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猫视觉皮层简单细胞中突触电位的方向选择性

Direction selectivity of synaptic potentials in simple cells of the cat visual cortex.

作者信息

Jagadeesh B, Wheat H S, Kontsevich L L, Tyler C W, Ferster D

机构信息

Laboratory of Neuropsychology, National Institute of Mental Health, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Neurophysiol. 1997 Nov;78(5):2772-89. doi: 10.1152/jn.1997.78.5.2772.

Abstract

Direction selectivity of synaptic potentials in simple cells of the cat visual cortex. J. Neurophysiol. 78: 2772-2789, 1997. The direction selectivity of simple cells in the visual cortex is generated at least in part by nonlinear mechanisms. If a neuron were spatially linear, its responses to moving stimuli could be predicted accurately from linear combinations of its responses to stationary stimuli presented at different positions within the receptive field. In extracellular recordings, this has not been found to be the case. Although the extracellular experiments demonstrate the presence of a nonlinearity, the cellular process underlying the nonlinearity, whether an early synaptic mechanism such as a shunting inhibition or simply the spike threshold at the output, is not known. To differentiate between these possibilities, we have recorded intracellularly from simple cells of the intact cat with the whole cell patch technique. A linear model of direction selectivity was used to analyze the synaptic potentials evoked by stationary sine-wave gratings. The model predicted the responses of cells to moving gratings with considerable accuracy. The degree of direction selectivity and the time course of the responses to moving gratings were both well matched by the model. The direction selectivity of the synaptic potentials was considerably smaller than that of the intracellularly recorded action potential, indicating that a nonlinear mechanism such as threshold enhances the direction selectivity of the cell's output over that of its synaptic inputs. At the input stage, however, the cells apparently sum their synaptic inputs in a highly linear fashion. A more constrained test of linearity of synaptic summation based on principal component analysis was applied to the responses of direction-selective cells to stationary gratings. The analysis confirms that the summation in these cells is highly linear. The principal component analysis is consistent with a model in which direction selectivity in cortical simple cells is generated by only two subunits, each with a different receptive-field position and response time course. The response time course for each of the two subunits is derived for four analyzed cells. Each derived subunit is linear in spatial summation, suggesting that the neurons that comprise each subunit are either geniculate X-cells or receive their primary synaptic input from X-cells. The amplitude of the response of each subunit is linearly related to the contrast of the stimulus. The subunits are nonlinear in the time domain, however: the response to a stationary stimulus whose contrast is modulated sinusoidally in time is nonsinusoidal. The principal component analysis does not exclude models of direction selectivity based on more than two subunits, but such higher-order models would have to include the constraint that the extra subunits form a smooth continuum of interpolation between the properties derived from the two subunit solution.

摘要

猫视觉皮层简单细胞中突触电位的方向选择性。《神经生理学杂志》78: 2772 - 2789, 1997。视觉皮层中简单细胞的方向选择性至少部分是由非线性机制产生的。如果一个神经元在空间上是线性的,那么它对移动刺激的反应可以根据其对在感受野内不同位置呈现的静止刺激的反应的线性组合来准确预测。在细胞外记录中,并未发现情况如此。尽管细胞外实验证明了非线性的存在,但这种非线性背后的细胞过程,无论是早期的突触机制如分流抑制还是仅仅是输出端的动作电位阈值,尚不清楚。为了区分这些可能性,我们使用全细胞贴片技术对完整猫的简单细胞进行了细胞内记录。使用方向选择性的线性模型来分析由静止正弦波光栅诱发的突触电位。该模型相当准确地预测了细胞对移动光栅的反应。模型与移动光栅反应的方向选择性程度和时间进程都匹配得很好。突触电位的方向选择性明显小于细胞内记录的动作电位的方向选择性,这表明诸如阈值这样的非线性机制增强了细胞输出相对于其突触输入的方向选择性。然而,在输入阶段,细胞显然以高度线性的方式对其突触输入进行求和。基于主成分分析的对突触总和线性度的更严格测试应用于方向选择性细胞对静止光栅的反应。分析证实这些细胞中的总和是高度线性的。主成分分析与一种模型一致,在该模型中,皮层简单细胞的方向选择性仅由两个亚基产生,每个亚基具有不同的感受野位置和反应时间进程。针对四个分析细胞得出了两个亚基中每个亚基的反应时间进程。每个得出的亚基在空间总和上是线性的,这表明构成每个亚基的神经元要么是膝状X细胞,要么从X细胞接收其主要突触输入。每个亚基反应的幅度与刺激的对比度呈线性相关。然而,亚基在时域是非线性的:对对比度随时间呈正弦调制的静止刺激的反应是非正弦的。主成分分析并不排除基于两个以上亚基的方向选择性模型,但这种高阶模型必须包含这样的约束,即额外的亚基在从两个亚基解决方案得出的特性之间形成一个平滑的插值连续体。

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