Miralles-Iborra A, Elvira J L L, Urban T, Calado A, Del Coso J, Moreno-Pérez V
Sports Research Centre (Department of Sport Sciences), Miguel Hernandez University of Elche, Alicante, Spain.
Rio Ave Rendimento, Rio Ave FC, Vila do Conde, Portugal.
Eur J Sport Sci. 2023 Feb;23(2):155-164. doi: 10.1080/17461391.2021.2014984. Epub 2022 Jan 6.
Different eccentric strength assessments are used to identifying the risk of hamstring injury in athletes. However, there is scarce information to determine the association between Nordic-based measurements and the gold standard measurement of eccentric hamstring strength in an isokinetic dynamometer. To investigate the relationship of different measures of eccentric hamstring strength (break-point angle and eccentric strength during Nordic exercise) with eccentric hamstring peak torque measured with an isokinetic dynamometer. Forty-six participants volunteered to participate in this study. Eccentric peak force in the Smart-Nordic System and break-point angle measured as trunk lowering at >20°/s and >150°/s during the Nordic exercise via high-frequency video-analysis were compared to eccentric hamstring peak torque in an isokinetic dynamometer set to produce knee extension at 30°/s. There was a moderate association between peak eccentric strength with the Smart-Nordic and isokinetic eccentric hamstring peak torque ( = -0.65, < 0.001, 95%CI = [-0.76-(-0.50)]). The association between Nordic break-point angle measured at 20°/s ( = 0.49, < 0.001, 95%CI = [0.30-0.64]) and at 150°/s ( = 0.52, < 0.001, 95%CI = [0.33-0.66]) presented statistically significant but lower associations with isokinetic eccentric hamstring peak torque. All Nordic-based measurements presented acceptable associations with the gold standard isokinetic eccentric hamstring peak torque. However, peak eccentric force measured on the Smart-Nordic device had a better agreement with eccentric peak torque measured with an isokinetic dynamometer than the video-based measurements. Peak eccentric force measured on the isometric strain-gauges device had a better agreement with eccentric hamstring peak torque measured with an isokinetic dynamometer than the break-point angle.The Nordic-based measurements are an alternative cost-effective method to assess eccentric muscle strength and weakness when the access to isokinetic dynamometry is not feasible.Caution should be taken with certain variables such as participants body mass, hip position and movement speed when interpreting the results of Nordic-based measurements.
不同的离心力量评估方法被用于识别运动员腘绳肌损伤的风险。然而,关于基于北欧式测试的测量与等速测力计中腘绳肌离心力量的金标准测量之间的关联,几乎没有相关信息。为了研究不同的腘绳肌离心力量测量指标(断点角度和北欧式运动中的离心力量)与等速测力计测量的腘绳肌离心峰值扭矩之间的关系。46名参与者自愿参加本研究。通过高频视频分析,将智能北欧系统中的离心峰值力以及在北欧式运动中躯干以>20°/秒和>150°/秒下降时测量的断点角度,与设置为以30°/秒进行膝关节伸展的等速测力计中的腘绳肌离心峰值扭矩进行比较。智能北欧系统的离心峰值力量与等速腘绳肌离心峰值扭矩之间存在中等程度的关联(r = -0.65,p < 0.001,95%CI = [-0.76 - (-0.50)])。在20°/秒(r = 0.49,p < 0.001,95%CI = [0.30 - 0.64])和150°/秒(r = 0.52,p < 0.001,95%CI = [0.33 - 0.66])测量的北欧式断点角度与等速腘绳肌离心峰值扭矩之间的关联具有统计学意义,但相关性较低。所有基于北欧式测试的测量与金标准等速腘绳肌离心峰值扭矩之间都呈现出可接受的关联。然而,如果与基于视频的测量相比,在智能北欧设备上测量的离心峰值力与等速测力计测量的离心峰值扭矩之间的一致性更好。与断点角度相比,在等距应变片设备上测量的离心峰值力与等速测力计测量的腘绳肌离心峰值扭矩之间的一致性更好。当无法使用等速测力法时,基于北欧式测试的测量是一种评估离心肌肉力量和弱点的具有成本效益的替代方法。在解释基于北欧式测试的测量结果时,应注意某些变量,如参与者的体重、髋关节位置和运动速度。