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年龄组游泳运动员仰泳转蛙泳过渡技术的生物力学特征

Biomechanical Features of Backstroke to Breaststroke Transition Techniques in Age-Group Swimmers.

作者信息

Chainok Phornpot, de Jesus Karla, Mourão Luis, Fonseca Pedro Filipe Pereira, Zacca Rodrigo, Fernandes Ricardo J, Vilas-Boas João Paulo

机构信息

Faculty of Sport Science, Burapha University, Mueang, Thailand.

Centre of Research, Education, Innovation and Intervention in Sport (CIFI2D), Faculty of Sport, University of Porto, Porto, Portugal.

出版信息

Front Sports Act Living. 2022 Mar 10;4:802967. doi: 10.3389/fspor.2022.802967. eCollection 2022.

Abstract

This study aimed to identify the biomechanical features of backstroke to breaststroke transition techniques (, and ) in age-group swimmers. Eighteen preadolescent swimmers (12.2 ± 0.4 years old and 3-4 Tanner stages) underwent 4 weeks of systematic contextual interference training, comprising 16 sessions (40 min·session). Soon after, experimental testing was conducted where swimmers randomly performed 12 × 15 m maximal turns (composed of 7.5 m turn-in and 7.5 m turn-out of the wall segments), three in each transition technique. Kinematical, kinetic, and hydrodynamic variables were assessed with a dual-media motion capture system (12 land and 11 underwater cameras), triaxial underwater force plates, and inverse dynamics. Variables were grouped in turn-in (approach and rotation) and turn-out (wall contact, gliding, and pull-out) phases, with factor analysis used to select the variables entering on multiple regressions. For the turn-in phase, 86, 77, 89, and 87% of the variance for , and turning techniques, respectively, was accounted by the 7.5 and 2.5 m times, mean stroke length, and rotation time. For the turn-out phase, first gliding distance and time, second gliding depth, turn-out time, and dominating peak_Z push-off force accounted for 93% in open turn, while wall contact time, first gliding distance, breakout distance and time, turn-out time, dominating peak_Y push-off force, and second gliding drag coefficient accounted for 92% in a somersault turn. The foot plant index, push-off velocity, second gliding distance, and turn-out time accounted for 92% in bucket turn while breakout and turn-out time, non-dominating peak_Y and peak_Z push-off force, first and second gliding drag force and second gliding drag coefficient accounted for 90% in crossover turn, respectively. The findings in this study were novel and provided relevant biomechanical contribution, focusing on the key kinematic-temporal determinant during turn-in, rotation, and push-off efficacy, and the kinetic and hydrodynamic during turn-out, which would lead to improved backstroke to breaststroke transition techniques in 11-13 years-old age-group swimmers.

摘要

本研究旨在确定年龄组游泳运动员仰泳转蛙泳过渡技术(及)的生物力学特征。18名青春期前游泳运动员(12.2±0.4岁,坦纳发育阶段为3 - 4期)接受了为期4周的系统性情境干扰训练,共16节课程(每节40分钟)。此后不久,进行了实验测试,游泳运动员随机进行12次15米的最大转身(由7.5米的入水转身和7.5米的出水转身壁段组成),每种过渡技术各进行三次。使用双介质运动捕捉系统(12台陆地摄像机和11台水下摄像机)、三轴水下测力板和逆动力学来评估运动学、动力学和流体动力学变量。变量被分为入水阶段(接近和旋转)和出水阶段(壁面接触、滑行和蹬离),并使用因子分析来选择进入多元回归的变量。对于入水阶段,、和转身技术的方差分别有86%、77%、89%和87%可由7.5米和2.5米时间、平均划水长度以及旋转时间来解释。对于出水阶段,在开放式转身后,首次滑行距离和时间、第二次滑行深度、出水时间以及主导的蹬离力峰值Z占93%,而在翻滚转身后,壁面接触时间、首次滑行距离、突破距离和时间、出水时间、主导的蹬离力峰值Y以及第二次滑行阻力系数占92%。在桶式转身后,脚触地指数、蹬离速度、第二次滑行距离和出水时间占92%,而在交叉转身后,突破和出水时间、非主导的蹬离力峰值Y和峰值Z、首次和第二次滑行阻力以及第二次滑行阻力系数分别占90%。本研究的结果具有创新性,并提供了相关的生物力学贡献,重点关注入水、旋转和蹬离效率过程中的关键运动学 - 时间决定因素,以及出水过程中的动力学和流体动力学因素,这将有助于改进11 - 13岁年龄组游泳运动员的仰泳转蛙泳过渡技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7acd/8960438/601846c06d69/fspor-04-802967-g0001.jpg

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