首页> 外文期刊>Journal of strength and conditioning research >OPTIMIZING BETWEEN-SESSION RELIABILITY FOR QUADRICEPS PEAK TORQUE AND RATE OF TORQUE DEVELOPMENT MEASURES
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OPTIMIZING BETWEEN-SESSION RELIABILITY FOR QUADRICEPS PEAK TORQUE AND RATE OF TORQUE DEVELOPMENT MEASURES

机译:优化Quadriceps峰值扭矩和扭矩发展措施的率之间的可靠性

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Quadriceps peak torque and rate of torque development (RTD) have relevance for athletic performance and recovery after knee injury. The number of repetitions performed to determine RTD varies between studies, and the associated measurement error has not been established. The purpose of this study was to determine the number of repetitions necessary to optimize the between-session reliability for isometric quadriceps peak torque and RTD measures and to quantify estimates of measurement error. Twenty participants (age = 21.7 +/- 1.7 years, height = 172.5 +/- 16.0 cm, body mass = 76.0 +/- 15.5 kg, and Tegner = 7.1 +/- 1.2) volunteered for this study. Quadriceps isometric peak torque and RTD (50, 100, 150, 200, and 250 ms, and maximum torque) were obtained during 2 testing sessions. Between-session reliability was determined using intraclass correlation coefficients (ICC2,k), using the minimal detectable change (MDC) and coefficient of variation (CoV) to quantify measurement error. Between-session reliability was best maximized by using the average of the 3 repetitions with the highest peak torque. Reliability was good for quadriceps peak torque (ICC2,3 = 0.98; MDC = 51.1 N.m; CoV = 38.0%) and ranged from moderate to good for quadriceps RTD measures (ICC2,3 = 0.61 to 0.91; MDC = 264.8 to 738.3 N.m.s(-1); CoV = 38.1-57.9%). Measures of late RTD were less variable and more reliable than early RTD and average RTD measures. These results provide confidence when measuring between-session changes for late RTD measures, but changes in early RTD may be more difficult to distinguish from measurement error. Methods should be used to minimize variability between repetitions and sessions.
机译:Quaddriceps峰值扭矩和扭矩显影率(RTD)具有膝关节损伤后运动性能和恢复的相关性。以确定RTD执行的重复次数在研究之间变化,并且尚未建立相关的测量误差。本研究的目的是确定优化等距QuadRiceps峰值扭矩和RTD测量的会议可靠性所需的重复次数,并量化测量误差的估计。二十名参与者(年龄= 21.7 +/- 1.7岁,身高= 172.5 +/- 16.0厘米,体重= 76.0 +/- 15.5千克,TEGNER = 7.1 +/- 1.2)为这项研究志愿进行。在2个测试会话期间,获得了QuadRiceps等距峰值扭矩和RTD(50,100,150,200和250ms,最大扭矩和最大扭矩)。使用跨站和相关系数(ICC2,K)确定会话之间的可靠性,使用最小可检测的变化(MDC)和变型系数(COV)来定量测量误差。通过使用具有最高峰值扭矩的3重复的平均值,可以最大地最大化 - 会话之间的可靠性最大化。可靠性适用于QuadRiceps峰值扭矩(ICC2,3 = 0.98; MDC = 51.1nm; CoV = 38.0%),并且对于QuadRiceps RTD测量(ICC2,3 = 0.61至0.91; MDC = 264.8至738.3 nms( -1); COV = 38.1-57.9%)。 rtd的措施不如早期的RTD和平均RTD措施变得更少,更可靠。这些结果在衡量会话措施之间的变化时提供了信心,但早期RTD的变化可能更难以区分测量误差。用于最小化重复与会话之间的可变性的方法。

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