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首页> 外文期刊>Journal of Neurophysiology >Influence of contrast on orientation and temporal frequency tuning in ferret primary visual cortex.
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Influence of contrast on orientation and temporal frequency tuning in ferret primary visual cortex.

机译:对比度对雪貂初级视觉皮层方向和时间频率调谐的影响。

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Neurons in primary visual cortex are highly sensitive to the contrast, orientation, and temporal frequency of a visual stimulus. These three stimulus properties can be varied independently of one another, raising the question of how they interact to influence neuronal responses. We recorded from individual neurons in ferret primary visual cortex to determine the influence of stimulus contrast on orientation tuning, temporal-frequency tuning, and latency to visual response. Results show that orientation-tuning bandwidth is not affected by contrast level. Thus neurons in ferret visual cortex display contrast-invariant orientation tuning. Stimulus contrast does, however, influence the structure of orientation-tuning curves as measures of circular variance vary inversely with contrast for both simple and complex cells. This change in circular variance depends, in part, on a contrast-dependent change in the ratio of null to preferred orientation responses. Stimulus contrast also has an influence on the temporal-frequency tuning of cortical neurons. Both simple and complex cells display a contrast-dependent rightward shift in their temporal frequency-tuning curves that results in an increase in the highest temporal frequency needed to produce a half-maximum response (TF(50)). Results show that the degree of the contrast-dependent increase in TF(50) is similar for cortical neurons and neurons in the lateral geniculate nucleus (LGN) and indicate that subcortical mechanisms likely play a major role in establishing the degree of effect displayed by downstream neurons. Finally, results show that LGN and cortical neurons experience a contrast-dependent phase advance in their visual response. This phase advance is most pronounced for cortical neurons indicating a role for both subcortical and cortical mechanisms.
机译:初级视觉皮层中的神经元对视觉刺激的对比度,方向和时间频率高度敏感。这三种刺激特性可以彼此独立地变化,这引发了它们如何相互作用以影响神经元反应的问题。我们记录了雪貂初级视觉皮层中的单个神经元,以确定刺激对比对定向调整,时频调整和视觉反应潜伏期的影响。结果表明方向调整带宽不受对比度级别的影响。因此,雪貂视觉皮层中的神经元显示出对比度不变的方向调整。然而,刺激的对比度确实会影响方向调整曲线的结构,因为对于简单细胞和复杂细胞而言,圆形方差的度量都与对比度成反比。圆形方差的这种变化部分地取决于零位与优选取向响应之比中与对比度有关的变化。刺激对比也对皮层神经元的时频调谐有影响。简单单元和复杂单元都在其时间频率调谐曲线中显示了一个与对比度相关的向右移动,这导致产生半最大响应(TF(50))所需的最高时间频率增加。结果显示,皮层神经元和外侧膝状核(LGN)中神经元的TF(50)依赖于造影剂的增加程度相似,并且表明皮层下机制可能在确定下游显示的作用程度中起主要作用神经元。最后,结果表明,LGN和皮层神经元的视觉反应经历了依赖于造影剂的阶段性进展。对于皮质神经元,该阶段的进展最为明显,表明它对皮质下和皮质机制都有作用。

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