Sport and Exercise Science Research Center, Swansea University, Swansea, United Kingdom.
J Strength Cond Res. 2011 Apr;25(4):950-5. doi: 10.1519/JSC.0b013e3181c8656f.
Start performance (as defined by time to 15 m) has been shown to be a key performance indicator during 50-m freestyle swimming; however, there is limited information with regard to the key strength and power variables that influence start performance during sprint swimming. In light of the above, this study aimed to examine the key strength and power predicators of start performance in 50-m freestyle swimming. Eleven male British international sprint swimmers (age 21.3 ± 1.7 years; mass 78.1 ± 11.2 kg; and height 1.8 ± 0.1 m) participated in this study. Within 1 week, swimmers performed the following tests: 3 repetition maximum (3RM) squat strength, countermovement jump (CMJ) on a portable force platform, and a measure of start time performance (time to 15 m under 50-m freestyle conditions). The start time was measured using a standard racing platform to which a portable force platform was mounted, and all starts were recorded using 2 cameras. This setup allowed for the quantification of time to 15 m, peak vertical force (PVF), and peak horizontal force (PHF). Data were analyzed using Pearson's product moment correlation with significance set at p < 0.05. Start time was significantly related to 1RM strength (r = -0.74), jump height (r = -0.69), peak (r = -0.85), and relative power (r = -0.66) (p < 0.05) but not rate of force development (r = -0.56, p > 0.05). Furthermore, lower body strength was a key determinant of jump height (r = 0.69), power (r = 0.78), PVF (r = 0.62), and PHF (r = 0.71) (p < 0.05). This study provides evidence of the importance of lower body strength and power to start time in international 50-m sprint swimmers.
启动性能(以 15 米用时定义)已被证明是 50 米自由泳的关键绩效指标;然而,关于影响短跑游泳启动性能的关键力量和功率变量的信息有限。鉴于上述情况,本研究旨在探讨 50 米自由泳中启动性能的关键力量和功率预测因子。11 名英国国际短跑游泳运动员(年龄 21.3±1.7 岁;体重 78.1±11.2 千克;身高 1.8±0.1 米)参加了这项研究。在 1 周内,运动员进行了以下测试:3 次重复最大(3RM)深蹲力量、便携式力量平台上的反向跳跃(CMJ),以及启动时间性能(50 米自由泳条件下 15 米用时)的测量。使用标准比赛平台和安装在其上的便携式力量平台来测量启动时间,所有启动均使用 2 台摄像机进行记录。这种设置允许量化 15 米用时、垂直峰值力(PVF)和水平峰值力(PHF)。数据使用 Pearson 乘积矩相关进行分析,显著性水平设为 p<0.05。启动时间与 1RM 力量(r=-0.74)、跳跃高度(r=-0.69)、峰值(r=-0.85)和相对功率(r=-0.66)(p<0.05)显著相关,但与力发展率(r=-0.56,p>0.05)不相关。此外,下肢力量是跳跃高度(r=0.69)、功率(r=0.78)、PVF(r=0.62)和 PHF(r=0.71)的关键决定因素(p<0.05)。本研究为国际 50 米短跑游泳运动员启动时间与下肢力量和功率的重要性提供了证据。