Universidade Federal do Parana.
Universidade de Brasília.
Res Q Exerc Sport. 2020 Dec;91(4):574-582. doi: 10.1080/02701367.2019.1693011. Epub 2020 Jan 24.
: The aim of this study was to determine changes in swimming parameters, stroke coordination, and symmetry after repeated high-intensity swimming efforts in swimmers of different performance levels and para-swimmers. : Forty swimmers (20 able-bodied, allocated to higher and lower performance groups-G1 and G2, respectively-and 20 impaired swimmers-S5 to S10) were recorded by four underwater cameras while performing repeated 50 m maximum front-crawl swimming with a ten-second interval for each time endured by the swimmer. A cycle stroke was digitized using SIMI Reality Motion Systems in the first and last trials to analyze the kinematic parameters. The comparison among groups and conditions was performed by Mixed ANOVA Models with < .05. : For all groups, swimming velocity, stroke rate, and stroke index showed reduction over time, while stroke length and intracyclic velocity variation did not show significant changes. : Training to maintain stroke rate is necessary to support performance since it is the main cause of velocity decrease. Stroke dimensions and individual underwater phases were not sufficient to distinguish groups or conditions. Hand velocity decreased probably due to a decline in energy capacity, propulsive force and passive drag caused by the fatigue process.
本研究旨在确定不同运动水平的游泳运动员和残障游泳运动员在重复高强度游泳后,游泳参数、划水协调和对称性的变化。
40 名游泳运动员(20 名健全人,分别分配到高绩效组和低绩效组-G1 和 G2-以及 20 名残障游泳运动员 S5 至 S10)在进行重复的 50 米最大蛙泳时,每 10 秒由四台水下摄像机进行记录由游泳运动员承受的时间。在第一和最后一次试验中,使用 SIMI Reality Motion Systems 对周期性划水进行数字化,以分析运动学参数。通过混合方差分析模型对组间和条件间进行比较, <.05。
对于所有组,游泳速度、划频和划距都随时间减少,而划长和周期内速度变化没有显著变化。
训练以维持划频对于支持运动表现是必要的,因为这是速度下降的主要原因。划水的维度和个体水下阶段不足以区分组或条件。手速的下降可能是由于能量能力、推进力和疲劳过程中产生的被动阻力下降所致。