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Common dynamical features of sensory adaptation in photoreceptors and olfactory sensory neurons

机译:感光细胞和嗅觉感觉神经元感觉适应的共同动力学特征

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摘要

Sensory systems adapt, i.e., they adjust their sensitivity to external stimuli according to the ambient level. In this paper we show that single cell electrophysiological responses of vertebrate olfactory receptors and of photoreceptors to different input protocols exhibit several common features related to adaptation, and that these features can be used to investigate the dynamical structure of the feedback regulation responsible for the adaptation. In particular, we point out that two different forms of adaptation can be observed, in response to steps and to pairs of pulses. These two forms of adaptation appear to be in a dynamical trade-off: the more adaptation to a step is close to perfect, the slower is the recovery in adaptation to pulse pairs and viceversa. Neither of the two forms is explained by the dynamical models currently used to describe adaptation, such as the integral feedback model.
机译:感官系统适应,即,它们根据环境水平调节其对外部刺激的敏感性。在本文中,我们表明脊椎动物嗅觉受体和光感受器对不同输入协议的单细胞电生理反应表现出与适应有关的几个共同特征,并且这些特征可用于研究负责适应的反馈调节的动力学结构。特别地,我们指出,响应于阶跃和脉冲对,可以观察到两种不同形式的适应。这两种形式的适应似乎是在动态的权衡中:对步阶的适应越接近完美,对脉冲对的适应恢复就越慢,反之亦然。当前用于描述适应性的动力学模型(例如积分反馈模型)都无法解释这两种形式。

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