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一群家蝇运动敏感神经元对自然主义光流的编码。

Encoding of naturalistic optic flow by a population of blowfly motion-sensitive neurons.

作者信息

Karmeier K, van Hateren J H, Kern R, Egelhaaf M

机构信息

Department of Neurobiology, Faculty for Biology, Bielefeld University, Bielefeld, Germany.

出版信息

J Neurophysiol. 2006 Sep;96(3):1602-14. doi: 10.1152/jn.00023.2006. Epub 2006 May 10.

Abstract

In sensory systems information is encoded by the activity of populations of neurons. To analyze the coding properties of neuronal populations sensory stimuli have usually been used that were much simpler than those encountered in real life. It has been possible only recently to stimulate visual interneurons of the blowfly with naturalistic visual stimuli reconstructed from eye movements measured during free flight. Therefore we now investigate with naturalistic optic flow the coding properties of a small neuronal population of identified visual interneurons in the blowfly, the so-called VS and HS neurons. These neurons are motion sensitive and directionally selective and are assumed to extract information about the animal's self-motion from optic flow. We could show that neuronal responses of VS and HS neurons are mainly shaped by the characteristic dynamical properties of the fly's saccadic flight and gaze strategy. Individual neurons encode information about both the rotational and the translational components of the animal's self-motion. Thus the information carried by individual neurons is ambiguous. The ambiguities can be reduced by considering neuronal population activity. The joint responses of different subpopulations of VS and HS neurons can provide unambiguous information about the three rotational and the three translational components of the animal's self-motion and also, indirectly, about the three-dimensional layout of the environment.

摘要

在感觉系统中,信息是由神经元群体的活动编码的。为了分析神经元群体的编码特性,通常使用的感觉刺激比现实生活中遇到的要简单得多。直到最近,才有可能用从自由飞行中测量的眼球运动重建的自然视觉刺激来刺激家蝇的视觉中间神经元。因此,我们现在用自然视觉流来研究家蝇中一小群已识别的视觉中间神经元(即所谓的VS和HS神经元)的编码特性。这些神经元对运动敏感且具有方向选择性,被认为能从视觉流中提取有关动物自身运动的信息。我们能够证明,VS和HS神经元的神经反应主要由苍蝇扫视飞行和注视策略的特征动力学特性塑造。单个神经元编码有关动物自身运动的旋转和平移分量的信息。因此,单个神经元携带的信息是模糊的。通过考虑神经元群体活动,可以减少这些模糊性。VS和HS神经元不同亚群的联合反应可以提供有关动物自身运动的三个旋转分量和三个平移分量的明确信息,也可以间接提供有关环境三维布局的信息。

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