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Mechanical Properties of Treadmill Surfaces Compared to Other Overground Sport Surfaces

机译:与其他地下运动表面相比跑步机表面的机械性能

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摘要

The mechanical properties of the surfaces used for exercising can affect sports performance and injury risk. However, the mechanical properties of treadmill surfaces remain largely unknown. The aim of this study was, therefore, to assess the shock absorption (SA), vertical deformation (VD) and energy restitution (ER) of different treadmill models and to compare them with those of other sport surfaces. A total of 77 treadmills, 30 artificial turf pitches and 30 athletics tracks were assessed using an advanced artificial athlete device. Differences in the mechanical properties between the surfaces and treadmill models were evaluated using a repeated-measures ANOVA. The treadmills were found to exhibit the highest SA of all the surfaces (64.2 ± 2; < 0.01; effect size (ES) = 0.96), while their VD (7.6 ± 1.3; < 0.01; ES = 0.87) and ER (45 ± 11; < 0.01; ES = 0.51) were between the VDs of the artificial turf and track. The SA ( < 0.01; ES = 0.69), VD ( < 0.01; ES = 0.90) and ER ( < 0.01; ES = 0.89) were also shown to differ between treadmill models. The differences between the treadmills commonly used in fitness centers were much lower than differences between the treadmills and track surfaces, but they were sometimes larger than the differences with artificial turf. The treadmills used in clinical practice and research were shown to exhibit widely varying mechanical properties. The results of this study demonstrate that the mechanical properties (SA, VD and ER) of treadmill surfaces differ significantly from those of overground sport surfaces such as artificial turf and athletics track surfaces but also asphalt or concrete. These different mechanical properties of treadmills may affect treadmill running performance, injury risk and the generalizability of research performed on treadmills to overground locomotion.
机译:用于锻炼的表面的机械性能会影响运动性能和伤害风险。然而,跑步机表面的机械性能仍然很大程度上是未知的。因此,本研究的目的是评估不同跑步机模型的减震(SA),垂直变形(vd)和能量恢复(ER),并将它们与其他运动表面的比较。使用先进的人工运动员设备评估了总共77个跑步机,30个人造草皮球场和30个田径轨道。使用重复测量Anova评估表面和跑步机模型之间的机械性能的差异。发现跑步机表现出所有表面的最高SA(64.2±2; <0.01;效果大小(ES)= 0.96),而其VD(7.6±1.3; <0.01; ES = 0.87)和ER(45± 11; <0.01; ES = 0.51)在人工草皮和轨道的VDS之间。 SA(<0.01; ES = 0.69),VD(<0.01; ES = 0.90)和ER(<0.01; ES = 0.89),在跑步机模型之间有所不同。健身中心常用的跑步机之间的差异远低于跑步机和轨道表面之间的差异,但它们有时比与人造草皮的差异大。临床实践和研究中使用的跑步机显示出具有广泛改变的机械性能。本研究结果表明,跑步机表面的机械性能(SA,VD和ER)显着不同于人造草皮和田径轨道表面,也有沥青或混凝土。跑步机的这些不同的机械性能可能会影响跑步机运行的性能,伤害风险以及在跑步机上进行研​​究的普遍性,以满足地点。

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