Schor R H, Steinbacher B C, Yates B J
Department of Otolaryngology, University of Pittsburgh, PA 15213, USA.
J Vestib Res. 1998 Jan-Feb;8(1):107-16.
Responses to linear accelerations in the earth-horizontal plane (typically provoked by tilts of the head or body) are characterized by a stimulus direction that produces the maximal excitation. Although changes in cardiovascular, sympathetic, and respiratory outflow are maximized during pitch, no collection of central vestibular neurons had been identified where pitch responses predominate. In the present study, response properties of neurons in the medial vestibular nucleus were examined in decerebrate cats placed on a turntable. Activation of otolith afferents was provided by constant velocity rotation with the turntable axis tilted 5 degrees from the vertical. Responsive neurons exhibited a sinusoidal modulation in their firing rate; the optimal excitatory stimulus direction was derived from responses to clockwise and counterclockwise rotations. Many of these neurons were also tested for input from horizontal semicircular canals using 0.5 Hz sinusoidal rotation about an earth-vertical axis. Of 22 tilt-sensitive neurons in the medial vestibular nucleus whose optimal stimulus direction was determined, 9 were best stimulated by pitch, 10 by stimuli in one of the two vertical semicircular canal planes, and 3 by roll. Of the 33 neurons in this nucleus tested for possible convergent inputs from the otolith organs and the horizontal semicircular canals, 8 responded to both the constant velocity (otolith) stimulus and to the sinusoidal rotation, 7 appeared to receive otolith, but not horizontal canal, input, while 18 had a canal, but no otolith, response. Thus, besides serving as a relay for horizontal canal signals, the medial vestibular nucleus may also be an important relay for information about orientation within the sagittal (pitch) plane.
对地球水平面内线性加速度的反应(通常由头部或身体倾斜引起)的特征是存在产生最大兴奋的刺激方向。尽管在俯仰过程中心血管、交感神经和呼吸输出的变化最大,但尚未发现哪个中央前庭神经元集合以俯仰反应为主。在本研究中,在内侧前庭核中的神经元反应特性,在置于转盘上的去大脑猫中进行了检查。通过将转盘轴相对于垂直方向倾斜5度的恒速旋转来激活耳石传入神经。反应性神经元的放电频率呈现正弦调制;最佳兴奋刺激方向由对顺时针和逆时针旋转的反应得出。还使用绕地球垂直轴的0.5 Hz正弦旋转,对这些神经元中的许多进行了来自水平半规管的输入测试。在内侧前庭核中确定了最佳刺激方向的22个倾斜敏感神经元中,9个对俯仰刺激反应最佳,10个对两个垂直半规管平面之一中的刺激反应最佳,3个对横滚刺激反应最佳。在该核中测试了来自耳石器官和水平半规管可能的汇聚输入的33个神经元中,8个对恒速(耳石)刺激和正弦旋转均有反应,7个似乎接受耳石输入,但不接受水平半规管输入,而18个有半规管反应,但无耳石反应。因此,除了作为水平半规管信号的中继外,内侧前庭核也可能是矢状面(俯仰)内方向信息的重要中继。