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首页> 外文期刊>The Journal of Physiology >Influence of adapting speed on speed and contrast coding in the primary visual cortex of the cat
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Influence of adapting speed on speed and contrast coding in the primary visual cortex of the cat

机译:适应速度对猫初级视觉皮层速度和对比度编码的影响

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摘要

Adaptation is a ubiquitous property of the visual system. Adaptation often improves the ability to discriminate between stimuli and increases the operating range of the system, but is also associated with a reduced ability to veridically code stimulus attributes. Adaptation to luminance levels, contrast, orientation, direction and spatial frequency has been studied extensively, but knowledge about adaptation to image speed is less well understood. Here we examined how the speed tuning of neurons in cat primary visual cortex was altered after adaptation to speeds that were slow, optimal, or fast relative to each neuron's speed response function. We found that the preferred speed (defined as the speed eliciting the peak firing rate) of the neurons following adaptation was dependent on the speed at which they were adapted. At the population level cells showed decreases in preferred speed following adaptation to speeds at or above the non-adapted speed, but the preferred speed did not change following adaptation to speeds lower than the non-adapted peak. Almost all cells showed response gain control (reductions in absolute firing capacity) following speed adaptation. We also investigated the speed dependence of contrast adaptation and found that most cells showed contrast gain control (rightward shifts of their contrast response functions) and response gain control following adaptation at any speed. We conclude that contrast adaptation may produce the response gain control associated with speed adaptation, but shifts in preferred speed require an additional level of processing beyond contrast adaptation. A simple model is presented that is able to capture most of the findings.
机译:适应是视觉系统的普遍特性。适应通常会提高区分刺激的能力,并增加系统的工作范围,但同时也会降低垂直编码刺激属性的能力。已经广泛研究了对亮度水平,对比度,方向,方向和空间频率的适应性,但是对图像速度适应性的了解却很少。在这里,我们检查了猫初级视觉皮层中神经元的速度调整如何适应于相对于每个神经元的速度响应功能而言缓慢,最佳或快速的速度。我们发现,适应后神经元的首选速度(定义为激发峰值放电速率的速度)取决于它们适应的速度。在总体水平上,细胞在适应于等于或高于非适应性速度的速度之后显示出优先速度降低,但是适应于低于非适应性峰的速度后优选速度没有变化。速度适应后,几乎所有电池都显示出响应增益控制(绝对点火能力降低)。我们还研究了对比度适应的速度依赖性,发现大多数细胞在任何速度适应后均显示了对比度增益控制(其对比度响应函数向右移动)和响应增益控制。我们得出的结论是,对比度适应可能会产生与速度适应相关的响应增益控制,但优选速度的变化需要超越对比度适应的附加处理层次。提出了一个简单的模型,该模型能够捕获大多数发现。

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