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Lower limb mechanics during moderate high-heel jogging and running in different experienced wearers

机译:不同经验的佩戴者在中等高跟慢跑和跑步过程中的下肢力学

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The aim of this study is to investigate the differences in lower limb kinematics and kinetics between experienced (EW) and inexperienced (IEW) moderate high-heel wearers during jogging and running. Eleven experienced female wearers of moderate high-heel shoes and eleven matched controls participated in jogging and running tests. A Vicon motion analysis system was used to capture kinematic data and a Kistler force platform was used to collect ground reaction force (GRF). There were no significant differences in jogging and running speed respectively. Compared with IEW, EW adopted larger stride length (SL) with lower stride frequency (SF) at each corresponding speed. During running, EW enlarged SL significantly while IEW increased both SL and SF significantly. Kinematic data showed that IEW had generally larger joint range of motion (ROM) and peak angles during stance phase. Speed effect was not obvious within IEW. EW exhibited a significantly increased maximal vertical GRF (F-z2) and vertical average loading rate (VALR) during running, which was potentially caused by overlong stride. These suggest that both EW and IEW are at high risk of joint injuries when running on moderate high heels. For wearers who have to do some running on moderate high heels, it is crucial to control joint stability and balance SL and SF consciously. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究的目的是调查有经验的(EW)和没有经验的(IEW)中高跟鞋使用者在慢跑和跑步过程中下肢运动学和动力学的差异。 11名经验丰富的女性穿着适中的高跟鞋和11个相配的控件参加了慢跑和跑步测试。使用Vicon运动分析系统捕获运动学数据,并使用奇石乐力平台收集地面反作用力(GRF)。慢跑和跑步速度分别没有显着差异。与IEW相比,EW在每个相应速度下采用较大的步长(SL),而采用较低的步幅频率(SF)。跑步期间,EW显着增大了SL,而IEW显着增大了SL和SF。运动学数据表明,在站立阶段,IEW通常具有较大的关节活动范围(ROM)和峰值角度。在IEW中,速度影响并不明显。 EW在跑步过程中表现出最大垂直GRF(F-z2)和垂直平均负荷率(VALR)明显增加,这可能是由于过长的步幅所致。这些表明,当穿着中等高跟鞋跑步时,EW和IEW都有很高的关节受伤风险。对于必须在中等高跟鞋上跑步的穿着者,至关重要的是控制关节的稳定性并自觉地平衡SL和SF。 (C)2016 Elsevier B.V.保留所有权利。

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