Department of Biomedical Engineering, Marquette University, Milwaukee, WI 53201-1881, USA.
J Neurophysiol. 2013 Jul;110(2):297-306. doi: 10.1152/jn.00261.2012. Epub 2013 Apr 24.
Stretch-sensitive afferent feedback from hip muscles has been shown to trigger long-lasting, multijoint reflex responses in people with chronic spinal cord injury (SCI). These reflexes could have important implications for control of leg movements during functional activities, such as walking. Because the control of leg movement relies on reflex regulation at all joints of the limb, we sought to determine whether stretch of hip muscles modulates reflex activity at the knee and ankle and, conversely, whether knee and ankle stretch afferents affect hip-triggered reflexes. A custom-built servomotor apparatus was used to stretch the hip muscles in nine chronic SCI subjects by oscillating the legs about the hip joint bilaterally from 10° of extension to 40° flexion. To test whether stretch-related feedback from the knee or ankle would be affected by hip movement, patellar tendon percussions and Achilles tendon vibration were delivered when the hip was either extending or flexing. Surface electromyograms (EMGs) and joint torques were recorded from both legs. Patellar tendon percussions and Achilles tendon vibration both elicited reflex responses local to the knee or ankle, respectively, and did not influence reflex responses observed at the hip. Rather, the movement direction of the hip modulated the reflex responses local to the joint. The patellar tendon reflex amplitude was larger when the perturbation was delivered during hip extension compared with hip flexion. The response to Achilles vibration was modulated by hip movement, with an increased tonic component during hip flexion compared with extension. These results demonstrate that hip-mediated sensory signals modulate activity in distal muscles of the leg and appear to play a unique role in modulation of spastic muscle activity throughout the leg in SCI.
来自髋关节肌肉的拉伸敏感传入反馈已被证明会在慢性脊髓损伤 (SCI) 患者中引发持久的多关节反射反应。这些反射可能对功能性活动(如行走)中腿部运动的控制具有重要意义。由于腿部运动的控制依赖于肢体所有关节的反射调节,我们试图确定髋关节肌肉的拉伸是否会调节膝关节和踝关节的反射活动,反之,膝关节和踝关节的拉伸传入是否会影响髋关节触发的反射。我们使用定制的伺服电机装置通过双侧摆动腿部围绕髋关节从 10°伸展到 40°屈曲来拉伸 9 名慢性 SCI 受试者的髋关节肌肉。为了测试来自膝关节或踝关节的与拉伸相关的反馈是否会受到髋关节运动的影响,当髋关节伸展或屈曲时,分别对髌腱进行叩击和跟腱振动。从双腿记录表面肌电图 (EMG) 和关节扭矩。髌腱叩击和跟腱振动分别引发了膝关节或踝关节局部的反射反应,并且不会影响在髋关节观察到的反射反应。相反,髋关节的运动方向调节了关节局部的反射反应。与髋关节屈曲相比,当在髋关节伸展时施加扰动时,髌腱反射幅度更大。跟腱振动的反应受髋关节运动调节,与髋关节伸展相比,髋关节屈曲时的紧张成分增加。这些结果表明,髋关节介导的感觉信号调节腿部远端肌肉的活动,并且似乎在 SCI 中整个腿部痉挛性肌肉活动的调节中发挥独特作用。