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电鱼感觉信息的中枢处理

Central processing of sensory information in electric fish.

作者信息

Heiligenberg W

机构信息

Neurobiology Unit, Scripps Institution of Oceanography, University of California at San Diego, La Jolla 92093.

出版信息

J Comp Physiol A. 1987 Sep;161(4):621-31. doi: 10.1007/BF00603665.

Abstract

Comparative studies of neural mechanisms underlying the perception of natural stimulus patterns and the control of adaptive behavioral responses have revealed organizational principles that are shared by a wide spectrum of animals. Mechanisms of perception and motor control are commonly executed in a distributed network of neurons that lack 'pontifical' elements. Individual neurons even at an organizational level as high as the optic tectum may still have very general response characteristics, and the recruitment of individual neurons reveals little about the nature of the stimulus situation outside. Only the joint evaluation of messages from large populations of such neurons yields unambiguous pictures of the outside world. Stimulus variables are commonly mapped continuously within a stratum of neurons so that their variation over time can be monitored by mechanisms similar to motion detection in a retina. The ordered representation of a stimulus variable within an array of broadly tuned elements allows for a degree of stimulus resolution that by far exceeds that of individual elements in the array. Neural systems are burdened by their evolutionary history and suffer from imperfections that are overcome by a patchwork of compensations. The existence of multiple neuronal representations of sensory information and multiple circuits for the control of behavioral responses should provide the necessary freedom for evolutionary tinkering and the invention of new designs.

摘要

对自然刺激模式感知和适应性行为反应控制背后神经机制的比较研究揭示了广泛动物共有的组织原则。感知和运动控制机制通常在缺乏“主导”元素的分布式神经元网络中执行。即使在像视顶盖这样高组织水平的单个神经元,可能仍具有非常一般的反应特征,而且单个神经元的募集对于外部刺激情况的本质揭示甚少。只有对大量此类神经元发出的信息进行联合评估,才能得出关于外部世界的明确图像。刺激变量通常在一层神经元内连续映射,以便其随时间的变化能够通过类似于视网膜中运动检测的机制进行监测。在广泛调谐元素阵列中刺激变量的有序表示允许一定程度的刺激分辨率,这远远超过阵列中单个元素的分辨率。神经系统受其进化历史的拖累,并存在一些通过拼凑补偿来克服的缺陷。感觉信息的多种神经元表征以及行为反应控制的多个回路的存在,应该为进化修补和新设计的发明提供必要的自由度。

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