Reeves N D, Narici M V, Maganaris C N
Institute for Biophysical and Clinical Research into Human Movement, Manchester Metropolitan University, MMU Cheshire, Hassall Road, Alsager, Cheshire, ST7 2HL, UK.
Exp Physiol. 2004 Nov;89(6):675-89. doi: 10.1113/expphysiol.2004.027797. Epub 2004 Aug 24.
This study investigated changes in elderly muscle joint angle-torque relation induced by resistance training. Older adults were assigned to either training (n = 9, age 74.3 +/- 3.5 years; mean +/-s.d.) or to control groups (n = 9, age 67.1 +/- 2 years). Leg-extension and leg-press exercises were performed three times per week for 14 weeks. Maximal isometric knee extension torque was measured across the knee joint angle range of movement. Vastus lateralis muscle architecture was examined in vivo using ultrasonography. The vastus lateralis muscle fascicle force was estimated from the measured joint torque, enabling construction of the fascicle length-force relation. Electromyographic (EMG) activity was measured from representative agonist and antagonist muscles. Training altered the angle-torque relation: (a) displacing it by 9-31% towards higher torque values (P < 0.05); and (b) shifting the optimal angle from 70 deg (corresponding torque: 121.4 +/- 61 N m) before to 60 deg (134.2 +/- 57.2 N m; P < 0.05) after training. Training also altered the fascicle length-force relation: (a) displacing it by 11-35% towards higher force values; and (b) shifting the optimal fascicle length from 83.7 +/- 8 mm (corresponding force: 847.9 +/- 365.3 N) before to 93.2 +/- 12.5 mm (939.3 +/- 347.8 N; P < 0.01) after training. The upward displacement of the angle-torque relation was mainly due to a training-induced increase in agonist activation, whilst the shift in the optimal angle was associated with changes in muscle-tendon properties.
本研究调查了阻力训练引起的老年人肌肉关节角度 - 扭矩关系的变化。老年人被分配到训练组(n = 9,年龄74.3±3.5岁;平均值±标准差)或对照组(n = 9,年龄67.1±2岁)。每周进行3次腿部伸展和腿部推举练习,共14周。在膝关节运动角度范围内测量最大等长膝关节伸展扭矩。使用超声在体内检查股外侧肌的肌肉结构。根据测量的关节扭矩估计股外侧肌束力,从而构建肌束长度 - 力关系。从代表性的主动肌和拮抗肌测量肌电图(EMG)活动。训练改变了角度 - 扭矩关系:(a)使其向更高扭矩值方向移动9 - 31%(P < 0.05);(b)将最佳角度从训练前的70度(相应扭矩:121.4±61 N·m)转变为训练后的60度(134.2±57.2 N·m;P < 0.05)。训练还改变了肌束长度 - 力关系:(a)使其向更高力值方向移动11 - 35%;(b)将最佳肌束长度从训练前的83.7±8 mm(相应力:847.9±365.3 N)转变为训练后的93.2±12.5 mm(939.3±347.8 N;P < 0.01)。角度 - 扭矩关系的向上移动主要是由于训练引起的主动肌激活增加,而最佳角度的转变与肌腱特性的变化有关。