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变色龙中稳定注视的视觉和前庭反射。

Visual and vestibular reflexes that stabilize gaze in the chameleon.

作者信息

Gioanni H, Bennis M, Sansonetti A

机构信息

Laboratoire de Neurochimie-Anatomie, Université Pierre et Marie Curie, Paris, France.

出版信息

Vis Neurosci. 1993 Sep-Oct;10(5):947-56. doi: 10.1017/s0952523800006167.

Abstract

Spontaneous eye movements as well as visual, vestibular, and proprioceptive cervical reflexes which contribute to gaze stabilization were investigated in the chameleon using the magnetic search-coil technique. The oculomotor range of each eye was very large (180 deg horizontally x 80 deg vertically). Spontaneous ocular saccades were independent in the two eyes and could have very large amplitudes. The fast phases of nystagmus during the stabilization reflexes were also independent in the eyes. In the head-restrained condition, optokinetic nystagmus (OKN) had a low gain in both horizontal and vertical planes (0.35 at 5 deg/s) and showed little binocular interaction. The vestibulo-ocular reflex (VOR) exhibited a low gain (0.2-0.3 from 0.05-1 Hz) and a high-phase lead at low frequency (140 deg at 0.05 Hz). Rotation of the animal in the presence of a visible surround increased the overall gain of gaze stabilization to 0.4-0.5 (P < 0.01) and considerably reduced the phase lead (38 deg at 0.05 Hz). In the head-free condition, head and eye reflexes were active simultaneously during both optokinetic and vestibular stimulation, but nystagmic head movements appeared only occasionally with a rather loose eye-head coordination. During optokinetic stimulation, eye movements contributed more than head movements to gaze stabilization, whereas, during vestibular or visuo-vestibular stimulation, the relative contribution of eye and head responses varied with stimulus frequency. When the head was freed, overall gain for gaze stabilization increased from 0.35 to 0.45 (P < 0.05) for optokinetic stimulation at 5 deg/s and from 0.2-0.3 to 0.4-0.75 (P < 0.001) for vestibular stimulation at 0.05-1 Hz.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用磁搜索线圈技术,在变色龙身上研究了有助于凝视稳定的自发眼动以及视觉、前庭和本体感受性颈反射。每只眼睛的动眼范围非常大(水平方向180度×垂直方向80度)。双眼的自发眼扫视相互独立,且幅度可能非常大。稳定反射期间眼震的快相在双眼也相互独立。在头部受限的情况下,视动性眼震(OKN)在水平和垂直平面上的增益都很低(5度/秒时为0.35),并且几乎没有双眼相互作用。前庭眼反射(VOR)在低频(0.05 - 1赫兹)时增益较低(0.2 - 0.3),且相位超前较高(0.05赫兹时为140度)。在有可见背景的情况下旋转动物,可使凝视稳定的总体增益增加到0.4 - 0.5(P < 0.01),并显著降低相位超前(0.05赫兹时为38度)。在头部自由的情况下,在视动和前庭刺激期间,头部和眼睛反射同时活跃,但眼震性头部运动仅偶尔出现,眼-头协调相当松散。在视动刺激期间,眼动对凝视稳定的贡献大于头部运动,而在前庭或视-前庭刺激期间,眼睛和头部反应的相对贡献随刺激频率而变化。当头部自由时,5度/秒视动刺激下凝视稳定的总体增益从0.35增加到0.45(P < 0.05),0.05 - 1赫兹前庭刺激下从0.2 - 0.3增加到0.4 - 0.75(P < 0.001)。(摘要截取自250字)

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