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人类的扫视-聚散相互作用。

Saccade-vergence interactions in humans.

作者信息

Zee D S, Fitzgibbon E J, Optican L M

机构信息

Laboratory of Sensorimotor Research, National Eye Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Neurophysiol. 1992 Nov;68(5):1624-41. doi: 10.1152/jn.1992.68.5.1624.

DOI:10.1152/jn.1992.68.5.1624
PMID:1479435
Abstract
  1. We recorded eye movements in four normal human subjects during refixations between targets calling for various combinations of saccades and vergence. We confirmed and extended prior observations of 1) transient changes in horizontal ocular alignment during both pure horizontal saccades (relative divergence followed by relative convergence) and pure vertical saccades (usually divergence for upward and convergence for downward saccades); 2) occasional, high-frequency (20-25 Hz), conjugate oscillations along the axis orthogonal to the main saccade; and 3) the speeding up of horizontal vergence by both horizontal and vertical saccades. 2. To interpret these findings, we developed a hypothesis for the generation of vergence to step changes in target depth, both with and without associated saccades. The essential features of this hypothesis are 1) the transient changes in horizontal ocular alignment during pure horizontal saccades reflect asymmetries in the mechanical properties of the lateral and medial rectus muscles causing adduction to lag abduction; 2) pure vergence movements in response to step changes in target depth are generated by a neural network that uses a desired change in vergence position as its input command and instantaneous vergence motor error (the difference between the desired change and the actual change in vergence) to drive vergence premoter neurons; and 3) the facilitation of horizontal vergence by saccades arises from nonlinear interactions in central premotor circuits. 3. The hypothetical network for generating pure vergence to step changes in target depth is analogous in structure to the local feedback model for the generation of saccades and has the same conceptual appeal. With the assumption of a single nonlinearity describing the relationship between a vergence motor error signal and the output of the neurons that generate promoter vergence velocity commands, this model generates pure vergence movements with peak velocity-amplitude relationships and trajectories that closely match those of experimental data. 4. Several types of models are proposed for the central, nonlinear interaction that occurs when saccades and vergence are combined. Common to all models is the idea that omnidirectional pause neurons (OPN), which are thought to gate activity for saccade burst neurons, also gate activity for saccade-related vergence. In one model we hypothesize the existence of a separate class of saccade-related vergence burst neurons, which generate premotor horizontal vergence commands but only during saccades. In a second model we hypothesize separate right eye and left eye saccadic burst neurons that receive not only conjugate, but also equal but oppositely directed vergence error signals.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们记录了4名正常人类受试者在针对不同扫视和聚散组合的目标之间进行重新注视时的眼动情况。我们证实并扩展了之前的观察结果:1)在纯水平扫视(相对散开随后相对会聚)和纯垂直扫视(通常向上扫视时散开,向下扫视时会聚)过程中,水平眼位会发生短暂变化;2)偶尔会出现沿与主扫视轴正交的轴的高频(20 - 25赫兹)共轭振荡;3)水平和垂直扫视都会加快水平聚散。2. 为了解释这些发现,我们针对目标深度的阶跃变化产生聚散的情况,提出了一个有或没有相关扫视时的假设。该假设的基本特征是:1)纯水平扫视过程中水平眼位的短暂变化反映了外直肌和内直肌机械特性的不对称,导致内收滞后于外展;2)针对目标深度阶跃变化的纯聚散运动由一个神经网络产生,该网络将期望的聚散位置变化作为输入指令,并利用瞬时聚散运动误差(期望变化与实际聚散变化之间的差异)来驱动聚散运动前神经元;3)扫视对水平聚散的促进作用源于中枢运动前回路中的非线性相互作用。3. 用于产生针对目标深度阶跃变化的纯聚散的假设网络在结构上类似于产生扫视的局部反馈模型,并且具有相同的概念吸引力。假设存在一个单一的非线性关系来描述聚散运动误差信号与产生聚散运动速度指令的神经元输出之间的关系,该模型产生的纯聚散运动的峰值速度 - 幅度关系和轨迹与实验数据非常匹配。4. 针对扫视和聚散组合时发生的中枢非线性相互作用,提出了几种类型的模型。所有模型的共同观点是,全向暂停神经元(OPN)被认为对扫视爆发神经元的活动进行门控,也对与扫视相关的聚散活动进行门控。在一个模型中,我们假设存在一类单独的与扫视相关的聚散爆发神经元,它们仅在扫视期间产生水平聚散运动前指令。在第二个模型中,我们假设存在单独的右眼和左眼扫视爆发神经元,它们不仅接收共轭信号,还接收大小相等但方向相反的聚散误差信号。(摘要截断于400字)

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