Gerlach I, Thier P, Koehler W
Department of Neurology, University of Tübingen, Federal Republic of Germany.
Exp Brain Res. 1991;85(3):641-9. doi: 10.1007/BF00231750.
Single unit recordings from two alert cats were used in an attempt to further elucidate the function of the lateral mesencephalic tegmental region (LTR), a part of the mesencephalon forming a link between the superior colliculus and the lower brain stem. A total of 155 units recorded from the LTR were tested with visual, vestibular and acoustic stimuli. Of these, 54 cells (36%) were characterized as either visually (n = 33) or vestibularly (n = 21) responsive and an additional 13 cells were driven by complex acoustic stimuli. Visually responsive cells typically were directionally selective with large, mainly contralateral receptive fields. Vestibularly responsive cells were modulated by stimulation of either the horizontal canals (yaw stimulation; n = 16) or of both pairs of vertical canals (pitch stimulation; n = 5). About half of the cells with activity modulated by rotation about the yaw axis increased discharge during ipsiversive (Type I), the other half during contraversive rotation (Type II). Of the 5 cells with activity modulated by pitch stimulation, 4 preferred the nose-down and only 1 the nose-up direction. Although the discharge of units responsive to yaw stimulation was roughly in phase with head velocity (mean phase lag with respect to head velocity: 10.6 deg), none of the vestibular cells had activity correlated with eye position, eye velocity or movement of visual stimuli. Our observations suggest that the LTR might introduce visual and vestibular signals into the tecto- facial pathway which may be used to adjust the size of pinna movements with respect to the size of ongoing head- or body movements.
对两只清醒猫进行单神经元记录,以进一步阐明中脑外侧被盖区(LTR)的功能。中脑的这一部分在顶盖和脑干下部之间形成连接。共对从LTR记录的155个神经元施加视觉、前庭和听觉刺激进行测试。其中,54个细胞(36%)被确定为对视觉(n = 33)或前庭(n = 21)刺激有反应,另有13个细胞由复杂听觉刺激驱动。视觉反应细胞通常具有方向选择性,具有大的、主要是对侧的感受野。前庭反应细胞通过刺激水平半规管(偏航刺激;n = 16)或两对垂直半规管(俯仰刺激;n = 5)进行调节。在受偏航轴旋转调节活动的细胞中,约一半在同侧旋转(I型)时放电增加,另一半在对侧旋转(II型)时放电增加。在受俯仰刺激调节活动的5个细胞中,4个偏好头向下方向,只有1个偏好头向上方向。尽管对偏航刺激有反应的神经元放电大致与头部速度同步(相对于头部速度的平均相位滞后:10.6度),但没有一个前庭细胞的活动与眼位、眼速度或视觉刺激的运动相关。我们的观察结果表明,LTR可能将视觉和前庭信号引入顶盖-面神经通路,这可能用于根据正在进行的头部或身体运动的大小来调整耳廓运动的大小。