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警觉猫在垂直直线运动过程中稳定注视反射的功能耦合

Functional coupling of the stabilizing gaze reflexes during vertical linear motion in the alert cat.

作者信息

Lacour M, Borel L

出版信息

Prog Brain Res. 1989;80:385-94; discussion 373-5. doi: 10.1016/s0079-6123(08)62234-7.

Abstract

Eye-head coordination is mainly achieved by means of stabilizing reflexes (VOR, VCR, OKR) and orienting movements (eye-neck surgery) underlying the close cooperation of the visual and vestibular systems in gaze stabilization. The functional coupling of these different sensorimotor subsystems has been principally analysed using rotatory stimulation of the whole body and/or of the visual surround. The aim of the present study was to investigate the dynamic properties of these stabilizing gaze reflexes and their coupling during linear motion in the vertical plane. These investigations were performed in the alert cat under open-loop conditions (head fixed). Otolith stimulation consisted of vertically translating the cat in total darkness using sinusoidal linear motion (0.025 Hz-1.39 Hz; 290 mm peak-to-peak amplitude). Optokinetic stimulation was provided by sinusoidally moving a pseudo-random visual pattern in front of the cat and in the vertical plane, with identical kinematic parameters. Normal visual-otolith interaction was performed by translating the cat in front of the stationary visual surround while conflicting interaction was provided by moving the animal and the visual pattern in phase and at the same velocity (visual stabilization). Results showed that the vertical otolith-neck reflex is very poorly developed or absent in the low frequency range of motion (0.025 Hz-0.25 Hz) while consistent EMG activity is found during pure optokinetic stimulation. EMG responses are in phase with the visual surround velocity in the upward direction and with the upward OKR velocity. A close correlation is observed between the EMG gain and the OKR gain, which both decrease in this low frequency range, indicating that gaze stabilization would be mainly ensured by the OKR and a functional oculo-collic coupling or eye-neck surgery in the vertical plane. On the contrary, gaze stabilization is principally achieved by way of the otolith-neck reflex in the higher frequency range of motion (above 0.25 Hz). EMG responses recorded during otolith stimulation exhibit a relatively constant gain and a phase lead with respect to motion velocity which progressively reduces as the stimulus frequency increases up to 1.39 Hz. When present, EMG responses evoked during the optokinetic stimulation show strong gain attenuation and phase lag. Normal visual-otolith interaction induces neck muscle activity which parallels the optokinetic and the otolith responses in the low and high frequency ranges, respectively. The motor responses are however improved in terms of gain and phase values in the whole frequency range when both sensory inputs are combined.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

眼头协调主要通过稳定反射(前庭眼反射、视动性眼震反射、视动反射)和定向运动(眼颈协同运动)来实现,这些反射和运动基于视觉和前庭系统在注视稳定中的紧密合作。这些不同的感觉运动子系统的功能耦合主要通过对全身和/或视觉环境进行旋转刺激来分析。本研究的目的是研究这些稳定注视反射的动态特性及其在垂直平面线性运动过程中的耦合。这些研究是在清醒猫处于开环条件(头部固定)下进行的。耳石刺激包括在完全黑暗中使用正弦线性运动(0.025 Hz - 1.39 Hz;峰峰值幅度为290 mm)垂直移动猫。视动刺激是通过在猫前方垂直平面内以相同运动学参数正弦移动伪随机视觉图案来提供的。正常的视觉 - 耳石相互作用是通过在静止视觉环境前移动猫来实现的,而冲突的相互作用则是通过使动物和视觉图案同相且以相同速度移动(视觉稳定)来提供的。结果表明,在低频运动范围(0.025 Hz - 0.25 Hz)中,垂直耳石 - 颈反射发育很差或不存在,而在纯视动刺激期间可发现持续的肌电图活动。肌电图反应在向上方向与视觉环境速度同相,在向上视动反射速度方面也同相。在肌电图增益和视动反射增益之间观察到密切相关性,两者在该低频范围内均降低,这表明注视稳定主要由视动反射以及垂直平面内的功能性眼 - 脑桥耦合或眼颈协同运动来确保。相反,在较高频率运动范围(高于0.25 Hz)中,注视稳定主要通过耳石 - 颈反射来实现。在耳石刺激期间记录的肌电图反应表现出相对恒定的增益以及相对于运动速度的相位超前,随着刺激频率增加至1.39 Hz,该相位超前逐渐减小。当存在时,视动刺激期间诱发的肌电图反应表现出强烈的增益衰减和相位滞后。正常的视觉 - 耳石相互作用分别在低频和高频范围内诱发与视动反应和耳石反应平行的颈部肌肉活动。然而,当两种感觉输入结合时,运动反应在整个频率范围内的增益和相位值方面都得到了改善。(摘要截断于400字)

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