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Effects of Various Midsole Densities of Basketball Shoes on Impact Attenuation During Landing Activities

机译:篮球鞋各种鞋底夹层密度对着陆过程中冲击衰减的影响

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The purpose of this study was to examine effects of shoe midsole densities and mechanical demands (landing heights) on impact shock attenuation and lower extremity biomechanics during a landing activity. Nine healthy male college athletes performed 5 trials of step-off landing in each of 9 test conditions, i.e., a combination of landings in shoes of 3 midsole densities (soft, normal, hard) from each of 3 landing potential energy (PE) levels (low, median, high). Ground reaction forces (GRF), accelerations (ACC) of the tibia and forehead, and sagittal kinematic data were sampled simultaneously. A 3 x 3 two-way (surface x height) repeated-measures analysis of variance (ANOVA) was performed on selected kinematic, ACC, and GRF variables; a 3 x 3 x 3 three-way (surface x height x joint) ANOVA was performed on variables related to eccentric muscular work. The GRF results showed that the forefoot peak GRF in the normal and hard midsoles was significantly greater than the soft midsole at the low and median PEs. Rearfoot peak GRF was significantly greater for the hard midsole than for the soft and normal midsoles at the median and high PEs, respectively. The peak head and tibia peak ACC were also attenuated in similar fashion. Kinematic variables did not vary significantly across different midsoles, nor did energy absorbed through lower extremity extensors in response to the increased shoe stiffness. Knee joint extensors were shown to be dominant in attenuating the forefoot impact force across the landing heights. The results showed limited evidence of impact-attenuating benefits of the soft midsole in the basketball shoes.
机译:这项研究的目的是检查着陆活动过程中鞋底夹层密度和机械要求(着陆高度)对冲击减震和下肢生物力学的影响。九名健康的男性大学运动员在9个测试条件中的每个条件下进行了5次离地着陆的试验,即,从3种着陆势能(PE)水平中的每一种中,3种中底密度(软,中,硬)的鞋着陆的组合(低,中位数,高)。同时采集地面反作用力(GRF),胫骨和前额的加速度(ACC)以及矢状运动学数据。对选定的运动学,ACC和GRF变量进行了3 x 3双向(表面x高度)方差重复测量分析(ANOVA);在与偏心肌肉工作有关的变量上进行3 x 3 x 3三向(表面x高度x关节)ANOVA。 GRF结果显示,正常和坚硬中底的前脚峰值GRF显着大于中低PE的软中底。硬鞋底夹层的后脚峰值GRF显着大于中高PE的软鞋底和正常中底。峰头和胫骨峰ACC也以类似方式衰减。运动学变量在不同的中底之间没有显着变化,响应鞋的刚度增加,下肢伸肌吸收的能量也没有变化。膝关节伸肌被证明在降低着陆高度上前脚的冲击力中起主导作用。结果表明,有限的证据表明软质中底在篮球鞋中具有减震作用。

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