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运动适应后的快速对比增益减少。

Rapid contrast gain reduction following motion adaptation.

机构信息

Department of Neuroscience, Uppsala University, Uppsala, Sweden.

出版信息

J Exp Biol. 2011 Dec 1;214(Pt 23):4000-9. doi: 10.1242/jeb.057539.

Abstract

Neural and sensory systems adapt to prolonged stimulation to allow signaling across broader input ranges than otherwise possible with the limited bandwidth of single neurons and receptors. In the visual system, adaptation takes place at every stage of processing, from the photoreceptors that adapt to prevailing luminance conditions, to higher-order motion-sensitive neurons that adapt to prolonged exposure to motion. Recent experiments using dynamic, fluctuating visual stimuli indicate that adaptation operates on a time scale similar to that of the response itself. Further work from our own laboratory has highlighted the role for rapid motion adaptation in reliable encoding of natural image motion. Physiologically, motion adaptation can be broken down into four separate components. It is not clear from the previous studies which of these motion adaptation components are involved in the fast and dynamic response changes. To investigate the adapted response in more detail, we therefore analyzed the effect of motion adaptation using a test-adapt-test protocol with adapting durations ranging from 20 ms to 20 s. Our results underscore the very rapid rate of motion adaptation, suggesting that under free flight, visual motion-sensitive neurons continuously adapt to the changing scenery. This might help explain recent observations of strong invariance in the response to natural scenes with highly variable contrast and image structure.

摘要

神经和感觉系统适应长期刺激,以允许在单个神经元和受体有限带宽的情况下,跨越更广泛的输入范围进行信号传递。在视觉系统中,适应发生在处理的每个阶段,从适应普遍亮度条件的光感受器,到适应长时间运动的高级运动敏感神经元。最近使用动态、波动视觉刺激的实验表明,适应的作用时间尺度与自身的反应时间尺度相似。我们自己实验室的进一步工作强调了快速运动适应在可靠编码自然图像运动中的作用。从生理上讲,运动适应可以分为四个独立的组成部分。以前的研究尚不清楚这些运动适应成分中的哪一种参与了快速和动态的反应变化。为了更详细地研究适应反应,我们使用适应持续时间从 20 毫秒到 20 秒的测试-适应-测试协议来分析运动适应的效果。我们的结果强调了运动适应的非常快的速度,这表明在自由飞行中,视觉运动敏感神经元不断适应不断变化的环境。这可能有助于解释最近观察到的对自然场景的强不变性,这些自然场景的对比度和图像结构高度可变。

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