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小鼠前庭眼反射和视动反应的动态特性、相互作用及适应性改变

Dynamic properties, interactions and adaptive modifications of vestibulo-ocular reflex and optokinetic response in mice.

作者信息

Iwashita M, Kanai R, Funabiki K, Matsuda K, Hirano T

机构信息

Department of Biophysics, Graduate School of Science, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Neurosci Res. 2001 Mar;39(3):299-311. doi: 10.1016/s0168-0102(00)00228-5.

Abstract

Dynamic properties of horizontal vestibulo-ocular reflex (VOR) and optokinetic response (OKR) were studied in mice. The VOR was examined in the dark (VORD), in the light (VORL) and in the condition in which most of the visual field moves synchronously with the head motion (VORF). A mouse and/or a surrounding screen with vertical stripes was rotated sinusoidally, and the gain and phase of eye movements were measured in wide dynamic stimulation ranges. The working conditions of VOR and OKR were supplementary; OKR worked at low speeds of head turn and VOR at high speeds. Examination of VORL and VORF revealed non-linear interaction of VOR and OKR. The continuous sinusoidal head oscillation coupled with the in-phase or the out-of-phase oscillation of the surrounding screen, decreased or increased the VORD gain, and increased or decreased the VORD phase lead, respectively. Continuous oscillation of the surrounding screen increased the OKR gain and decreased the phase delay. These changes of VOR and OKR work to reduce the retinal slip. The present study provides fundamental information concerning the dynamic properties of VOR and OKR and the nature of their adaptive modifications in mice, which have been extensively used in genetic manipulation recently.

摘要

研究了小鼠水平前庭眼反射(VOR)和视动反应(OKR)的动态特性。在黑暗中(VORD)、在光照下(VORL)以及在大部分视野与头部运动同步移动的条件下(VORF)对VOR进行了检测。将一只小鼠和/或带有垂直条纹的周围屏幕进行正弦旋转,并在宽动态刺激范围内测量眼球运动的增益和相位。VOR和OKR的工作条件是互补的;OKR在头部转动低速时起作用,VOR在高速时起作用。对VORL和VORF的检测揭示了VOR和OKR的非线性相互作用。连续的正弦头部振荡与周围屏幕的同相或异相振荡相结合,分别降低或增加了VORD增益,并增加或减少了VORD相位超前。周围屏幕的连续振荡增加了OKR增益并减少了相位延迟。VOR和OKR的这些变化有助于减少视网膜滑动。本研究提供了有关VOR和OKR动态特性及其在小鼠中适应性改变本质的基础信息,小鼠最近已广泛用于基因操作。

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