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坐姿冲刺骑行过程中自行车上身体姿势的变化:在自行车装配中的应用。

Changes in body position on the bike during seated sprint cycling: Applications to bike fitting.

机构信息

La Trobe Rural Health School, La Trobe University, Bendigo, Australia.

出版信息

Eur J Sport Sci. 2020 Feb;20(1):35-42. doi: 10.1080/17461391.2019.1610075. Epub 2019 May 4.

Abstract

Dynamic bike fitting often includes the optimisation of lower limb joint kinematics while participants undertake sub-maximal intensity cycling; however, this practice might not be appropriate for sprint cycling. This study aimed to determine if trained cyclists maintain lower limb angles, defined during dynamic sub-maximal bike fitting, while completing seated sprint cycling. Fifteen competitive cyclists completed two testing sessions. Dynamic bike fitting was undertaken during the first session, where handlebar positions were identified to produce pre-determined hip flexion angles (70°-110°) during sub-maximal cycling using an inertial-based motion tracking system. In the second session, full body kinematics were determined during two 6-s sprints performed at each of the pre-determined handlebar positions. During sprinting, measured right hip angles were only different at 110°, when compared with 90° ( < 0.01,  = 0.95), and 80° ( < 0.01,  = 1.49). For the left leg, measured hip angles differed between 110° vs. 90° ( < 0.01,  = 1.52), 110° vs. 80° ( < 0.01,  = 2.09), and 100° vs. 80° ( = 0.04,  = 1.06). Even though changes in bike configuration resulted in 10° increments of hip flexion during dynamic sub-maximal bike fitting, these hip angles were not replicated during sprinting. Therefore, dynamic sub-maximal bike fitting leading to changes in handlebar positions that produce hip angles of 80°-100° might not influence cycling performance due to acute changes in the body position of cyclists on the bicycle during a sprint.

摘要

动态自行车适配通常包括优化下肢关节运动学,同时参与者进行亚最大强度的自行车运动;然而,这种做法可能不适合短跑自行车。本研究旨在确定训练有素的自行车运动员在完成坐姿短跑自行车时是否保持动态亚最大自行车适配期间定义的下肢角度。15 名竞技自行车运动员完成了两次测试。第一次测试期间进行了动态自行车适配,使用基于惯性的运动跟踪系统确定了在亚最大自行车运动期间产生预定义髋关节屈曲角度(70°-110°)的车把位置。在第二次测试中,在每个预定义车把位置进行两次 6 秒冲刺时,确定了全身运动学。在冲刺期间,与 90°( < 0.01, = 0.95)和 80°( < 0.01, = 1.49)相比,仅在 110°时测量到的右髋关节角度不同。对于左腿,110°与 90°( < 0.01, = 1.52)、110°与 80°( < 0.01, = 2.09)和 100°与 80°( = 0.04, = 1.06)之间的髋关节角度不同。即使自行车配置的变化导致动态亚最大自行车适配期间髋关节屈曲增加 10°,这些髋关节角度在冲刺期间也无法复制。因此,动态亚最大自行车适配导致改变车把位置以产生 80°-100°的髋关节角度可能不会影响自行车运动表现,因为在冲刺期间自行车上的自行车运动员的身体位置会发生急性变化。

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