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用静态闪光序列分析猫视觉皮层简单神经元方向选择性的机制。

Mechanism of directional selectivity in simple neurons of the cat's visual cortex analyzed with stationary flash sequences.

作者信息

Ganz L, Felder R

出版信息

J Neurophysiol. 1984 Feb;51(2):294-324. doi: 10.1152/jn.1984.51.2.294.

Abstract

The properties of simple neurons showing selectivity to direction of motion in area 17 of the cat cortex were examined. We analyzed in particular a sample of cells receiving a projection from 0 to 10 degrees in visual angle from the area centralis of the cat retina. Three categories of simple neurons were examined: directionally asymmetric (DA) neurons, directionally selective neurons of the unimodal type (DS1), and bimodal types (DS2). Poststimulus time histograms (PSTH) were obtained to moving white and black bars as well as to static onset sequences and static offset sequences. Our analysis involves a comparison of responses to single static flashes at various receptive-field locations with responses to sequence pairs of static flashes at those same locations. We find that DA neurons are not sensitive to the direction in which a pair of stimuli are presented. Inhibitory and excitatory responses show properties of linear summation whatever the direction of the stimulus sequence. Their behavior is reminiscent of retinal and LGN neurons. The synergy model accounts well for a DA neurons's directional asymmetry. If pairs of stimuli are close enough (usually an interstimulus distance of 20' or less for the central 10 degrees of the cat's visual field), then DS neurons show striking departures from linear summation. Specifically, this departure entails an anisotropic distribution of inhibition. The directional selectivity of DS neurons cannot be explained on the basis of a simple linear combination of their on and off region's responses. Directional selectivity is produced entirely within an on-excitatory discharge region or entirely within an off-excitatory discharge region. The excitatory discharge center of even the simplest unimodal DS neuron can be shown to be decomposable into subunits smaller than that discharge center. The fact that the spread of this anisotropy of inhibition is often much more restricted than the entire extent of the DS neuron's excitatory discharge center argues strongly that underlying subregions or modules are contributing their inputs to DS neurons. A DS neuron does not analyze motion as an isolated unit; to the contrary, it is probably embedded in a pool of mutually "cooperative" DS neurons. The basic module of directional analysis is responsive either to an on-on sequence or an off-off sequence but not to both. It is not selective to an on-off sequence. Therefore, unimodal DS neurons (DS1) are performing an analysis of single moving edges.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

对猫皮层17区中表现出对运动方向有选择性的简单神经元的特性进行了研究。我们特别分析了一组从猫视网膜中央凹接收视角为0至10度投射的细胞样本。研究了三类简单神经元:方向不对称(DA)神经元、单峰型方向选择性神经元(DS1)和双峰型(DS2)。获取了对移动的白色和黑色条纹以及静态起始序列和静态终止序列的刺激后时间直方图(PSTH)。我们的分析包括比较在不同感受野位置对单个静态闪光的反应与对相同位置的静态闪光序列对的反应。我们发现DA神经元对一对刺激呈现的方向不敏感。无论刺激序列的方向如何,抑制性和兴奋性反应都表现出线性总和的特性。它们的行为让人联想到视网膜和外侧膝状体神经元。协同模型很好地解释了DA神经元的方向不对称性。如果一对刺激足够接近(对于猫视野中央10度,通常刺激间距离为20'或更小),那么DS神经元会表现出与线性总和的显著偏差。具体而言,这种偏差导致抑制的各向异性分布。DS神经元的方向选择性不能基于其开和关区域反应的简单线性组合来解释。方向选择性完全在开兴奋性放电区域内产生或完全在关兴奋性放电区域内产生。即使是最简单的单峰DS神经元的兴奋性放电中心也可以被证明可分解为小于该放电中心的亚单位。抑制的这种各向异性的扩散通常比DS神经元兴奋性放电中心的整个范围受到更多限制,这一事实有力地表明潜在的子区域或模块正在向DS神经元提供输入。DS神经元不是作为一个孤立的单元来分析运动;相反,它可能嵌入在一组相互“协作”的DS神经元中。方向分析的基本模块对开 - 开序列或关 - 关序列有反应,但对两者都没有反应。它对开 - 关序列没有选择性。因此,单峰DS神经元(DS1)正在对单个移动边缘进行分析。(摘要截于400字)

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