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实验室小鼠在静态倾斜过程中的眼睛方位及其与自发头部俯仰的关系。

Eye orientation during static tilts and its relationship to spontaneous head pitch in the laboratory mouse.

作者信息

Oommen Brian S, Stahl John S

机构信息

Case Western Reserve University School of Medicine, Cleveland, OH 44106-5040, USA.

出版信息

Brain Res. 2008 Feb 8;1193:57-66. doi: 10.1016/j.brainres.2007.11.053. Epub 2007 Dec 5.

DOI:10.1016/j.brainres.2007.11.053
PMID:18178173
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2278379/
Abstract

Both eye position and head orientation are influenced by the macular (otolith) organs, via the tilt maculo-ocular reflex (tiltMOR) and the vestibulo-collic reflexes, respectively. The mechanisms that control head position also influence the rest position of the eye because head orientation influences eye position through the tiltMOR. Despite the increasing popularity of mice for studies of vestibular and ocular motor functions, relatively little is known in this species about tiltMOR, spontaneous orientation of the head, and their interrelationship. We used 2D video oculography to determine in C57BL/6 mice the absolute horizontal and vertical positions of the eyes over body orientations spanning 360 degrees about the pitch and roll axes. We also determined head pitch during ambulation in the same animals. Eye elevation varied approximately sinusoidally as functions of pitch or roll angle. Over the central +/-30 degrees of pitch, sensitivity and gain in the light were 31.7 degrees/g and 0.53, respectively. The corresponding values for roll were 31.5 degrees/g and 0.52. Absolute positions adopted in light and darkness differed only slightly. During ambulation, mice carried the lambda-bregma plane at a downward pitch of 29 degrees , corresponding to a horizontal eye position of 64 degrees and a vertical eye position of 22 degrees . The vertical position is near the center of the range of eye movements produced by the pitch tiltMOR. The results indicate that the tiltMOR is robust in this species and favor standardizing pitch orientation across laboratories. The robust tiltMOR also has significant methodological implications for the practice of pupil-tracking video oculography in this species.

摘要

眼睛位置和头部方位分别通过倾斜黄斑 - 眼反射(tiltMOR)和前庭 - 颈反射受黄斑(耳石)器官影响。控制头部位置的机制也会影响眼睛的静止位置,因为头部方位通过tiltMOR影响眼睛位置。尽管小鼠在研究前庭和眼球运动功能方面越来越受欢迎,但对于该物种的tiltMOR、头部的自发方位及其相互关系却知之甚少。我们使用二维视频眼动图法,在C57BL / 6小鼠中确定眼睛在围绕俯仰轴和横滚轴360度的身体方位上的绝对水平和垂直位置。我们还确定了同一只动物在行走过程中的头部俯仰情况。眼睛高度随俯仰或横滚角度近似呈正弦变化。在中央±30度俯仰范围内,光照条件下的敏感度和增益分别为31.7度/克和0.53。横滚的相应值为31.5度/克和0.52。明视和暗视下采用的绝对位置仅有轻微差异。在行走过程中,小鼠的人字缝 - 前囟平面以29度的向下俯仰角保持,对应水平眼位为64度,垂直眼位为22度。垂直位置接近俯仰tiltMOR产生的眼球运动范围的中心。结果表明,tiltMOR在该物种中很稳定,这有利于各实验室统一俯仰方位标准。这种稳定的tiltMOR对该物种瞳孔跟踪视频眼动图法的实践也具有重要的方法学意义。

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