Maganaris Constantinos N, Baltzopoulos Vasilios, Sargeant Anthony J
Centre for Biophysical and Clinical Research into Human Movement, Manchester Metropolitan University, Alsager ST7 2HL, United Kingdom.
J Appl Physiol (1985). 2002 Dec;93(6):2089-94. doi: 10.1152/japplphysiol.00604.2002. Epub 2002 Aug 23.
The aim of this study was to investigate the effect of repeated contractions on the geometry of human skeletal muscle. Six men performed two sets (sets A and B) of 10 repeated isometric plantarflexion contractions at 80% of the moment generated during plantarflexion maximal voluntary contraction (MVC), with a rest interval of 15 min between sets. By use of ultrasound, the geometry of the medial gastrocnemius (MG) muscle was measured in the contractions of set A and the displacement of the MG tendon origin in the myotendinous junction was measured in the contractions of set B. In the transition from the 1st to the 10th contractions, the fascicular length at 80% of MVC decreased from 34 +/- 4 (means +/- SD) to 30 +/- 3 mm (P < 0.001), the pennation angle increased from 35 +/- 3 to 42 +/- 3 degrees (P < 0.001), the myotendinous junction displacement increased from 5 +/- 3 to 10 +/- 3 mm (P < 0.001), and the average fascicular curvature remained constant (P > 0.05) at approximately 4.3 m(-1). No changes (P > 0.05) were found in fascicular length, pennation angle, and myotendinous junction displacement after the fifth contraction. Electrogoniometry showed that the ankle rotated by approximately 6.5 degrees during contraction, but no differences (P > 0.05) were obtained between contractions. The present results show that repeated contractions induce tendon creep, which substantially affects the geometry of the in-series contracting muscles, thus altering their potential for force and joint moment generation.
本研究的目的是调查重复收缩对人体骨骼肌几何结构的影响。六名男性进行了两组(A组和B组)等长跖屈重复收缩,每组10次,收缩强度为跖屈最大自主收缩(MVC)时产生力矩的80%,两组之间休息15分钟。通过超声测量A组收缩时腓肠肌内侧头(MG)的几何结构,测量B组收缩时MG肌腱起点在肌腱结合处的位移。在从第1次收缩到第10次收缩的过程中,MVC 80%时的肌束长度从34±4(平均值±标准差)降至30±3毫米(P<0.001),羽状角从35±3增加到42±3度(P<0.001),肌腱结合处位移从5±3增加到10±3毫米(P<0.001),平均肌束曲率在约4.3米-1时保持恒定(P>0.05)。第五次收缩后,肌束长度、羽状角和肌腱结合处位移均未发现变化(P>0.05)。电子测角法显示,收缩过程中踝关节旋转约6.5度,但各次收缩之间未获得差异(P>0.05)。目前的结果表明,重复收缩会导致肌腱蠕变,这会显著影响串联收缩肌肉的几何结构,从而改变其产生力和关节力矩的潜力。