Suppr超能文献

豚鼠中由明显移动的视觉模式引发的视动性眼球运动。

Optokinetic eye movements elicited by an apparently moving visual pattern in guinea pigs.

作者信息

Marlinsky V V, Kröller J

机构信息

Institute of Physiology, Freie Universität, Berlin, Germany.

出版信息

Exp Brain Res. 2000 Apr;131(3):350-8. doi: 10.1007/s002219900308.

Abstract

Based on known anatomical and physiological properties, guinea pigs could be expected to show a lack of cortical impact on the basic properties of optokinetic nystagmus (OKN) such as eye movements elicited by a rotating striped drum. The present study aimed to clarify the question of whether the guinea pig's brainstem-mediated circuit is capable of generating horizontal OKN with the animal binocularly viewing a stationary stroboscopically illuminated striped pattern (apparent-motion OKN). A striped drum with a pattern periodicity of 2.37 degrees was rotated around the animal. The OKN buildup under real stimulation conditions was found to be largely devoid of a rapid initial rise in slow-phase eye velocity (direct OKN component). Only in a few recordings was a slight initially faster acceleration seen eliciting slow-phase eye velocities of 2 degrees/s at the most. The lack of a rapid initial rise proves that the optokinetic reflex loop does not possess a functionally significant cortically mediated component. To achieve apparent-motion OKN, initially in each recording real-motion OKN was elicited by the constantly illuminated rotating pattern. Then, 60 or 90 s later the drum was stopped and the illumination switched over from constant to flashing light. Following Grüsser and Behrens (1979), we calculated an apparent stimulus velocity (= flash frequency x 2.37 degrees) and an apparent OKN gain. We found that all animals continued in nystagmus under the flashing light condition. The slow-phase eye velocity was the same as under real pattern motion, with gain values of between 0.36 and 0.7. In two animals we produced an apparent gain close to unity by suddenly doubling the flash interval, i.e., halving the apparent drum velocity. This gain, however, did not remain at a high level: The slow-phase eye velocity decreased until the previous lower gain was reached again. The data indicate that cortical mechanisms are not necessary to produce nystagmus under apparent-motion stimulation and neither phi nor sigma phenomena of motion perception satisfactorily explain the apparent-motion OKN in the guinea pig. Our data provide evidence that the brainstem-located velocity storage mechanism plays a decisive role in keeping the eye in motion under apparent-motion stimulation.

摘要

基于已知的解剖学和生理学特性,可以预期豚鼠的皮质对视动性眼震(OKN)的基本特性,如由旋转条纹鼓引起的眼球运动,不会产生影响。本研究旨在阐明豚鼠脑干介导的神经回路是否能够在动物双眼观察静止的频闪照明条纹图案(表观运动OKN)时产生水平OKN。一个图案周期为2.37度的条纹鼓围绕动物旋转。发现在实际刺激条件下OKN的形成在很大程度上没有慢相眼速度的快速初始上升(直接OKN成分)。仅在少数记录中观察到轻微的初始更快加速,最多引起2度/秒的慢相眼速度。缺乏快速初始上升证明视动反射回路不具有功能上重要的皮质介导成分。为了实现表观运动OKN,最初在每次记录中通过持续照明的旋转图案诱发真实运动OKN。然后,60或90秒后鼓停止,照明从恒定光切换为闪光。按照格鲁瑟和贝伦斯(1979年)的方法,我们计算了表观刺激速度(=闪光频率×2.37度)和表观OKN增益。我们发现所有动物在闪光条件下都继续出现眼震。慢相眼速度与实际图案运动时相同,增益值在0.36至0.7之间。在两只动物中,我们通过突然将闪光间隔加倍,即表观鼓速度减半,使表观增益接近1。然而,这种增益并没有保持在高水平:慢相眼速度下降,直到再次达到先前较低的增益。数据表明,在表观运动刺激下产生眼震不需要皮质机制,运动感知的φ现象和σ现象都不能令人满意地解释豚鼠的表观运动OKN。我们的数据提供了证据,表明位于脑干的速度存储机制在表观运动刺激下使眼睛保持运动方面起决定性作用。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验