Suppr超能文献

维持自行车骑行各姿势下有效力量施加的生物力学。

The biomechanics of maintaining effective force application across cycling positions.

机构信息

Carnegie School of Sport, Leeds Beckett University, Leeds, UK; European School of Physiotherapy, Amsterdam University of Applied Sciences, Amsterdam, NL.

Carnegie School of Sport, Leeds Beckett University, Leeds, UK.

出版信息

J Biomech. 2022 Jun;138:111103. doi: 10.1016/j.jbiomech.2022.111103. Epub 2022 Apr 25.

Abstract

Cyclists are known to change their cycling position to reduce aerodynamic drag. Research has shown that this compromises their physical capacity to perform, but there is considerable inter-individual variability present. Proposed training specificity effects by cycling position do not explain all of the observations in the literature, so a search for other influencing parameters is warranted and might help practitioners to further optimise cycling position. This study captured full-body kinematics and 2D crank forces in 19 Time-Trial (TT) and 36 Road trained cyclists. Data in preferred and standardised cycling positions were systematically evaluated and showed that, amongst other kinematic differences, TT cyclists prefer a more forwardly positioned hip joint over Road cyclists. Despite their different setup, no effects in mechanical effectiveness were seen between the groups when tested in their preferred position. Across the standardised positions, the full cohort showed lower mechanical effectiveness when lowering trunk angle. However, significant group by position interactions showed this effect to be less extreme for the TT group. Kinematic data revealed that an increased pelvic tilt resulted in increased hip flexion and induced a more dorsiflexed ankle angle. In addition, linear hip position acutely responded to positional changes by moving forwards when the trunk angle was lowered. A more forwards hip position is thus associated with maintaining a better mechanical effectiveness in aerodynamic cycling positions. This suggests that there is potential to mitigate the effect of negative crank forces in aerodynamic positions by acutely adjusting the saddle placement to facilitate linear hip movement.

摘要

自行车运动员为了减少空气动力学阻力会改变骑行姿势。研究表明,这会影响他们的身体表现能力,但个体之间存在相当大的差异。不同骑行姿势对训练的特异性影响并不能解释文献中的所有观察结果,因此有必要寻找其他影响因素,这可能有助于从业者进一步优化骑行姿势。本研究在 19 名计时赛(TT)和 36 名公路训练自行车运动员中采集了全身运动学和二维曲柄力数据。系统地评估了他们在首选和标准化骑行姿势下的数据,结果表明,除了其他运动学差异外,TT 自行车运动员的髋关节比公路自行车运动员更向前倾斜。尽管他们的设置不同,但当他们处于首选位置进行测试时,两组之间在机械效率方面没有差异。在标准化姿势中,当降低躯干角度时,整个队列的机械效率较低。然而,显著的组间位置交互作用表明,TT 组的这种影响不那么极端。运动学数据显示,骨盆倾斜度增加会导致髋关节屈曲增加,并导致踝关节背屈角度增加。此外,当降低躯干角度时,线性髋关节位置会通过向前移动来急性响应位置变化。因此,髋关节更向前的位置与在空气动力学骑行姿势中保持更好的机械效率有关。这表明,通过急性调整鞍座位置以促进线性髋关节运动,可以减轻空气动力学位置中负曲柄力的影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验