Draganich L F, Jaeger R J, Kralj A R
Department of Surgery, University of Chicago Medical Center, Illinois 60637.
J Bone Joint Surg Am. 1989 Aug;71(7):1075-81.
The electromyographic activities of six muscles of the thigh were recorded, using bipolar surface electrodes, during active extension of the knee by six healthy men. The signal amplitudes were normalized to those recorded during isometric maximum voluntary contractions. Extension of the knee from 90 to 0 degrees (full extension) was performed at the rate of 10 degrees per second with the leg unimpeded and with weights of 1.8, 3.6, 5.4, or 7.2 kilograms attached to the ankle. The hamstrings were found to coactivate with the quadriceps during the terminal phase of extension. Coactivation of all three hamstrings was found to occur at joint angles of as much as 9 degrees, with the maximum at full extension of the knee and the strength of the signals ranging to as much as 20 per cent. The signals of all of the flexors and extensors increased with increasing loads on the ankle and, with the exception of the rectus femoris at 9 degrees of flexion, they also increased as the knee extended. The results of this study support the hypothesis that the hamstrings function synergistically with the anterior cruciate ligament to prevent the anterior tibial displacement that is produced by active contraction of the quadriceps in the terminal degrees of extension of the knee. This information is important for the physical conditioning of healthy individuals in preparation for athletic endeavors. Furthermore, if coactivation of the hamstrings with the quadriceps is mediated by sensors other than, or in addition to, those of the anterior cruciate ligament, then strengthening of the hamstrings appears to be an important adjunct to rehabilitation programs after repair or reconstruction of that ligament.
在六名健康男性主动伸展膝关节的过程中,使用双极表面电极记录了大腿六块肌肉的肌电活动。信号幅度被标准化为等长最大自主收缩时记录的幅度。膝关节从90度伸展至0度(完全伸展),以每秒10度的速度进行,腿部无阻碍,且在脚踝处附加1.8、3.6、5.4或7.2千克的重物。结果发现,在伸展末期,腘绳肌与股四头肌共同激活。发现所有三块腘绳肌在关节角度高达9度时共同激活,在膝关节完全伸展时达到最大值,信号强度高达20%。随着脚踝负重增加,所有屈肌和伸肌的信号均增强,并且除了在膝关节屈曲9度时的股直肌外,随着膝关节伸展,它们的信号也增强。本研究结果支持以下假设:在膝关节伸展末期,腘绳肌与前交叉韧带协同作用,以防止股四头肌主动收缩所产生的胫骨前移。该信息对于健康个体为体育活动进行身体训练具有重要意义。此外,如果腘绳肌与股四头肌的共同激活是由前交叉韧带以外或除其之外的传感器介导的,那么加强腘绳肌似乎是该韧带修复或重建后康复计划的重要辅助手段。