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清醒猴子在内侧纵束(MLF)中的纤维在前庭或视觉刺激诱发的水平和垂直共轭眼球运动期间的反应。

Responses of fibers in medial longitudinal fasciculus (MLF) of alert monkeys during horizontal and vertical conjugate eye movements evoked by vestibular or visual stimuli.

作者信息

King W M, Lisberger S G, Fuchs A F

出版信息

J Neurophysiol. 1976 Nov;39(6):1135-49. doi: 10.1152/jn.1976.39.6.1135.

Abstract

Extracellular recordings were obtained from 37 histologically identified MLF fibers near the trochlear nucleus in alert monkeys trained to perform a visual tracking task and subjected to adequate horizontal and vertical vestibular stimulation. The behavioral paradigm permitted independent quantitative assessment of a fiber's response to eye or head movements. 2. According to their discharge pattern, almost all MLF fibers were placed in one of two classes: 1) Horizontal burst-tonic fibers (n = 20). During both vestibular and visually evoked eye movements, burst-tonic fibers discharged in strict relation to horizontal eye movements, exhibiting a burst of activity prior to on-direction saccades and steady firing related to horizontal eye position during fixations. 2) Vertical vestibular plus eye-position fibers (n = 14). Vertical fibers discharged in relation to vertical head velocity in the absence of eye movements and in relation to vertical eye position in the absence of head movement, and paused with saccades in any direction. 3. The quantitative similarity of horizontal burst-tonic fiber discharge to that of ipsilateral medial rectus oculomotoneurons suggests that burst-tonic fibers provide the major excitatory synaptic drive to medial rectus motoneurons during conjugate eye movements of vestibular or visual origin. 4. The discharge pattern of vertical vestibular plus eye-position fibers is significantly different from that of oculomotoneurons, suggesting that additional neural processing of vertical fiber information must occur in the mesencephalon. 5. The functional dichotomy of horizontal and vertical MLF fibers and their contrasting discharge patterns provide new evidence for the anatomic and functional separation of horizontal and vertical eye movement mechanisms in the pons and mesencephalon, respectively.

摘要

在经过训练能执行视觉跟踪任务并接受适当水平和垂直前庭刺激的清醒猴子中,从滑车神经核附近37条经组织学鉴定的内侧纵束(MLF)纤维上进行了细胞外记录。该行为范式允许对纤维对眼球或头部运动的反应进行独立的定量评估。2. 根据其放电模式,几乎所有MLF纤维都被归入以下两类之一:1)水平爆发 - 紧张性纤维(n = 20)。在前庭和视觉诱发的眼球运动期间,爆发 - 紧张性纤维的放电与水平眼球运动密切相关,在同向扫视之前表现出一阵活动,在注视期间与水平眼球位置相关的稳定放电。2)垂直前庭加眼球位置纤维(n = 14)。垂直纤维在没有眼球运动时与垂直头部速度相关放电,在没有头部运动时与垂直眼球位置相关放电,并在任何方向的扫视时暂停。3. 水平爆发 - 紧张性纤维放电与同侧内直肌动眼神经运动神经元放电的定量相似性表明,在起源于前庭或视觉的共轭眼球运动期间,爆发 - 紧张性纤维为内直肌运动神经元提供主要的兴奋性突触驱动。4. 垂直前庭加眼球位置纤维的放电模式与动眼神经运动神经元的放电模式明显不同,这表明垂直纤维信息的额外神经处理必须发生在中脑。5. 水平和垂直MLF纤维的功能二分法及其不同的放电模式分别为脑桥和中脑中水平和垂直眼球运动机制的解剖学和功能分离提供了新证据。

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