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首页> 外文期刊>Journal of Biomechanics >A reduction of the saddle vertical force triggers the sit-stand transition in cycling
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A reduction of the saddle vertical force triggers the sit-stand transition in cycling

机译:鞍座垂直力的减小会触发骑行中的坐立式转换

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The purpose of the study was to establish the link between the saddle vertical force and its determinants in order to establish the strategies that could trigger the sit-stand transition. We hypothesized that the minimum saddle vertical force would be a critical parameter influencing the sit-stand transition during cycling. Twenty-five non-cyclists were asked to pedal at six different power outputs from 20% (1.6 +/- 0.3 W kg(-1)) to 120% (9.6 +/- 1.6 W kg(-1)) of their spontaneous sit-stand transition power obtained at 90 rpm. Five 6-component sensors (saddle tube, pedals and handlebars) and a full-body kinematic reconstruction were used to provide the saddle vertical force and other force components (trunk inertial force, hips and shoulders reaction forces, and trunk weight) linked to the saddle vertical force. Minimum saddle vertical force linearly decreased with power output by 87% from a static position on the bicycle (5.30 +/- 0.50 N kg(-1)) to power output= 120% of the sit-stand transition power (0.68 +/- 0.49 N kg(-1)). This decrease was mainly explained by the increase in instantaneous pedal forces from 2.84 +/- 0.58 N kg(-1) to 6.57 +/- 1.02 N kg(-1) from 20% to 120% of the power output corresponding to the sit-stand transition, causing an increase in hip vertical forces from -0.17 N kg(-1) to 3.29 N kg(-1). The emergence of strategies aiming at counteracting the elevation of the trunk (handlebars and pedals pulling) coincided with the spontaneous sit-stand transition power. The present data suggest that the large decrease in minimum saddle vertical force observed at high pedal reaction forces might trigger the sit-stand transition in cycling. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是建立鞍座垂直力与其决定因素之间的联系,以便建立可能触发坐立两用过渡的策略。我们假设最小的鞍座垂直力将是影响骑行过程中坐立式过渡的关键参数。 25名非骑自行车者被要求踩踏六种不同的动力输出,使其自发力的20%(1.6 +/- 0.3 W kg(-1))增至120%(9.6 +/- 1.6 W kg(-1))在90 rpm时获得的坐立转换功率五个6分量传感器(鞍管,踏板和车把)和全身运动学重建用于提供鞍形垂直力和其他与分力相关的力分量(躯干惯性力,臀部和肩膀的反作用力以及躯干重量)。鞍座垂直力。最小鞍座垂直力随着功率输出从自行车上的静态位置(5.30 +/- 0.50 N kg(-1))线性降低87%,到功率输出=坐姿过渡功率的120%(0.68 +/- 0.49 N kg(-1))。这种下降的主要原因是瞬时踏板力从对应于坐姿的功率输出的20%增加到120%从2.84 +/- 0.58 N kg(-1)增加到6.57 +/- 1.02 N kg(-1)站立过渡,导致臀部垂直力从-0.17 N kg(-1)增加到3.29 N kg(-1)。旨在抵消后备箱高度(手把和踏板拉动)的策略的出现与自发的坐立两用过渡力相吻合。目前的数据表明,在高踏板反作用力下观察到的最小鞍座垂直力的大幅下降可能会触发骑行中的坐立转换。 (C)2015 Elsevier Ltd.保留所有权利。

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