University School of Physical Education in Wroclaw, Poland, Department of Swimming.
J Hum Kinet. 2014 Jul 8;41:143-54. doi: 10.2478/hukin-2014-0042. eCollection 2014 Jun 28.
The present research attempts to ascertain the impact of immediate verbal feedback (IVF) on modifications of stroke length (SL). In all swimming styles, stroke length is considered an essential kinematic parameter of the swimming cycle. It is important for swimming mechanics and energetics. If SL shortens while the stroke rate (SR) remains unchanged or decreases, the temporal-spatial structure of swimming is considered erroneous. It results in a lower swimming velocity. Our research included 64 subjects, who were divided into two groups: the experimental - E (n=32) and the control - C (n=32) groups. A pretest and a post-test were conducted. The subjects swam the front crawl over the test distance of 25m at Vmax. Only the E group subjects were provided with IVF aiming to increase their SL. All tests were filmed by two cameras (50 samples•s-1). The kinematic parameters of the swimming cycle were analyzed using the SIMI Reality Motion Systems 2D software (SIMI Reality Motion Systems 2D GmbH, Germany). The movement analysis allowed to determine the average horizontal swimming velocity over 15 meters. The repeated measures analysis of variance ANOVA with a post-hoc Tukey range test demonstrated statistically significant (p<0.05) differences between the two groups in terms of SL and swimming velocity. IVF brought about a 6.93% (Simi method) and a 5.09% (Hay method) increase in SL, as well as a 2.92% increase in swimming velocity.
本研究旨在确定即时口头反馈(IVF)对泳姿划幅(SL)改变的影响。在所有泳姿中,划幅都是游泳周期的一个重要运动学参数。它对游泳力学和能量学都很重要。如果在划频不变或降低的情况下,划幅缩短,游泳的时空结构就被认为是错误的。这会导致游泳速度降低。
我们的研究包括 64 名受试者,分为实验组(E 组,n=32)和对照组(C 组,n=32)。进行了预测试和后测试。受试者以 Vmax 在测试距离 25 米处游自由泳。只有 E 组的受试者接受了旨在增加其划幅的 IVF。所有测试均由两台摄像机拍摄(50 个样本•s-1)。游泳周期的运动学参数使用 SIMI Reality Motion Systems 2D 软件(SIMI Reality Motion Systems 2D GmbH,德国)进行分析。采用重复测量方差分析(ANOVA)和事后 Tukey 范围检验,对两组的 SL 和游泳速度进行了统计学分析。IVF 使 SL 分别增加了 6.93%(Simi 方法)和 5.09%(Hay 方法),游泳速度也提高了 2.92%。