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Rapid adaptation and efficient coding

机译:快速适应和高效编码

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摘要

Rapid adaptation is a prominent feature of biological neuronal systems. From a functional perspective the adaptation of neuronal properties, namely the input-output relation of sensory neurons, is usually interpreted as an adaptation of the sensory system to changing environments as characterized by their stimulus statistics. Here we argue that this interpretation is only applicable as long as the adaptation processes are slower than the time-scale at which the stimulus statistics change. We present a definition of optimality of a neuronal code which still captures the idea of efficient coding, but which can also explain rapid adaptation without referring to an adaptation to different sensory environments. Finally, we apply our new idea to a simple model of an orientation hypercolumn in the primary visual cortex and predict that the interactions between orientation columns should adapt at the time-scale of a single stimulus presentation. (C) 2002 Elsevier Science Ireland Ltd. All rights reserved. [References: 12]
机译:快速适应是生物神经元系统的突出特征。从功能的角度看,神经元特性的适应,即感觉神经元的输入-输出关系,通常被解释为感觉系统对变化环境的适应,以其刺激统计为特征。在这里,我们认为,这种解释仅在适应过程比刺激统计数据变化的时间尺度慢的情况下适用。我们提供了神经元代码的最优性的定义,该定义仍然捕获了有效编码的思想,但是也可以解释快速适应性,而无需参考对不同感觉环境的适应性。最后,我们将新思想应用于主视觉皮层中定向超柱的简单模型,并预测定向列之间的相互作用应适应单个刺激提示的时间尺度。 (C)2002 Elsevier Science Ireland Ltd.保留所有权利。 [参考:12]

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