Denise P, Darlot C, Wilson V J, Berthoz A
Exp Brain Res. 1987;67(2):411-9. doi: 10.1007/BF00248561.
Modulation of vestibulo-spinal reflexes by gaze is a model system for studying interactions between voluntary and reflex motor activity. In the alert cat, the EMG of Splenius and Obliquus capitis muscles increases with ipsilateral gaze eccentricity during spontaneous eye movements. Labyrinth stimulation by current pulses evokes EMGs with latencies consistent with a three neuron vestibulocollic pathway. The amplitude of evoked activity increases with eye position. The directions in which eye movements increase EMG was usually the same for both spontaneous and induced EMG activity, namely, horizontal and ipsilateral. However, sometimes the increase in spontaneous EMG occurred with horizontal eye position, whereas the induced EMG changed with vertical eye position. Spontaneous and evoked EMG are then modulated by different eye position signals. Command signals reflecting eye position probably reach two different types of neurons in the vestibulo-collic pathway, most likely secondary vestibular neurons and neck muscle motoneurons.
注视对前庭脊髓反射的调制是研究随意运动与反射运动活动之间相互作用的一个模型系统。在清醒猫中,当自发眼球运动时,夹肌和头斜肌的肌电图会随着同侧注视偏心率的增加而增强。电流脉冲刺激迷路会诱发肌电图,其潜伏期与三神经元前庭颈反射通路一致。诱发活动的幅度随眼睛位置而增加。眼球运动增加肌电图的方向对于自发和诱发的肌电图活动通常是相同的,即水平和同侧方向。然而,有时自发肌电图的增加发生在水平眼位时,而诱发肌电图则随垂直眼位而变化。因此,自发和诱发的肌电图受不同的眼位信号调制。反映眼位的指令信号可能到达前庭颈反射通路中两种不同类型的神经元,很可能是次级前庭神经元和颈部肌肉运动神经元。