Sašek Matic, Cvjetičanin Oskar, Šarabon Nejc
Faculty of Health Sciences, University of Primorska, Izola, Slovenia.
Human Health, InnoRenew CoE, Izola, Slovenia.
Front Sports Act Living. 2024 Jul 25;6:1386882. doi: 10.3389/fspor.2024.1386882. eCollection 2024.
The aim of this study was to assess the validity and reliability of a hydraulic resistance device (HRD) for monitoring sprint split times under different loads within and between sessions.
Three 20-m sprints with low (15 N), medium-low (40 N), medium-high (50 N), and high (130 N) HRD resistance levels (loads) were performed on two separate occasions 14 days apart. Twenty-four student athletes (24.8 ± 3.8 years) participated in the first session and 13 (24.1 ± 3.2 years) of them in the second session. Resisted sprints split times over a distance of 0-20 m (t, t, t, t, t, t) were measured simultaneously with magnetic incremental encoder embedded in the HRD and a system of single-beam timing gates.
The results showed acceptable to high within session (ICC = 0.91-0.99; CV = 0.92%-3.38%) and between session (ICC = 0.82-0.99; CV = 1.62%-4.84%) reliability of HRD for measuring all split times at all loads. The minimal detectable change between sessions ranged from 3.3% at high load to 9.9% at low load. The HRD systematically underestimated timing gates times at all loads (bias = 2.01-11.08%), yet good to excellent consistency was observed between the HRD and timing gates, specifically for t and t (ICC lower 95% CI = 0.84-0.99).
Due to high reliability and good validity in monitoring resisted sprint times, the HRD holds potential for practical and research applications.
本研究的目的是评估一种液压阻力装置(HRD)在监测不同负荷下各训练时段内及不同训练时段之间短跑分段时间的有效性和可靠性。
在相隔14天的两个不同时间进行了三次20米短跑,阻力水平(负荷)分别为低(15牛)、中低(40牛)、中高(50牛)和高(130牛)。24名学生运动员(24.8±3.8岁)参加了第一次测试,其中13名(24.1±3.2岁)参加了第二次测试。使用嵌入HRD的磁性增量编码器和单光束计时门系统同时测量0至20米距离内的阻力短跑分段时间(t、t、t、t、t、t)。
结果表明,HRD在测量所有负荷下的所有分段时间时,在各训练时段内(组内相关系数ICC = 0.91 - 0.99;变异系数CV = 0.92% - 3.38%)和不同训练时段之间(ICC = 0.82 - 0.99;CV = 1.