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Influence of saddle height and exercise intensity on pedalling asymmetries in cyclists

机译:鞍高和运动强度对骑自行车者蹬踏不对称的影响

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Pedaling asymmetries quantified during stationary cycling, when cyclist body positioning and intensity remain unchanged, may not fully reproduce the training and competition situations, in which cyclists experience different intensities and may opt for different saddle positioning aiming at power output optimization. Previous studies showed that torque and power can be asymmetric in cyclists. It is not clear whether changes in saddle height and exercise intensity may affect asymmetries. The aim of the present study was to determine pedaling asymmetries during cycling at different saddle heights and different exercise intensities. Twelve competitive cyclists performed an incremental maximal test, a constant-load (a??heavya?? intensity domain), and a Wingate test. Constant load and the Wingate tests were repeated using three different saddle heights (reference and lower or higher by 2.5% of the distance from the pubic symphysis to the ground). Crank torque was recorded throughout the pedaling cycle. Asymmetry (higher torque for the preferred limb) was found in all saddle heights (p0.05) in both intensities. Our results suggest that asymmetric cyclists present a consistent pattern regardless of small changes in the saddle height or in exercise intensity. For practical implication, cyclists producing asymmetric torque may be adapted to this condition so they are continuously exposed to asymmetric effort and overload on the lower limbs.
机译:当骑车人的身体位置和强度保持不变时,在固定自行车运动中量化的踏板不对称性可能无法完全重现训练和比赛情况,在这种情况下,骑车人会经历不同的强度,并且可能会针对功率输出优化选择不同的鞍座位置。先前的研究表明,骑自行车者的扭矩和功率可能不对称。目前尚不清楚鞍高和运动强度的变化是否会影响不对称性。本研究的目的是确定在不同的鞍座高度和不同的运动强度下骑行过程中的踏板不对称性。 12名竞技自行车手进行了最大增量测试,恒定负载(“重载”强度域)和Wingate测试。使用三个不同的鞍座高度(恒定和较低或较高的耻骨联合到地面的距离的2.5%)重复进行恒定载荷和Wingate测试。在整个踩踏过程中记录曲柄扭矩。在两种强度的所有鞍高(p0.05)中均发现不对称(首选肢体的扭矩更高)。我们的研究结果表明,无论鞍座高度或运动强度的微小变化如何,非对称骑自行车的人都呈现出一致的模式。为了实际应用,产生不对称扭矩的自行车手可能会适应这种情况,因此他们会不断受到下肢不对称作用力和过载的影响。

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