Findley Thomas, Chaudhry Hans, Dhar Sunil
Rutgers University and V.A. Medical Center, East Orange, NJ, USA.
Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, NJ, USA.
J Bodyw Mov Ther. 2015 Jan;19(1):119-23. doi: 10.1016/j.jbmt.2014.08.010. Epub 2014 Sep 3.
As the muscle contracts, fibers get thicker, forcing the fascial tubular layers surrounding the muscle (endomysium, perimysium and epimysium) to expand in diameter and hence to shorten in length. We develop a mathematical model to determine the fraction of force generated by extremity muscles during contraction that is transmitted to the surrounding tubes of fascia.
Theory of elasticity is used to determine the modulus of elasticity, radial strain and the radial stress transmitted to the fascia.
Starting with published data on dimensions of muscle and muscle force, we find radial stress is 50% of longitudinal stress in the soleus, medial gastrocnemius, and elbow flexor and extensor muscles.
Substantial stress is transmitted to fascia during muscular exercise, which has implications for exercise therapies if they are designed for fascial as well as muscular stress. This adds additional perspective to myofascial force transmission research.
随着肌肉收缩,肌纤维变粗,迫使围绕肌肉的筋膜管状层(肌内膜、肌束膜和肌外膜)直径增大,从而长度缩短。我们建立了一个数学模型,以确定四肢肌肉收缩时产生的力量中传递到周围筋膜管的比例。
运用弹性理论来确定弹性模量、径向应变以及传递到筋膜的径向应力。
从已发表的关于肌肉尺寸和肌肉力量的数据出发,我们发现比目鱼肌、腓肠肌内侧头以及肘部屈肌和伸肌的径向应力是纵向应力的50%。
在肌肉运动过程中,大量应力会传递到筋膜,如果运动疗法是针对筋膜以及肌肉应力设计的,那么这对运动疗法具有重要意义。这为肌筋膜力传递研究增添了新的视角。