双翅目视叶中的光流表征:T5定向调谐特性的建模作用。

J K Douglass, N J Strausfeld
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引用次数: 6

摘要

在双翅目昆虫中,一种进化上保守的小视网膜异位神经元系统,被称为浓密t细胞,为小叶板上的大校正神经元提供定向运动的信息。这些细胞的生理和解剖特征提供了一个模型的基础,该模型用于研究在允许进化变化的情况下,在整理器中产生光流选择性的要求。这个帐户集中在T5神经元的生理调谐特性的作用。各种流场被定义为T5细胞视网膜定位阵列的输入,其响应被映射到使用神经支配矩阵的整理器上,以促进对流类型和位置的选择性。从有助于运动检测的神经元的生理和解剖学研究中已知或推断的特性被纳入模型:对局部运动方向的广泛调整以及由四个具有正交优选方向的小场t5样神经元表示每个视觉采样单元。该模型预测了迄今尚未测试的光流选择性整理器的响应特性,并预测了给定流场的选择性对运动检测器生理特性的扰动高度敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optic flow representation in the optic lobes of Diptera: modeling the role of T5 directional tuning properties.

An evolutionarily conserved system of small retinotopic neurons in dipteran insects, called bushy T-cells, provides information about directional motion to large collator neurons in the lobula plate. Physiological and anatomical features of these cells provide the basis for a model that is used to investigate requirements for generating optic flow selectivity in collators while allowing for evolutionary variations. This account focuses on the role of physiological tuning properties of T5 neurons. Various flow fields are defined as inputs to retinotopic arrays of T5 cells, the responses of which are mapped onto collators using innervation matrices that promote selectivity for flow type and position. Properties known or inferred from physiological and anatomical studies of neurons contributing to motion detection are incorporated into the model: broad tuning to local motion direction and the representation of each visual sampling unit by a quartet of small-field T5-like neurons with orthogonal preferred directions. The model predicts hitherto untested response properties of optic flow selective collators, and predicts that selectivity for a given flow field can be highly sensitive to perturbations in physiological properties of the motion detectors.

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