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Validity and Reliability of an Electronic Contact Mat for Drop Jump Assessment in Physically Active Adults

机译:电子接触垫在体力活动成年人中进行跳跳评估的有效性和可靠性

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The aim of the present study was to investigate the concurrent validity and the test–retest reliability of an electronic contact mat for drop jump assessment in physically active adults. Seventy-nine young, physically active adults participated in the validity study, and 49 subjects were recruited for the reliability study. The motor task required subjects to perform two-legged drop jumps using drop heights of 24, 43, and 62 cm as well as one-legged drop jumps with the left and right leg using a drop height of 24 cm. Ground contact times were simultaneously quantified with an electronic contact mat, a force plate (i.e., gold standard), and a light-barrier system (another criterion device). Concurrent validity was assessed using intraclass correlation coefficient (ICC), systematic bias, limits of agreement, and linear regression analysis. Test–retest reliability (one week apart) was determined by calculating the ICC, the standard error of measurement (SEM), the coefficient of variation (CV), and Lin′s concordance correlation coefficient (р c ). Further, we determined the minimal detectable change (MDC 95% ). Irrespective of drop height and jump condition, good agreements between testing devices (ICC ≥ 0.95) were shown. Compared to the force plate (?0.6 to 3.1 ms) but not to the light-barrier system (31.4 to 41.7 ms), the contact mat showed low systematic bias values. In terms of test–retest reliability, our analyses showed that the measuring devices are in agreement (ICC: 0.70–0.92; SEM: 8.5–18.4 ms; CV: 3.6–6.4%). Depending on the measurement device, drop height, and jump condition, a MDC 95% value ranging from 23.6 to 50.9 ms represents the minimum amount of change needed to identify practical relevant effects in repeated measurements of drop jump performance. Our findings indicate that the electronic contact mat is a valid and reliable testing device for drop jump assessment from different drop heights in young physically active adults.
机译:本研究的目的是研究在体力活动成年人中用于跌落跳跃评估的电子接触垫的同时有效性和重测可靠性。 79名年轻的体育锻炼成年人参加了有效性研究,并招募了49名受试者进行可靠性研究。运动任务要求受试者使用24、43和62 cm的跌落高度执行两腿跌落跳跃,以及使用24 cm的跌落高度用左腿和右腿进行单腿跌落跳跃。地面接触时间同时通过电子接触垫,测力板(即金标准)和阻光系统(另一个标准装置)进行量化。使用组内相关系数(ICC),系统偏见,一致性限制和线性回归分析评估并发有效性。重测信度(相隔一周)是通过计算ICC,标准测量误差(SEM),变异系数(CV)和Lin的一致性相关系数(рc)来确定的。此外,我们确定了最小可检测变化(MDC 95%)。无论跌落高度和跳跃条件如何,测试设备之间的一致性都很好(ICC≥0.95)。与压板(?0.6到3.1 ms)相比,而与阻光系统(31.4到41.7 ms)相比,接触垫的系统偏置值低。在重新测试的可靠性方面,我们的分析表明测量设备是一致的(ICC:0.70-0.92; SEM:8.5-18.4 ms; CV:3.6-6.4%)。取决于测量设备,跌落高度和跳跃条件,MDC 95%值的范围从23.6到50.9 ms,表示在重复测量跌落跳跃性能时识别实际相关影响所需的最小变化量。我们的发现表明,电子接触垫是一种有效且可靠的测试设备,可用于评估年轻体力活动成年人的不同跌落高度引起的跌落跳跃。

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