首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Characterizing contrast adaptation in a population of cat primary visual cortical neurons using Fisher information
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Characterizing contrast adaptation in a population of cat primary visual cortical neurons using Fisher information

机译:利用Fisher信息表征猫原发性视觉皮层神经元群体的对比度适应

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When cat V1/V2 cells are adapted to contrast at their optimal orientation, a reduction in gain and/or a shift in the contrast response function is found. We investigated how these factors combine at the population level to affect the accuracy for detecting variations in contrast. Using the contrast response function parameters from a physiologically measured population, we model the population accuracy (using Fisher information) for contrast discrimination. Adaptation at 16percent, 32percent, and 100percent contrast causes a shift in peak accuracy. Despite an overall drop in firing rate over the whole population, accuracy is enhanced around the adapted contrast and at higher contrasts, leading to greater efficiency of contrast coding at these levels. The estimated contrast discrimination threshold curve becomes elevated and shifted toward higher contrasts after adaptation, as has been found previously in human psychophysical experiments.
机译:当Cat V1 / V2细胞适合于在其最佳方向进行对比时,会发现增益降低和/或对比响应函数发生偏移。我们调查了这些因素如何在总体水平上结合起来,以影响检测对比度变化的准确性。使用来自生理测量人群的对比度响应函数参数,我们对人群准确度(使用Fisher信息)进行建模以进行对比判别。在16%,32%和100%对比度下进行调整会导致峰准确度发生变化。尽管整个人群的射击率总体下降,但在调整后的对比度和更高的对比度下,准确性仍得到提高,从而在这些级别上提高了对比度编码的效率。如先前在人类心理物理实验中所发现的,估计的对比度鉴别阈值曲线在适应后变得升高并且朝着更高的对比度偏移。

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