Detection of object motion by a fly neuron during simulated flight.

B Kimmerle, M Egelhaaf
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引用次数: 22

Abstract

Object detection on the basis of relative motion was investigated in the fly at the neuronal level. A representative of the figure detection cells (FD-cells), the FD1b-cell, was characterized with respect to its responses to optic flow which simulated the presence of an object during translatory flight. The figure detection cells reside in the fly's third visual neuropil and are believed to play a central role in mediating object-directed turning behaviour. The dynamical response properties as well as the mean response amplitudes of the FD1b-cell depend on the temporal frequency of object motion and on the presence or absence of background motion. The responses of the FD1b-cell to object motion during simulated translatory flight were compared to behavioural responses of the fly as obtained with identical stimuli in a previous study. The behavioural responses could only partly be explained on the basis of the FD1b-cell's responses. Further processing between the third visual neuropil and the final motor output has to be assumed which involves (1) facilitation of the object-induced responses during translatory background motion at moderate temporal frequencies, and (2) inhibition of the object-induced turning responses during translatory background motion at high temporal frequencies.

苍蝇神经元在模拟飞行过程中对物体运动的检测。
在神经元水平上研究了基于相对运动的目标检测。图像检测细胞(FD-cells)的代表,fd1b细胞,其特征在于其对光流的响应,该光流模拟了在平移飞行过程中物体的存在。图像检测细胞位于果蝇的第三个视觉神经中,被认为在调节物体导向的转向行为中起着核心作用。fd1b单元的动态响应特性以及平均响应幅度取决于物体运动的时间频率和背景运动的存在与否。在模拟平移飞行过程中,fd1b细胞对物体运动的反应与先前研究中相同刺激下苍蝇的行为反应进行了比较。这些行为反应只能部分地用fd1b细胞的反应来解释。第三视觉神经和最终运动输出之间的进一步处理涉及(1)在中等时间频率的平移背景运动中促进物体诱导的反应,以及(2)在高时间频率的平移背景运动中抑制物体诱导的转向反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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