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首页> 外文期刊>Journal of Biomechanics >Biomechanical analysis of the stance phase during barefoot and shod running.
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Biomechanical analysis of the stance phase during barefoot and shod running.

机译:赤脚和粗跟跑步过程中站立阶段的生物力学分析。

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摘要

This study investigated spatio-temporal variables, ground reaction forces and sagittal and frontal plane kinematics during the stance phase of nine trained subjects running barefoot and shod at three different velocities (3.5, 4.5, 5.5 m s(-1)). Differences between conditions were detected with the general linear method (factorial model). Barefoot running is characterized by a significantly larger external loading rate than the shod condition. The flatter foot placement at touchdown is prepared in free flight, implying an actively induced adaptation strategy. In the barefoot condition, plantar pressure measurements reveal a flatter foot placement to correlate with lower peak heel pressures. Therefore, it is assumed that runners adopt this different touchdown geometry in barefoot running in an attempt to limit the local pressure underneath the heel. A significantly higher leg stiffness during the stance phase was found for the barefoot condition. The sagittal kinematic adaptations between conditions were found in the same way for all subjects and at the three running velocities. However, large individual variations were observed between the runners for the rearfoot kinematics.
机译:这项研究调查了9位受过训练的受试者以三种不同速度(3.5、4.5、5.5 m s(-1))赤脚和发条站立的姿态阶段的时空变量,地面反作用力以及矢状面和额叶面运动学。使用通用线性方法(阶乘模型)检测条件之间的差异。赤脚跑步的特点是外部负重率明显高于护腿状态。着陆时脚的平坦放置是在自由飞行中准备的,这意味着积极地采用了适应策略。在赤脚状态下,足底压力测量显示脚的放置更平整,以与较低的峰值后跟压力相关。因此,假设跑步者在赤脚跑步中采用这种不同的着陆几何形状,以试图限制脚跟下方的局部压力。对于赤脚状态,在站立阶段发现腿部僵硬度明显更高。对于所有受试者,在三个行驶速度下,条件之间的矢状运动学适应性均以相同的方式发现。但是,在后脚运动学上,跑步者之间观察到了很大的个体差异。

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