Cheng J, Brooke J D, Misiaszek J E, Staines W R
Human Neurophysiology Laboratory, School of Human Biology, University of Guelph, Ont., Canada.
Brain Res. 1995 Feb 20;672(1-2):89-96. doi: 10.1016/0006-8993(94)01321-8.
The gain of the H reflex attenuates during passive stepping and pedalling movements of the leg. We hypothesized that the kinematics of the movement indirectly reflect the receptor origin of this attenuation. In the first experiment, H reflexes were evoked in soleus at 26 points in the cycle of slow, passive pedalling movement of the leg and at 13 points with the leg static (the ankle was always immobilized). Maximum inhibition occurred as the leg moved through its most flexed position (P < 0.05). Inhibition observed in the static leg was also strongest at this position (P < 0.05). The increase in inhibition was gradual during flexion movement, with rapid reversal of this increase during extension. In the second experiment, the length of stretch of the vasti muscles was modelled. Variable pedal crank lengths and revolutions per minute (rpm) altered leg joint displacements and angular velocities. Equivalent rates of stretch of the vasti, achieved through different combinations of joint displacements and velocities, elicited equivalent attenuations of mean reflex magnitudes in the flexed leg. Reflex gain exponentially related to rate of stretch (R2 = 0.98 P < 0.01). The results imply that gain attenuation of this spinal sensorimotor path arises from spindle discharge in heteronymous extensor muscles of knee and/or hip, concomitant with movement.
在腿部被动踏步和蹬踏运动过程中,H反射的波幅会衰减。我们推测,该运动的运动学特征间接反映了这种衰减的感受器起源。在第一个实验中,在腿部缓慢被动蹬踏运动的周期中的26个时间点以及腿部静止时(踝关节始终固定)的13个时间点,在比目鱼肌中诱发H反射。当腿部移动到最屈曲位置时出现最大抑制(P < 0.05)。在静止腿部观察到的抑制在该位置也最强(P < 0.05)。在屈曲运动过程中抑制作用逐渐增加,而在伸展过程中这种增加迅速逆转。在第二个实验中,对股四头肌的拉伸长度进行了建模。可变的踏板曲柄长度和每分钟转数(rpm)改变了腿部关节的位移和角速度。通过不同的关节位移和速度组合实现的股四头肌等效拉伸速率,在屈曲的腿部引起了平均反射波幅的等效衰减。反射波幅与拉伸速率呈指数关系(R2 = 0.98,P < 0.01)。结果表明,这种脊髓感觉运动通路的波幅衰减源于膝关节和/或髋关节的异侧伸肌中的肌梭放电,并与运动相关。