Using Wavelet Transform for Speed Fluctuation Analysis During Manikin Carry with Fins

Q3 Health Professions
Susana Soares, A. Toubekis, L. Machado, J. Vilas-Boas, R. Fernandes, J. Abraldes
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引用次数: 0

Abstract

Background : Wavelet analysis has been used to locate speed variation changes in swimmers, but this elaborated technique was not so far tested in lifesavers carrying a manikin and using one upper limb and fins for propulsion. Objective : Our purpose was to examine the feasibility of using the wavelet analysis to locate time-points of speed variation changes in a manikin carry lifesaving race using stiff and fiber fins. Method : Fourteen male lifesavers with a mean age of 20.79±4.93 years performed two 25 m all-out manikin carry swimming races using one upper limb and stiff or fiber fins for propulsion. Speed was recorded with a speedometer and its variation was analysed using a wavelet transform analysis. Video recordings were used to measure stroke rate and stroke length within each race. Results : Wavelet analysis detected, for some lifesavers, one (stiff: 10.50±1.29 vs. fiber: 9.75±0.50 s; p>0.05) and, for other lifesavers, two time-points (stiff: 6.75±0.96 and 11.50±1.29; fiber: 7.00±1.41 and 12.00±1.83 s; p>0.05) of speed variation changes. Mean speed was no different with fin types (stiff: 1.38±0.06 vs. fiber: 1.42±0.09 m∙s-1; p>0.05), as well as average, maximum and minimum speed. Stroke rate, stroke length and stroke index did not change within each race. Conclusion : Wavelet analysis was effective in detecting one and two time-points of speed variation changes within a short duration manikin carry race independently of the type of fins used. Fiber and stiff fins showed similar biomechanical and speed variations within race changes.
基于小波变换的人体带鳍运动速度波动分析
背景:小波分析已经被用来定位游泳者的速度变化,但是这种复杂的技术到目前为止还没有在携带人体模型并使用一个上肢和鳍来推进的救生员身上进行过测试。目的:探讨应用小波分析定位硬鳍和纤维鳍人体负重救生比赛中速度变化时间点的可行性。方法:14名男性救生员,平均年龄20.79±4.93岁,用单上肢和硬鳍或纤维鳍作为推进装置,进行了2次25米全力以赴的人体携带游泳比赛。用速度计记录速度,并用小波变换分析速度的变化。录像被用来测量每一场比赛中的划水率和划水长度。结果:小波分析检测到部分救生员的1(硬:10.50±1.29 vs纤维:9.75±0.50 s);P < 0.05),对于其他救生员,两个时间点(僵硬:6.75±0.96和11.50±1.29;纤维:7.00±1.41 s和12.00±1.83 s;P < 0.05)。不同鳍型的平均速度无显著差异(硬鳍:1.38±0.06 vs纤维鳍:1.42±0.09 m∙s-1;P < 0.05),以及平均、最大、最小速度。在每一场比赛中,冲程速率、冲程长度和冲程指数没有变化。结论:小波分析可以有效地检测出与鳍片类型无关的短时间人体负重运动中速度变化的一个和两个时间点。纤维和硬鳍在比赛中表现出相似的生物力学和速度变化。
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来源期刊
Open Sports Sciences Journal
Open Sports Sciences Journal Health Professions-Physical Therapy, Sports Therapy and Rehabilitation
CiteScore
1.00
自引率
0.00%
发文量
14
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