N. Mrachacz-Kersting: Fredrik Bajers Vej 7 D3, 9220 Aalborg, Denmark.
J Physiol. 2013 Oct 1;591(19):4921-35. doi: 10.1113/jphysiol.2013.257949. Epub 2013 Aug 5.
A strong coordination between the two legs is important for maintaining a symmetric gait pattern and adapting to changes in the external environment. In humans as well as animals, receptors arising from the quadriceps muscle group influence the activation of ipsilateral muscles. Moreover, strong contralateral spinal connections arising from quadriceps and hamstring afferents have been shown in animal models. Therefore, the aims of the present study were to assess if such connections also exist in humans and to elucidate on the possible pathways. Contralateral reflex responses were investigated in the right leg following unexpected unilateral knee joint rotations during locomotion in either the flexion or extension direction. Strong reflex responses in the contralateral biceps femoris (cBF) muscle with a mean onset latency of 76 ± 6 ms were evoked only from ipsilateral knee extension joint rotations in the late stance phase. To investigate the contribution of a transcortical pathway to this response, transcranial magnetic and electrical stimulation were applied. Motor evoked potentials elicited by transcranial magnetic stimulation, but not transcranial electrical stimulation, were facilitated when elicited at the time of the cBF response to a greater extent than the algebraic sum of the cBF reflex and motor evoked potentials elicited separately, indicating that a transcortical pathway probably contributes to this interlimb reflex. The cBF reflex response may therefore be integrated with other sensory input, allowing for responses that are more flexible. We hypothesize that the cBF reflex response may be a preparation of the contralateral leg for early load bearing, slowing the forward progression of the body to maintain dynamic equilibrium during walking.
双腿之间的强有力协调对于维持对称的步态模式和适应外部环境的变化非常重要。在人类和动物中,来自股四头肌群的感受器会影响同侧肌肉的激活。此外,在动物模型中已经显示出来自股四头肌和腘绳肌传入的强烈的对侧脊髓连接。因此,本研究的目的是评估这种连接是否也存在于人类中,并阐明可能的途径。在运动过程中,当膝关节在伸展或屈曲方向发生意外的单侧旋转时,研究人员在右腿中评估了对侧反射反应。仅在伸展末期,从同侧膝关节伸展旋转中,会在对侧股二头肌(cBF)中引发强烈的反射反应,潜伏期为 76 ± 6ms。为了研究这种反应的皮质下途径的贡献,应用了经颅磁和电刺激。经颅磁刺激诱发的运动诱发电位比 cBF 反射和单独诱发的运动诱发电位的代数和更有效地诱发,表明皮质下途径可能有助于这种肢体间反射。因此,cBF 反射反应可能与其他感觉输入相结合,从而产生更灵活的反应。研究人员假设,cBF 反射反应可能是对侧腿为早期承重做准备的一种反应,可减缓身体的前进速度,以在行走过程中保持动态平衡。