stiffness and damping) were optimised using a Simplex algorithm to minimise GRF and internal loading. The optimisation of the landing mat parameters was characterised by minimal changes to the mat's stiffness (Â <Â 0.5%) but increased damping (272%) compared to the competition landing mat. Changes to the landing mat resulted in reduced peak vertical and horizontal GRF and reduced bone bending moments in the shank and thigh compared to a matching simulation. Peak bone bending moments within the thigh and shank were reduced by 6% from 321.5 Nm to 302.5Â Nm and GRF by 12% from 8626Â N to 7552Â N when compared to a matching simulation. The reduction in these forces may help to reduce the risk of bone fracture injury associated with a single landing and reduce the risk of a chronic injury such as a stress fracture.
机译:这项研究调查了降落垫材料特性的变化如何使降落过程中地面反作用力(GRF)和体操运动员的内部负荷最小化。为了达到这个目的,开发了体操比赛用降落垫的多层模型和体操运动员的特定主题的七连杆摆动质量模型。使用Simplex算法优化了降落垫的性能(刚度和阻尼),以最大程度地减少GRF和内部载荷。着陆垫参数的优化的特点是对垫子的刚度(<0.5%)的最小变化,但与竞争性着陆垫相比,阻尼(272%)增加了。与匹配的模拟相比,落地垫的变化导致垂直和水平GRF峰值降低,小腿和大腿的骨弯矩降低。与匹配模拟相比,大腿和小腿内的峰值骨弯矩从321.5 Nm降低到302.5 Nm,降低了6%; GRF从8626 N到7552 N,降低了12%。这些力的减小可以帮助降低与单次着陆相关的骨折损伤的风险,并降低诸如应力性骨折的慢性损伤的风险。

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