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Co-activation periods of gastrocnemius and vastus lateralis during walking evaluated by surface electromyography

机译:表面肌电图评估步行过程中腓肠肌和外侧外侧肌的共激活期

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“In vivo” studies reported that the co-activation of gastrocnemius and quadriceps femoris (QF) muscles produces ACL strain values greater than those caused by an isolated activation of either muscle. Aim of this study was to assess the co-activation of gastrocnemius (lateral head, GL) and vastus lateralis (VL) in healthy and young adults during walking. To this purpose the Statistical Gait Analysis was performed, that allows a characterization of gait considering hundreds of strides belonging to the same walking trial. Three GL/VL co-activations were detected during a single gait cycle: in foot-contact phase, from 6.8±8.5% to 22.9±23.3% of gait cycle, (FC co-activation), in push-off phase, from 33.0±11.9% to 41.5±13.4% (PO co-activation), and in swing phase, from 86.5±6.7% to 93.2±5.9% (SW co-activation). FC co-activation was the most recurrent (in 100% of the strides, P<;0.001) and longest (16% of gait cycle) one. Thus, the ACL strain due to the co-activation between GL and VL is longer and more frequently during FC phase, than in all the others gait phases. Moreover, the position of the knee and the amount of the weight-bearing on knee, achieved in this gait phase, suggested that FC co-activation is the one that produces a highest strain value of anterior cruciate ligament (ACL). These findings could help to better understand risk factors of the ACL injuries and to design more focused preventive and rehabilitative strategies.
机译:“体内”研究报告说,腓肠肌和股四头肌(QF)肌肉的共同激活产生的ACL应变值大于单独激活任一肌肉引起的ACL应变值。这项研究的目的是评估健康和年轻成年人在行走过程中腓肠肌(外侧头,GL)和外侧股外侧肌(VL)的共激活。为此目的,进行了统计步态分析,该步态分析考虑了属于同一步行试验的数百个步幅,可以对步态进行表征。在一个步态周期中检测到三个GL / VL共激活:在脚接触阶段,从步态周期的6.8±8.5%降至22.9±23.3%,(FC共激活),在下推阶段,从33.0开始±11.9%至41.5±13.4%(PO共激活),并且在摆动阶段,从86.5±6.7%至93.2±5.9%(SW共激活)。 FC共激活是最常见的(在步幅的100%中,P <; 0.001),而最长(在步态周期的16%中)。因此,与所有其他步态相相比,由于在GL相和VL相之间的共激活,ACL应变在FC相中更长,更频繁。此外,在此步态阶段中达到的膝盖位置和膝盖负重的数量表明,FC共激活是产生前十字韧带(ACL)最高应变值的运动。这些发现可能有助于更好地了解ACL损伤的危险因素,并设计出更具针对性的预防和康复策略。

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