Changes in Race Performance During the Underwater Phases of a 200 m Bi-Fins Race Simulation After Application of Respiratory Muscle Training-A Case Study in the Current World Record Holder.

IF 2.2 Q2 SPORT SCIENCES
Sports Pub Date : 2024-11-12 DOI:10.3390/sports12110306
Tomáš Michalica, Jakub Březina, Marek Polach, Dennis-Peter Born, Jiří Mališ, Zbyněk Svozil, Eva Kociánová
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Abstract

Maximal athletic performance can be limited by various factors, including restricted respiratory function. These limitations can be mitigated through targeted respiratory muscle training, as supported by numerous studies. However, the full potential of respiratory training in competitive finswimming has not been fully investigated. This case study aims to evaluate the effects of eight-week respiratory muscle training (RMT) on performance variability during the underwater phases of a 200 m bi-fins race simulation in an elite finswimmer (current world record holder and multiple world championship medalist). Performance variability was assessed based on pre-test, inter-test, and post-test data. Each measurement included pulmonary function and swim performance evaluations. In this study, underwater performance parameters, such as distance, time, velocity, and number of kicks, were assessed using video analysis synchronized with race timing and evaluated using the Dartfish software. The swimmer followed a 28-day training program with an Airofit PRO™ respiratory trainer between tests, with daily sessions targeting both inspiratory and expiratory muscles. The training involved 6-10 min of targeted exercises per day. Significant improvements were observed in Wilcoxon's paired-sample test between the pre-test and post-test results in terms of underwater distance (p = 0.012; d = 1.26), underwater time (p = 0.012; d = 1.26), and number of underwater kicks (p = 0.043; d = 1.01), resulting in a 14.23% longer underwater distance, 14.08% longer underwater time, and 14.94% increase in underwater kicks. Despite the increased distance and time, underwater velocity remained stable, indicating improved underwater performance efficiency. Despite some improvements, it is not possible to conclude that respiratory muscle training (RMT) can contribute to improved finswimming performance during the underwater phases of a 200 m bi-fins race simulation in this particular athlete's case. Further research with a larger sample size is necessary to fully understand the impact of RMT on finswimming performance.

应用呼吸肌训练后模拟 200 米双蹼泳比赛水下阶段比赛成绩的变化--当前世界纪录保持者的案例研究。
包括呼吸功能受限在内的各种因素会限制运动成绩的最大发挥。这些限制可以通过有针对性的呼吸肌训练来缓解,这一点已得到大量研究的支持。然而,呼吸训练在竞技蹼泳中的全部潜力尚未得到充分研究。本案例研究旨在评估为期八周的呼吸肌训练(RMT)对一名精英蹼泳运动员(现世界纪录保持者和多次世界锦标赛奖牌获得者)在模拟 200 米双蹼泳比赛水下阶段的成绩变异性的影响。成绩变异性根据测试前、测试间和测试后的数据进行评估。每次测量都包括肺功能和游泳成绩评估。在这项研究中,水下成绩参数,如距离、时间、速度和踢腿次数,是通过与比赛计时同步的视频分析进行评估的,并使用 Dartfish 软件进行评估。在两次测试之间,游泳运动员使用 Airofit PRO™ 呼吸训练器进行了为期 28 天的训练,每天的训练都针对吸气和呼气肌肉。训练每天进行 6-10 分钟的针对性练习。通过 Wilcoxon 配对抽样检验,测试前和测试后的结果在水下距离(p = 0.012;d = 1.26)、水下时间(p = 0.012;d = 1.26)和水下踢腿次数(p = 0.043;d = 1.01)方面均有明显改善,水下距离延长了 14.23%,水下时间延长了 14.08%,水下踢腿次数增加了 14.94%。尽管距离和时间增加了,但水下速度保持稳定,表明水下性能效率有所提高。尽管取得了一些进步,但就该运动员而言,还不能断定呼吸肌训练(RMT)有助于在 200 米双鳍模拟比赛的水下阶段提高蹼泳成绩。要想充分了解呼吸肌训练对泳绩的影响,有必要进行样本量更大的进一步研究。
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
Sports
Sports SPORT SCIENCES-
CiteScore
4.10
自引率
7.40%
发文量
167
审稿时长
11 weeks
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