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Monocular and binocular mechanisms of contrast gain control

机译:对比度增益控制的单眼和双眼机制

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Abstract: Prolonged stimulation by temporally modulated sinusoidal gratings causes a decrease in the contrast sensitivity and response of neurons in the visual cortex. We have studied the dynamic aspects of this contrast gain control mechanism and how its temporal properties affect the determination of neural contrast response functions. In addition, we have considered the possibility that a single mechanism is sufficient to explain monocular and binocular properties of contrast gain control. We find that neural contrast response functions are highly susceptible to the measurement procedure itself, so that the data obtained in some studies seriously underestimate the slope of the function and overestimate the threshold. Therefore, careful selection of the experimental data is required for general use and for constructing models of visual cortical function. Comparisons of monocular and binocular properties of contrast gain control provide insights concerning the neural origin of the mechanism. Monocularly induced gain reductions are transferrable to the other eye, suggesting that gain control originates in part at a site following binocular convergence. However, binocular experiments conducted with interocular contrast mismatches indicate that the gain of the monocular pathways for each eye may be controlled independently. These results suggest that a single-gain control mechanism is not sufficient to account for the properties exhibited by cortical neurons. !21
机译:摘要:时间调制正弦光栅的长时间刺激导致视觉皮层中神经元的对比敏感度和反应降低。我们已经研究了这种对比增益控制机制的动态方面,以及它的时间特性如何影响神经对比响应函数的确定。另外,我们已经考虑了单一机制足以解释对比度增益控制的单眼和双眼特性的可能性。我们发现神经对比反应功能很容易受到测量程序本身的影响,因此在一些研究中获得的数据严重低估了该功能的斜率并高估了阈值。因此,对于常规用途和构建视觉皮层功能模型,需要仔细选择实验数据。对比增益控制的单眼和双眼特性的比较提供了有关该机制的神经起源的见解。单眼引起的增益降低可以转移到另一只眼,这表明增益控制部分起源于双眼会聚后的某个位置。但是,对眼间对比度不匹配进行的双目实验表明,每只眼睛的单眼通路增益可以独立控制。这些结果表明,单增益控制机制不足以解释皮层神经元表现出的特性。 !21

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