School of Human Movement and Nutrition Sciences, The University of Queensland, Australia.
School of Human Movement and Nutrition Sciences, The University of Queensland, Australia.
J Sci Med Sport. 2022 Aug;25(8):684-689. doi: 10.1016/j.jsams.2022.05.002. Epub 2022 May 8.
To compare biceps femoris long head (BFlh) muscle tendon unit and fascicle function during Nordic hamstring exercise (NHE) variations with different hip range of motion.
Cross-sectional.
Twelve healthy volunteers (age: 24 ± 4 years; mass: 77 ± 6 kg; height: 177 ± 4 cm) performed two NHE variations: NHE with hips in neutral (fixed) position (conventional NHE); and NHE with hip flexion/extension. BFlh fascicle length behaviour was assessed using a dual transducer ultrasound configuration. BFlh and semitendinosus muscle electromyography, lower limb kinematics and knee flexion moment were also recorded. A biomechanical model was used to estimate BFlh muscle-tendon unit (MTU) length. Statistical Parametric Mapping was used to assess timing differences in outcome variables across the movement.
In both variations, during much of the exercise (~30-80% of movement phase), BFlh fascicles undergo little length change (isometric) while the MTU lengthens. Fascicles stretched considerably just in the last ~20% of the exercise, and changes in fascicle length (<2 cm stretch) were smaller in comparison to changes in MTU length (<4 cm stretch). Hip flexion resulted in the muscle tendon unit and fascicles operating at longer lengths until approximately 80% of the movement phase.
The decoupling between fascicle and MTU length seen during the NHE variations suggests that stretch of the elastic tissue of the MTU has an important role in absorbing energy during Nordic hamstring exercises. This may be important when considering adaptations to BFlh muscle and connective tissues that might occur from NHE training.
比较不同髋关节活动范围下北欧式腘绳肌练习(NHE)变化时,肱二头肌长头(BFlh)肌肌腱单元和肌束的功能。
横断面研究。
12 名健康志愿者(年龄:24±4 岁;体重:77±6kg;身高:177±4cm)进行了两种 NHE 变化:髋关节处于中立(固定)位置的 NHE(传统 NHE);以及髋关节屈伸的 NHE。使用双换能器超声配置评估 BFlh 肌束长度行为。还记录了 BFlh 和半腱肌肌电图、下肢运动学和膝关节弯曲力矩。使用生物力学模型估计 BFlh 肌肉-肌腱单元(MTU)长度。统计参数映射用于评估运动过程中结果变量的时间差异。
在两种变化中,在运动的大部分时间(30-80%的运动阶段),BFlh 肌束几乎没有长度变化(等长),而 MTU 则变长。肌束在运动的最后20%拉伸得相当多,并且肌束长度的变化(<2cm 拉伸)比 MTU 长度的变化(<4cm 拉伸)小。髋关节弯曲导致肌肉-肌腱单元和肌束在运动阶段的大约 80%之前保持更长的长度。
在 NHE 变化期间观察到的肌束和 MTU 长度之间的解耦表明,MTU 的弹性组织的拉伸在吸收北欧式腘绳肌练习期间的能量方面起着重要作用。这在考虑 NHE 训练可能对 BFlh 肌肉和结缔组织产生的适应时可能很重要。