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非垂直轴旋转后的半规管-耳石相互作用。II. 翻滚和俯仰旋转后前庭眼反射的时空特性。

Canal-otolith interactions after off-vertical axis rotations. II. Spatiotemporal properties of roll and pitch postrotatory vestibuloocular reflexes.

作者信息

Hess Bernhard J M, Jaggi-Schwarz Karin, Misslisch Hubert

机构信息

Department of Neurology, University of Zürich, Zürich, Switzerland.

出版信息

J Neurophysiol. 2005 Mar;93(3):1633-46. doi: 10.1152/jn.00383.2004. Epub 2004 Nov 3.

Abstract

We have examined the spatiotemporal characteristics of postrotatory eye velocity after roll and pitch off-vertical axis rotations (OVAR). Three rhesus monkeys were placed in one of 3 orientations on a 3-dimensional (3D) turntable: upright (90 degrees roll or pitch OVAR), 45 degrees nose-up (45 degrees roll OVAR), and 45 degrees left ear-down (45 degrees pitch OVAR). Subjects were then rotated at +/-60 degrees /s around the naso-occipital or interaural axis and stopped after 10 turns, in one of 7 final head orientations, each separated by 30 degrees . We found that postrotatory eye velocity showed horizontal-vertical components after roll OVAR and horizontal-torsional components after pitch OVAR that varied systematically as a function of final head orientation. The quantitative analysis suggests that, in contrast to the analogous yaw OVAR paradigm, a system of up to 3 real, gravity-dependent eigenvectors and eigenvalues determines the spatiotemporal characteristics of the residual eye velocities after roll and pitch OVAR. One of these eigenvectors closely aligned with gravity, whereas the other 2 determined the orientation of the earth horizontal plane. We propose that the spatial characteristics of eye velocity after roll and pitch OVAR follow the physical constraints of stationary orientation in a gravitational field and reflect the brain's best estimate of head-in-space orientation within an internal representation of 3D space.

摘要

我们研究了翻滚和俯仰非垂直轴旋转(OVAR)后眼旋转后速度的时空特征。将三只恒河猴置于三维(3D)转盘上的三种取向之一:直立(90度翻滚或俯仰OVAR)、鼻尖向上45度(45度翻滚OVAR)和左耳向下45度(45度俯仰OVAR)。然后让受试者围绕鼻枕轴或耳间轴以+/-60度/秒的速度旋转,10圈后停止,最终头部取向为7种之一,每种取向间隔30度。我们发现,翻滚OVAR后眼旋转后速度呈现水平-垂直分量,俯仰OVAR后呈现水平-扭转分量,这些分量随最终头部取向而系统变化。定量分析表明,与类似的偏航OVAR范式不同,一个由多达3个真实的、与重力相关的特征向量和特征值组成的系统决定了翻滚和俯仰OVAR后残余眼速度的时空特征。其中一个特征向量与重力紧密对齐,而另外两个决定了地球水平面的方向。我们提出,翻滚和俯仰OVAR后眼速度的空间特征遵循重力场中静止取向的物理约束,并反映了大脑在三维空间内部表征中对头部空间取向的最佳估计。

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