The relationship between back handspring step out performance and take-off technique in female gymnasts.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-09-12 DOI:10.1080/14763141.2024.2392129
Gabriella H Small,Richard R Neptune
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Abstract

Although the back handspring step out (BHS) is a foundational skill in balance beam routines, it can be performed using different take-off techniques. Back injuries are highly prevalent in the BHS due to the combination of high spine extension and joint loading. However, it is unclear which technique minimises injury risk or leads to better BHS performance. The purpose of the study was to identify techniques used for the BHS take-off and analyse the resulting BHS performance. Gymnasts were found to use either: Simultaneous Flexion-trunk and knees flex at the same time; Sequential Flexion-trunk reaches its maximum flexion followed by knee flexion; or Double-Bounce-knees and trunk both flex and then the knees extend and flex again. To assess performance, point deductions were calculated, and dynamic balance, ground reaction forces (GRFs) and relevant joint angles were analysed. The techniques had no differences in point deductions or dynamic balance, but there were differences in GRFs, spine extension and knee flexion. The Sequential Flexion technique had the lowest spine extension, which potentially reduces back injuries and the lowest knee flexion, which is a BHS requirement. These results support the use of Sequential Flexion technique when performing the BHS.
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女子体操运动员后手翻跨出成绩与起飞技术之间的关系。
尽管后手翻跨出(BHS)是平衡木套路中的一项基础技能,但它可以使用不同的起跳技术来完成。由于脊柱高度伸展和关节负荷的共同作用,后手翻跨步时背部受伤的情况非常普遍。然而,目前还不清楚哪种技术能最大限度地降低受伤风险或提高平衡木障碍的成绩。这项研究的目的是确定体操单杠起跳时使用的技术,并分析由此产生的体操单杠成绩。研究发现,体操运动员使用了以下两种技术:同时屈膝--躯干和膝关节同时屈曲;顺序屈膝--躯干达到最大屈曲后膝关节再屈曲;或双弹--膝关节和躯干同时屈曲,然后膝关节伸展再屈曲。为了评估成绩,计算了扣分,并分析了动态平衡、地面反作用力和相关关节角度。两种技术在扣分和动态平衡方面没有差异,但在地面反作用力、脊柱伸展和膝关节屈曲方面存在差异。顺序屈伸技术的脊柱伸展角度最小,这有可能减少背部受伤,而膝关节屈曲角度最小,这也是英国健康标准的要求。这些结果支持在进行 BHS 时使用顺序屈伸技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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