Arampatzis Adamantios, De Monte Gianpiero, Morey-Klapsing Gaspar
German Sport University of Cologne, Institute of Biomechanics and Orthopaedics, Carl-Diem-Weg 6, 50933 Cologne, Germany.
J Biomech. 2007;40(7):1622-8. doi: 10.1016/j.jbiomech.2006.06.011. Epub 2006 Aug 22.
During a maximal isometric plantar flexion effort the moment measured at the dynamometer differs from the resultant ankle joint moment. The present study investigated the effects of contraction form and contraction velocity during isokinetic plantar/dorsal flexion efforts on the differences between resultant and measured moments due to the misalignment between ankle and dynamometer axes. Eleven male subjects (age: 31+/-6 years, mass: 80.6+/-9.6 kg, height: 178.4+/-7.4 cm) participated in this study. All subjects performed isometric-shortening-stretch-isometric contractions induced by electrical stimulation at three different angular velocities (25 degrees /s, 50 degrees /s and 100 degrees /s) on a customised dynamometer. The kinematics of the leg were recorded using the vicon 624 system with eight cameras operating at 250 Hz. The resultant moments at the ankle joint were calculated through inverse dynamics. The relative differences between resultant and measured ankle joint moments due to axis misalignment were fairly similar in all phases of the isometric-shortening-stretch-isometric contraction (in average 5-9% of the measured moment). Furthermore these findings were independent of the contraction velocity. During dynamic plantar/dorsal flexion contractions the differences between measured and resultant joint moment are high enough to influence conclusions regarding the mechanical response of ankle extensor muscles. However the relative differences were not increased during dynamic contractions as compared to isometric contractions.
在最大等长跖屈用力过程中,测力计测得的力矩与踝关节合力矩不同。本研究调查了等速跖屈/背屈用力过程中收缩形式和收缩速度对因踝关节和测力计轴不对准导致的合力矩与测得力矩之间差异的影响。11名男性受试者(年龄:31±6岁,体重:80.6±9.6千克,身高:178.4±7.4厘米)参与了本研究。所有受试者在定制的测力计上,通过电刺激以三种不同角速度(25度/秒、50度/秒和100度/秒)进行等长-缩短-拉伸-等长收缩。使用配备8台以250赫兹运行的摄像机的Vicon 624系统记录腿部的运动学数据。通过逆动力学计算踝关节的合力矩。在等长-缩短-拉伸-等长收缩的所有阶段,由于轴不对准导致的合力矩与测得的踝关节力矩之间的相对差异相当相似(平均为测得力矩的5-9%)。此外,这些发现与收缩速度无关。在动态跖屈/背屈收缩过程中,测得的关节力矩与合力矩之间的差异大到足以影响有关踝伸肌机械反应的结论。然而,与等长收缩相比,动态收缩过程中的相对差异并未增加。