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坐姿推铅球的动力学:握杆优化的案例研究示例

The dynamics of seated shot put: a case study example of pole grip optimisation.

作者信息

Holdback Connor J, Ibrahim Rony, Haydon David S, Grimshaw Paul, Kelso Richard, Pinder Ross A

机构信息

School of Electrical and Mechanical Engineering, University of Adelaide, SA, Australia.

College of Sport Sciences, Qatar University, Doha, Qatar.

出版信息

Front Sports Act Living. 2025 Jan 20;7:1509435. doi: 10.3389/fspor.2025.1509435. eCollection 2025.

Abstract

The impact of pole position in seated shot put has been a key research question both in the previous literature and for coaches in the field. The aims of this research were to understand the dynamics of seated shot put and to investigate the impact of changing pole grip height on trunk parameters. Three grip heights are compared: the athlete's standard grip, 75 mm higher than standard, and 75 mm lower than standard, to determine which grip produced greater angular velocity and power at the trunk. In addition, a post-analysis intervention was implemented following this investigation where the athlete completed four weeks of training (8 sessions) with a grip height that was indicated to be superior. The trunk was found to provide the largest contribution to the movement, with a 64% of the total velocity contribution. A lower grip height was found to generate greater power and velocity in trunk rotation and flexion when compared to higher grip heights. When assessed over the intervention period, the lower grip height showed an increased rate of improvement throughout, and a performance advantage over the standard grip after just four sessions. This research demonstrates that pole grip height can impact athlete biomechanical parameters and may improve overall performance given sufficient time.

摘要

在坐姿推铅球中,握杆位置的影响一直是以往文献以及该领域教练关注的关键研究问题。本研究的目的是了解坐姿推铅球的动力学原理,并研究改变握杆高度对躯干参数的影响。比较了三种握杆高度:运动员的标准握杆高度、比标准高75毫米以及比标准低75毫米,以确定哪种握杆方式能在躯干产生更大的角速度和力量。此外,在本次调查之后实施了一项分析后干预措施,运动员采用被指出更优的握杆高度进行了四周的训练(8次训练课)。研究发现,躯干对运动的贡献最大,占总速度贡献的64%。与较高握杆高度相比,较低的握杆高度在躯干旋转和屈伸时能产生更大的力量和速度。在干预期间进行评估时,较低的握杆高度在整个过程中显示出更高的提高率,并且仅在四次训练课后就比标准握杆表现出优势。这项研究表明,握杆高度会影响运动员的生物力学参数,并在给予足够时间的情况下可能提高整体表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2040/11788405/543cf2c16a35/fspor-07-1509435-g001.jpg

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