Strazza Annachiara, Mengarelli Alessandro, Agostini Valentina, Knaflitz Marco, Burattini Laura, Fioretti Sandro, Di Nardo Francesco
Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:3692-3695. doi: 10.1109/EMBC.2016.7591529.
The purpose of the present study was the quantification of the co-activation patterns of the knee extensor and flexor muscles during walking at self-selected speed and cadence. To this aim, the Statistical Gait Analysis, a recent methodology providing a statistical characterization of gait, was performed on surface EMG signals from Vastus Lateralis (VL) and Medial Hamstrings (MH) in 14 healthy young adult subjects. Muscular co-contraction was assessed as the overlapping period between activation intervals of agonist and antagonist muscles. Superimpositions between VL and MH activity were detected from terminal swing to the following loading response in 100% of the considered strides. This superimposition could be intended as an actual co-contraction of VL and MH, working across the same joint, the knee. It occurs in this gait phase likely in order to assist knee extension, developing muscle tension for weight acceptance during loading response, and to control knee flexion. A further less frequent (28.9±13.6% of the strides, P<;0.001) superimposition was detected in terminal stance; this superimposition, however, should not be considered a real co-contraction, because VL and MH work on different joints. These findings have the merit to provide a novel data on the variability of the reciprocal role of VL and MH during walking, allowing a deeper insight in the physiological mechanisms that regulate the knee flexion/extension.
本研究的目的是量化在自选速度和步频行走过程中膝关节伸肌和屈肌的共同激活模式。为此,对14名健康年轻成人受试者的股外侧肌(VL)和半腱肌内侧头(MH)的表面肌电图信号进行了统计步态分析,这是一种提供步态统计特征的最新方法。肌肉协同收缩被评估为主动肌和拮抗肌激活间隔的重叠期。在100%的所考虑步幅中,从终末摆动到随后的负重反应阶段均检测到VL和MH活动的叠加。这种叠加可被视为VL和MH在同一膝关节上的实际协同收缩。它出现在这个步态阶段,可能是为了辅助膝关节伸展,在负重反应期间产生肌肉张力以接受体重,并控制膝关节屈曲。在终末站立期还检测到另一种频率较低(步幅的28.9±13.6%,P<0.001)的叠加;然而,这种叠加不应被视为真正的协同收缩,因为VL和MH作用于不同的关节。这些发现有助于提供关于行走过程中VL和MH相互作用变异性的新数据,从而更深入地了解调节膝关节屈伸的生理机制。