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首页> 外文期刊>Biological Cybernetics >Linear ensemble-coding in midbrain superior colliculus specifies the saccade kinematics
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Linear ensemble-coding in midbrain superior colliculus specifies the saccade kinematics

机译:中脑上丘的线性系综编码指定扫视运动学

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摘要

Recently, we proposed an ensemble-coding scheme of the midbrain superior colliculus (SC) in which, during a saccade, each spike emitted by each recruited SC neuron contributes a fixed minivector to the gaze-control motor output. The size and direction of this ‘spike vector’ depend exclusively on a cell’s location within the SC motor map (Goossens and Van Opstal, in J Neurophysiol 95: 2326–2341, 2006). According to this simple scheme, the planned saccade trajectory results from instantaneous linear summation of all spike vectors across the motor map. In our simulations with this model, the brainstem saccade generator was simplified by a linear feedback system, rendering the total model (which has only three free parameters) essentially linear. Interestingly, when this scheme was applied to actually recorded spike trains from 139 saccade-related SC neurons, measured during thousands of eye movements to single visual targets, straight saccades resulted with the correct velocity profiles and nonlinear kinematic relations (‘main sequence properties– and ‘component stretching’) Hence, we concluded that the kinematic nonlinearity of saccades resides in the spatial-temporal distribution of SC activity, rather than in the brainstem burst generator. The latter is generally assumed in models of the saccadic system. Here we analyze how this behaviour might emerge from this simple scheme. In addition, we will show new experimental evidence in support of the proposed mechanism.
机译:最近,我们提出了一种中脑上丘(SC)的整体编码方案,其中,在扫视过程中,每个新招募的SC神经元发出的每个尖峰都为凝视控制运动输出贡献了一个固定的向量。 “尖峰向量”的大小和方向完全取决于SC运动图中细胞的位置(Goossens和Van Opstal,J Neurophysiol 95:2326–2341,2006)。根据这个简单的方案,计划的扫视轨迹是由整个运动图中所有尖峰矢量的瞬时线性求和得出的。在我们使用该模型进行的模拟中,脑干扫视发生器通过线性反馈系统进行了简化,使整个模型(只有三个自由参数)基本呈线性。有趣的是,当此方案应用于从139个与扫视相关的SC神经元的实际记录的尖峰序列(在数千次眼睛运动到单个视觉目标的过程中进行测量)时,直线扫视具有正确的速度分布和非线性运动关系(“主序列特性-和因此,我们得出结论,扫视运动学非线性存在于SC活动的时空分布中,而不是在脑干爆发发生器中。后者通常在声像系统的模型中假设。在这里,我们分析了这种行为如何从这种简单的方案中出现。此外,我们将展示新的实验证据来支持所提出的机制。

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