Department of Physical Therapy, Kobe International University, Kobe, Hyogo, Japan.
Institute for Human Movement and Medical Sciences, Niigata University of Health and Welfare, Niigata, Niigata, Japan.
J Sports Sci Med. 2020 May 1;19(2):429-435. eCollection 2020 Jun.
The purpose of the present study was to examine the effects of high intensity static stretching for 20 seconds on flexibility and strength in the hamstrings. Seventeen healthy participants (13 men and 4 women) underwent static stretching for 20 seconds at three different intensities based on the point of discomfort (POD, 120% POD, and MaxPOD). To examine the change in flexibility and strength, range of motion (ROM), passive torque, muscle-tendon unit stiffness, peak torque of maximum voluntary isokinetic concentric contraction, and knee angle at peak torque were measured. To evaluate a time course of pain, a numerical rating scale (NRS) was described. ROM (percent change; POD = 113.5 ± 10.4%, 120%POD = 127.6 ± 18.8%, MaxPOD = 135.6 ± 18.5%) (p < 0.01) and passive torque (percent change; POD = 124.2 ± 38.9%, 120%POD = 143.4 ± 65.1%, MaxPOD = 171.8 ± 83.6%) (p < 0.01) were increased at all intensities. Muscle-tendon unit stiffness was decreased at 120%POD (percent change; 72.4 ± 36.2, p < 0.01) and MaxPOD (percent change; 56.6 ± 30.0, p < 0.01). Peak torque showed no change at all intensities (percent change; POD = 99.1 ± 14.0%, 120%POD = 95.4 ± 17.4%, MaxPOD = 98.4 ± 20.1%, p > 0.05). There were significant correlations between the intensities and relative change of the ROM (r = 0.57, p < 0.01), passive torque (r = 0.46, p < 0.01), muscle-tendon unit stiffness (r = -0.53, p < 0.01) and knee angle at peak torque (r = 0.50, p < 0.01). NRS increased with the intensity of static stretching (median; POD = 1, 120%POD = 3, Max POD = 8), though the pain disappeared immediately after the stretching (median = 0). In conclusion, static stretching for 20 seconds at high intensity was effective for a decrement in muscle-tendon unit stiffness.
本研究旨在探讨 20 秒高强度静态伸展对腘绳肌柔韧性和力量的影响。17 名健康参与者(13 名男性和 4 名女性)分别以不适感点(POD,120%POD 和 MaxPOD)的 3 种不同强度进行 20 秒的静态伸展。为了检测柔韧性和力量的变化,测量了运动范围(ROM)、被动扭矩、肌肉肌腱单位刚度、最大自主等速向心收缩时的峰值扭矩和峰值扭矩时的膝关节角度。为了评估疼痛的时程,采用数字评分量表(NRS)进行描述。ROM(百分比变化;POD=113.5±10.4%,120%POD=127.6±18.8%,MaxPOD=135.6±18.5%)(p<0.01)和被动扭矩(百分比变化;POD=124.2±38.9%,120%POD=143.4±65.1%,MaxPOD=171.8±83.6%)(p<0.01)在所有强度下均增加。120%POD(百分比变化;72.4±36.2,p<0.01)和 MaxPOD(百分比变化;56.6±30.0,p<0.01)时肌肉肌腱单位刚度降低。所有强度下的峰值扭矩均无变化(百分比变化;POD=99.1±14.0%,120%POD=95.4±17.4%,MaxPOD=98.4±20.1%,p>0.05)。ROM(r=0.57,p<0.01)、被动扭矩(r=0.46,p<0.01)、肌肉肌腱单位刚度(r=-0.53,p<0.01)和峰值扭矩时的膝关节角度(r=0.50,p<0.01)与强度之间存在显著相关性。NRS 随静态拉伸强度的增加而增加(中位数;POD=1,120%POD=3,Max POD=8),尽管拉伸后疼痛立即消失(中位数=0)。综上所述,20 秒高强度静态拉伸可有效降低肌肉肌腱单位的刚度。