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Spraino:A novel low-friction device for prevention of lateral ankle sprain injuries in indoor sports
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作者 Filip Gertz Lysdal Thor Buch Grønlykke Uwe G.Kersting 《Medicine in Novel Technology and Devices》 2022年第4期37-41,共5页
A heightened risk for lateral ankle sprain injuries has been associated with excessive shoe-surface friction.‘Spraino’is a novel product specifically designed towards preventing friction-related lateral ankle sprain... A heightened risk for lateral ankle sprain injuries has been associated with excessive shoe-surface friction.‘Spraino’is a novel product specifically designed towards preventing friction-related lateral ankle sprains.In a recent 510-athlete randomized controlled trial,allocation to this“low-friction”shoe-patch resulted in a 53%reduction of severe ankle sprain injuries.Until now,however,a theoretical explanation linking shoe-surface friction and lateral ankle sprain injury mechanism is missing,and the extent to which Spraino reduces shoesurface friction remains unknown.Therefore,the purpose of this study was to present a theoretical link between lateral edge shoe-surface friction and the mechanism of lateral ankle sprain injuries,and ultimately establish the ability of Spraino to reduce lateral edge shoe-surface friction.In this paper,we present a theory on how ankle sprain mechanics are directly affected by the friction between shoe and surface,and why friction modifications might be a viable preventive strategy.When testing slip resistance in a modified mechanical testsetup,we detected a 63%reduction(0.83–0.31)in friction coefficient between the lateral edge of the outsole and the indoor sports floor when adding Spraino to the side of the shoe.Justified in our theory,and the previously established clinical effectiveness,this reduction in friction can mitigate both the risk and severity of lateral ankle sprain injuries.This suggests that reducing friction on the lateral edge of footwear can be an effective ankle sprain injury prevention strategy. 展开更多
关键词 Sports(mesh) Lower extremity(mesh) Ankle injuries(mesh) Sprains and strains(mesh) friction(mesh) Prevention and control(mesh)
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摩擦与啮合复合传动带传动性能试验台轴系设计
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作者 胡海 李占国 《长春大学学报》 2013年第4期385-388,共4页
分析了联组窄V带传动性能试验台带轮偏斜角的影响因素,利用Solidworks simulation对初步设计的试验台轴系进行有限元分析,并通过优化设计参数使轴系弯曲变形降低了80%,确保了轴系设计的可靠性,为进一步研究摩擦与啮合复合传动带传动性... 分析了联组窄V带传动性能试验台带轮偏斜角的影响因素,利用Solidworks simulation对初步设计的试验台轴系进行有限元分析,并通过优化设计参数使轴系弯曲变形降低了80%,确保了轴系设计的可靠性,为进一步研究摩擦与啮合复合传动带传动性能试验台奠定了基础。 展开更多
关键词 摩擦与啮合复合传动带 偏斜角 有限元分析
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