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首页> 外文期刊>Scandinavian journal of medicine & science in sports. >Lower extremity joint loading during level walking with Masai barefoot technology shoes in overweight males.
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Lower extremity joint loading during level walking with Masai barefoot technology shoes in overweight males.

机译:在超重男性中使用Masai赤脚技术鞋在水平步行过程中下肢关节负荷。

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摘要

The purpose of this study was to evaluate the effects of Masai barefoot technology (MBT) shoes on lower extremity joint loading in overweight males during level walking. Therefore, lower extremity kinematics, kinetics, and muscle electromyographic signals of the vastus lateralis (VL), biceps femoris (BF), and gastrocnemius medialis (GM) were recorded in 10 overweight males at a self-chosen walking speed with MBT shoes and conventional shoes. Selected peak joint moments, maximal joint force loading rates, mean muscle intensities, and co-activation indices of the VL/BF, as well as of the VL/GM were analyzed and compared for the two shoe conditions using paired Student's t-tests (α=0.05). Results showed that walking with MBT shoes reduced first peak knee adduction moments in overweight subjects. During midstance and terminal stance, increases in VL/GM co-activation, accompanied by increases in VL and GM (only terminal stance) intensities were found for the MBT situation. Kinetic variables analyzed to assess ankle and hip joint loading did not exhibit any statistical differences. These results suggest that using MBT shoes diminishes medial compartment loads at the knee without overloading hip or ankle joints in overweight males. However, the additional muscle loading should not be overlooked, and warrants further investigation.
机译:这项研究的目的是评估在水平行走过程中,马赛赤脚技术(MBT)鞋对超重男性下肢关节负荷的影响。因此,在10名超重男性中,使用MBT鞋和常规行走方式以自行选择的步行速度记录了股外侧肌(VL),股二头肌(BF)和腓肠肌(GM)的下肢运动学,动力学和肌肉肌电信号。鞋子。使用成对的学生t检验,分析并比较了VL / BF以及VL / GM的选定峰值关节力矩,最大关节力量负荷率,平均肌肉强度和共同激活指数,并比较了两种鞋的状况( α= 0.05)。结果显示,MBT鞋行走可减少超重受试者的第一个峰值膝盖内收瞬间。在中间态和终态时,对于MBT情况,发现VL / GM共激活增加,同时VL和GM(仅终态)强度增加。分析以评估踝关节和髋关节负荷的动力学变量未显示任何统计学差异。这些结果表明,在超重男性中,使用MBT鞋子可减轻膝盖的内侧隔室负荷,而不会使臀部或踝关节超负荷。但是,不应忽视额外的肌肉负荷,因此有必要进行进一步的研究。

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