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外侧膝状体P细胞中的时间-颜色相互作用

Temporal-chromatic interactions in LGN P-cells.

作者信息

Lankheet M J, Lennie P, Krauskopf J

机构信息

Center for Visual Science, University of Rochester, USA.

出版信息

Vis Neurosci. 1998 Jan-Feb;15(1):47-54. doi: 10.1017/s0952523898151015.

Abstract

We studied the interaction between the chromatic and temporal properties of parvocellular (P) neurons in the lateral geniculate nucleus (LGN) of macaque monkeys. We measured the amplitudes and phases of responses to stimulation by spatially uniform fields modulated sinusoidally about a white point in a three-dimensional color space, at a range of temporal frequencies between 1 and 25 Hz. Below about 4 Hz, temporal frequency had relatively little effect on chromatic tuning. At higher frequencies chromatic opponency was weakened in almost all cells. The complex interactions between temporal and chromatic properties are represented by a linear filter model that describes response amplitude and phase as a function of temporal frequency and direction in color space along which stimuli are modulated. The model stipulates the cone inputs to center and surround, their temporal properties, and the linear combination of center and surround signals. It predicts the amplitudes and phases of responses of P-cells, and the change of chromatic properties with temporal frequency. We used the model to investigate whether or not the chromatic signature of the surround in a red-green cell could be estimated from the change in the cell's chromatic properties with temporal frequency. Our findings could be equally well described by mixed cone surrounds as by pure cone surrounds, and we conclude that, with regard to temporal properties, there is no benefit to be gained by segregating cone classes in center and surround.

摘要

我们研究了猕猴外侧膝状核(LGN)中P小细胞神经元的颜色和时间特性之间的相互作用。我们测量了在1至25赫兹的一系列时间频率下,对在三维颜色空间中围绕白点进行正弦调制的空间均匀场刺激的反应幅度和相位。在约4赫兹以下,时间频率对颜色调谐的影响相对较小。在较高频率下,几乎所有细胞的颜色拮抗作用都减弱了。时间和颜色特性之间的复杂相互作用由一个线性滤波器模型表示,该模型将反应幅度和相位描述为时间频率以及刺激调制所沿颜色空间方向的函数。该模型规定了中心和外周的视锥细胞输入、它们的时间特性以及中心和外周信号的线性组合。它预测了P细胞反应的幅度和相位,以及颜色特性随时间频率的变化。我们使用该模型来研究是否可以根据细胞颜色特性随时间频率的变化来估计红绿细胞中外周的颜色特征。我们的发现用混合视锥细胞外周和纯视锥细胞外周来描述同样合适,并且我们得出结论,就时间特性而言,将中心和外周的视锥细胞类别分开并没有好处。

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