Umegaki Hiroki, Ikezoe Tome, Nakamura Masatoshi, Nishishita Satoru, Kobayashi Takuya, Fujita Kosuke, Tanaka Hiroki, Ichihashi Noriaki
Human Health Sciences, Graduate School of Medicine, Kyoto University, Japan.
Human Health Sciences, Graduate School of Medicine, Kyoto University, Japan.
Man Ther. 2015 Feb;20(1):134-7. doi: 10.1016/j.math.2014.07.016. Epub 2014 Aug 13.
Regarding hamstring stretching methods, many studies have investigated the effect of stretching duration or frequency on muscle stiffness. However, the most effective stretching positions for hamstrings are unclear because it is impossible to quantify muscle elongation directly and noninvasively in vivo. Recently, a new ultrasound technology, ultrasonic shear wave elastography, has permitted noninvasive and reliable measurement of muscle shear elastic modulus, which has a strong linear relationship to the amount of muscle elongation. This study aimed to investigate the effect of hip internal and external rotation on shear elastic modulus of the lateral and medial hamstrings, respectively, during stretching in vivo using ultrasonic shear wave elastography. Twenty-three healthy men (age, 23.0 ± 2.1 years) were recruited for this study. To investigate the effect of hip rotation on the elongation of the medial and lateral hamstrings, shear elastic modulus of the biceps femoris (BF) and semitendinosus (ST) was measured at rest (a supine position with 90° knee flexion, 90° hip flexion, and hip neutral rotation) and in seven stretching positions (with 45° knee flexion and hip internal, external, and neutral rotation) using ultrasonic shear wave elastography. In both BF and ST, the shear elastic modulus in the rest position was significantly lower than that in all stretching positions. However, no significant differences were seen among stretching positions. Our results suggest that adding hip rotation at a stretching position for the hamstrings may not have a significant effect on muscle elongation of the medial and lateral hamstrings.
关于腘绳肌拉伸方法,许多研究探讨了拉伸持续时间或频率对肌肉僵硬度的影响。然而,由于无法在体内直接且无创地量化肌肉伸长,腘绳肌最有效的拉伸姿势尚不清楚。最近,一种新的超声技术——超声剪切波弹性成像,能够对肌肉剪切弹性模量进行无创且可靠的测量,该模量与肌肉伸长量具有很强的线性关系。本研究旨在利用超声剪切波弹性成像技术,在体内拉伸过程中分别研究髋关节内旋和外旋对股二头肌和半腱肌剪切弹性模量的影响。本研究招募了23名健康男性(年龄23.0±2.1岁)。为了研究髋关节旋转对股二头肌和半腱肌伸长的影响,在静息状态(仰卧位,膝关节屈曲90°,髋关节屈曲90°且髋关节中立位旋转)以及七个拉伸姿势(膝关节屈曲45°,髋关节内旋、外旋和中立位旋转)下,使用超声剪切波弹性成像测量股二头肌(BF)和半腱肌(ST)的剪切弹性模量。在股二头肌和半腱肌中,静息状态下的剪切弹性模量均显著低于所有拉伸姿势下的模量。然而,各拉伸姿势之间未见显著差异。我们的结果表明,在腘绳肌拉伸姿势中增加髋关节旋转可能对股二头肌和半腱肌的肌肉伸长没有显著影响。