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Evaluation of Accelerometer-Derived Data in the Context of Cycling Cadence and Saddle Height Changes in Triathlon

机译:在循环节奏和鞍形高度变化中的加速度计衍生数据的评估三思三项

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摘要

In the multisport of triathlon cycling is the longest of the three sequential disciplines. Triathlon bicycles differ from road bicycles with steeper seat tube angles with a change to saddle height altering the seat tube angle. This study evaluated the effectiveness of a tri axial accelerometer to determine acceleration magnitudes of the trunk in outdoor cycling in two saddle positions. Interpretation of data was evaluated based on cadence changes whilst triathletes cycled in an aerodynamic position in two saddle positions. The evaluation of accelerometer derived data within a characteristic overground setting suggests a significant reduction in mediolateral acceleration of the trunk, yielding a 25.1% decrease when saddle height was altered alongside reduced rate of perceived exertion (3.9%). Minimal differences were observed in anteroposterior and longitudinal acceleration. Evaluation of sensor data revealed a polynomial expression of the subtle changes between both saddle positions. This study shows that a triaxial accelerometer has capability to continuously measure acceleration magnitude of trunk movements during an in-the-field, varied cadence cycle protocol. Accessible and practical sensor technology could be relevant for postural considerations when exploring saddle position in dynamic settings.
机译:在铁人三项循环的多个运动中是三个连续学科中最长的。自行车自行车与道路自行车不同,带有陡峭的座管角度,随着鞍座高度而改变座椅角度。该研究评估了TRI轴向加速度计的有效性,以确定两个鞍座位置的室外循环中躯干的加速大小。基于Cadence改变评估数据的解释,同时在两个鞍座位置的空气动力学位置循环。在特征范围内的加速度计衍生数据的评价表明躯干的中源性加速度显着降低,当鞍座高度随着感知的劳动速率和3.9%)的降低而改变时,减少了25.1%。在前后剂量和纵向加速度中观察到最小差异。传感器数据的评估显示了两个鞍座位置之间的微妙变化的多项式表达。该研究表明,三轴加速度计具有在现场恒定的变化周期协议期间连续测量躯干运动的加速度幅度的能力。可访问和实用的传感器技术可能与探索动态设置中的骑马位置时的姿势考虑。

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