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恒河猴前庭系统中角运动的惯性表征。I. 前庭眼反射。

Inertial representation of angular motion in the vestibular system of rhesus monkeys. I. Vestibuloocular reflex.

作者信息

Angelaki D E, Hess B J

机构信息

Department of Neurology, University of Zürich, Switzerland.

出版信息

J Neurophysiol. 1994 Mar;71(3):1222-49. doi: 10.1152/jn.1994.71.3.1222.

Abstract
  1. The spatial organization of the vestibuloocular reflex (VOR) was studied in six rhesus monkeys by applying fast, short-lasting, passive head and body tilts immediately after constant-velocity rotation (+/- 90 degrees/s) about an earth-vertical axis. Two alternative hypotheses were investigated regarding the reference frame used for coding angular motion. 1) If the vestibular system is organized in head-centered coordinates, postrotatory eye velocity would decay invariably along the direction of applied head angular acceleration. 2) Alternatively, if the vestibular system codes angular motion in inertial, gravity-centered coordinates, postrotatory eye velocity would decay along the direction of gravity. 2. Horizontal VOR was studied with the monkeys upright. Pitch (roll) tilts away from upright elicited a transient vertical (torsional) VOR and shortened the time constant of the horizontal postrotatory slow phase velocity. In addition, an orthogonal torsional (after pitch tilts) or vertical (after roll tilts) response gradually built up. As a result, the eye velocity vector transiently deviated in the roll (pitch) plane and then gradually rotated in the same direction as gravity in the pitch (roll) head plane until the orthogonal component reached a peak value. Subsequently, the residual postrotatory eye velocity decayed along a line parallel to gravity. 3. The time constant of the horizontal postrotatory response was maximal in upright position (21.5 +/- 5.7 s, mean +/- SD) and minimal after tilts to prone (3.8 +/- 0.7 s), supine (4.5 +/- 1.2 s), and ear-down (5.2 +/- 1.6 s) positions. A similar dependence on head orientation relative to gravity characterized the dynamics of the resultant eye velocity vector in the pitch and roll planes. 4. Torsional VOR was studied with the monkeys in supine or prone position. Pitch (yaw) tilts from the supine or prone position toward upright (ear-down) position elicited a transient vertical (horizontal) VOR and shortened the time constant of the torsional postrotatory response while a horizontal (vertical) orthogonal component slowly built up. As a result the eye velocity vector gradually rotated in the pitch (yaw) plane until the orthogonal component reached a peak value. Subsequently residual postrotatory eye velocity decayed along a line parallel to gravity. 5. The time constant of the torsional postrotatory response in supine/prone positions was 16.5 +/- 6.8 s. After tilts from supine/prone positions toward upright position, time constants decreased and were minimal after tilts to upright position (2.7 +/- 0.7 s).(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 通过在绕地球垂直轴进行恒速旋转(±90度/秒)后立即施加快速、短暂的被动头部和身体倾斜,对六只恒河猴的前庭眼反射(VOR)的空间组织进行了研究。针对用于编码角运动的参考系,研究了两种替代假设。1)如果前庭系统以头部为中心的坐标进行组织,旋转后眼速度将始终沿所施加头部角加速度的方向衰减。2)或者,如果前庭系统以惯性、以重力为中心的坐标编码角运动,旋转后眼速度将沿重力方向衰减。2. 在猴子直立时研究水平VOR。远离直立的俯仰(横滚)倾斜引发短暂的垂直(扭转)VOR,并缩短了水平旋转后慢相速度的时间常数。此外,一个正交的扭转(俯仰倾斜后)或垂直(横滚倾斜后)响应逐渐增强。结果,眼速度矢量在横滚(俯仰)平面内短暂偏离,然后在俯仰(横滚)头部平面内沿与重力相同的方向逐渐旋转,直到正交分量达到峰值。随后,剩余的旋转后眼速度沿与重力平行的线衰减。3. 水平旋转后响应的时间常数在直立位置时最大(21.5±5.7秒,平均值±标准差),在倾斜到俯卧、仰卧和耳向下位置后最小(分别为3.8±0.7秒、4.5±1.2秒和5.2±1.6秒)。俯仰和横滚平面中合成眼速度矢量的动力学也表现出对相对于重力的头部方向的类似依赖性。4. 在猴子仰卧或俯卧位置时研究扭转VOR。从仰卧或俯卧位置向直立(耳向下)位置的俯仰(偏航)倾斜引发短暂的垂直(水平)VOR,并缩短了扭转旋转后响应的时间常数,同时一个水平(垂直)正交分量缓慢增强。结果,眼速度矢量在俯仰(偏航)平面内逐渐旋转,直到正交分量达到峰值。随后,剩余的旋转后眼速度沿与重力平行的线衰减。5. 仰卧/俯卧位置扭转旋转后响应的时间常数为16.5±6.8秒。从仰卧/俯卧位置向直立位置倾斜后,时间常数减小,在倾斜到直立位置后最小(2.7±0.7秒)。(摘要截断于400字)

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