College of Physical Education and Health, Wenzhou University, Wenzhou, China.
Department of Orthopedics and Traumatology, Seventh People's Hospital of Shanghai University of Traditional Chinese Medicine, Shanghai, China.
J Sports Sci Med. 2024 Sep 1;23(1):603-610. doi: 10.52082/jssm.2024.603. eCollection 2024 Sep.
Hamstring strain injuries (HSIs) are prevalent in sports involving high-speed running and most of the HSIs are biceps femoris long head (BFlh) injuries. The primary cause for HSIs during high-speed running remains controversial due to the lack of in vivo measurement of the BFlh muscle behavior during running. Therefore, the purpose of this study was to quantify the muscle-tendon unit (MTU) and fascicle behavior of BFlh during running. Seven college male sprinters (22.14 ± 1.8 years; 177.7 ± 2.5 cm; 70.57 ± 5.1 kg; personal bests in 100m: 11.1 ± 0.2 s) were tested on a motorized treadmill instrumented with two force plate for running at 4, 5, 6m/s. The ground reaction force (GRF), 3D lower limb kinematics, EMG, and ultrasound images of biceps femoris long head (BFlh) in the middle region were recorded simultaneously. BFlh fascicles undergo little length change (about 1 cm) in the late swing phase during running at three submaximal speeds. BFlh fascicle lengthening accounted for about 30% of MTU length change during the late swing phase. BFlh was most active during the late swing and early stance phases, ranging from 83%MVC at a running speed of 4 m/s to 116%MVC at 6 m/s. Muscle fascicles in the middle region of BFlh undergo relatively little lengthening relative to the MTU in the late swing phase during running in comparison to results from simulation studies. These results suggest that there is a decoupling between the fascicle in the middle region and MTU length changes during the late swing phase of running.
腘绳肌拉伤(HSI)在涉及高速奔跑的运动中很常见,大多数 HSI 都是股二头肌长头(BFlh)损伤。由于在高速奔跑过程中缺乏对 BFlh 肌肉行为的体内测量,因此,HSI 的主要原因仍然存在争议。因此,本研究的目的是量化奔跑过程中 BFlh 的肌肌腱单位(MTU)和肌束行为。7 名大学男性短跑运动员(22.14±1.8 岁;177.7±2.5cm;70.57±5.1kg;100m 个人最佳成绩:11.1±0.2s)在装有两个测力板的电动跑步机上以 4、5、6m/s 的速度进行测试。同时记录地面反作用力(GRF)、3D 下肢运动学、EMG 和股二头肌长头(BFlh)中部的超声图像。在以三个亚最大速度奔跑的后期摆动阶段,BFlh 肌束的长度变化很小(约 1cm)。BFlh 肌束的延长占后期摆动阶段 MTU 长度变化的约 30%。BFlh 在后期摆动和早期支撑阶段最为活跃,从 4m/s 时的 83%MVC 到 6m/s 时的 116%MVC。与模拟研究的结果相比,在奔跑的后期摆动阶段,与 MTU 相比,BFlh 中部的肌束相对延长较小。这些结果表明,在奔跑的后期摆动阶段,中间区域的肌束与 MTU 长度变化之间存在解耦。