Hardy O, Mirenowicz J
IDN-Department des Neurosciences de la Vision, Université P. et M. Curie, Paris, France.
Exp Brain Res. 1991;85(3):616-20. doi: 10.1007/BF00231746.
Anatomical and electrophysiological data have shown that, in the guinea pig as well as in the cat, the nucleus prepositus hypoglossi gives rise to a disynaptic ascending projection to the superior colliculus via the peri-parabigeminal area in the mesencephalon. The functional role of this indirect pathway in the generation of eye movements has been studied by pharmacologically interfering at the mesencephalic level and by examining the induced effects on two differently elicited saccades in the alert guinea pig. A small iontophoretic injection of kainic acid induces a transient increase of the spontaneous saccadic activity in the contraversive direction leading to a pseudo-nystagmus. Both the amplitude and the mean velocity of the contraversive saccades are greater than before the injection. A similar enhancement also affects the parameters of the contraversive saccades induced by trunk rotations. These results suggest that peri-parabigeminal neurones exert an excitatory influence on their target cells in the ipsilateral superior colliculus which is responsible for contraversive rapid eye movements.
解剖学和电生理学数据表明,在豚鼠和猫中,舌下前置核通过中脑的旁连合周区产生一条双突触的上行投射至中脑上丘。通过在中脑水平进行药理学干预,并检查对警觉豚鼠两种不同诱发扫视的诱导效应,研究了这条间接通路在眼球运动产生中的功能作用。微量离子电渗法注射 kainic 酸会导致向对侧方向的自发性扫视活动短暂增加,从而引发假性眼球震颤。对侧扫视的幅度和平均速度均大于注射前。类似的增强效应也影响由躯干旋转诱发的对侧扫视的参数。这些结果表明,旁连合周神经元对同侧上丘中的靶细胞施加兴奋性影响,这与对侧快速眼球运动有关。