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通过半规管堵塞对颈眼反射进行改良。

Modification of the cervico-ocular reflex by canal plugging.

作者信息

Yakushin Sergei B, Tarasenko Yelena, Raphan Theodore, Suzuki Jun-Ichi, Della Santina Charles C, Minor Lloyd B, Cohen Bernard

机构信息

Departments of Neurology, Mount Sinai School of Medicine, New York, New York 10029, USA.

出版信息

Ann N Y Acad Sci. 2009 May;1164:60-7. doi: 10.1111/j.1749-6632.2009.03775.x.

Abstract

The cervico-ocular reflex (COR) has a low gain in normal animals. In this study, we determined whether COR gain increases were specific to the low/midband frequency range, which is the range over which the angular vestibulo-ocular reflex (aVOR) is compromised by plugging. The gain and phase of the yaw and pitch COR and aVOR were compared in normal monkeys and those with all six semicircular canals or only the lateral canal plugged. During experiments animals sat with the body fixed to a chair and the head fixed in space. The body was oscillated about body-yaw and body-pitch axes over a frequency range of 0.05-6 Hz, with amplitude <10 degrees. For normal animals, both yaw and pitch eye velocities were compensatory to the relative velocity of the head with respect to the body. The gains were 0.1-0.2 at frequencies below 1 Hz and decreased to zero as stimulus frequency increased above 1 Hz. Canal-plugged animals had COR gains close to 1.0 at low frequencies, decreasing to approximately 0.6 at 0.5 Hz and to 0.2 for stimulus frequencies above 3 Hz. The phase of eye velocity was 180 degrees relative to head-re-body velocity at frequencies below 0.5 Hz and shifted toward 270 degrees as frequencies were increased to 4 Hz. This study demonstrates that adaptation of COR gain is tuned to a frequency range at which the aVOR is compromised by the canal plugging.

摘要

在正常动物中,颈眼反射(COR)的增益较低。在本研究中,我们确定COR增益的增加是否特定于低/中频范围,即角前庭眼反射(aVOR)因堵塞而受损的频率范围。在正常猴子以及所有六个半规管或仅外侧半规管堵塞的猴子中,比较了偏航和俯仰COR以及aVOR的增益和相位。实验过程中,动物坐在椅子上,身体固定,头部固定在空间中。身体围绕身体偏航轴和身体俯仰轴在0.05 - 6 Hz的频率范围内摆动,振幅<10度。对于正常动物,偏航和俯仰眼速度均与头部相对于身体的相对速度呈补偿关系。在低于1 Hz的频率下,增益为0.1 - 0.2,随着刺激频率高于1 Hz增加,增益降至零。半规管堵塞的动物在低频时COR增益接近1.0,在0.5 Hz时降至约0.6,在高于3 Hz的刺激频率下降至0.2。在低于0.5 Hz的频率下,眼速度的相位相对于头-身体速度为180度,随着频率增加到4 Hz,相位向270度偏移。本研究表明,COR增益的适应性调整到一个频率范围,在该频率范围内aVOR因半规管堵塞而受损。

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