单侧盲蝇平均行走轨迹的光流神经元表征。

R Kern, M Lutterklas, M Egelhaaf
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引用次数: 27

摘要

双眼光流的不对称可能表明动物的意外转向并引起代偿性视运动反应。在结构均匀的环境中,在直线路径上,双眼的光流是平衡的,对应于光运动平衡状态。当一只眼睛被遮挡时,如果平移光流组件被叠加旋转抵消,则期望在弯曲路径上达到光运动平衡。通过分析果蝇视运动系统的组成部分HSE细胞如何在行为情况下代表光流,这一假设得到了验证。重建了自由行走的单目蝇平均轨迹上的光流。这种光流在电生理实验中用作HSE细胞的刺激,并作为果蝇视运动系统模型的输入。HSE细胞和模型的反应在静息电位周围波动。平均而言,它们比在直线路径上经历的光流引起的响应小得多。这些结果证实了单眼蝇的平均运动轨迹对应于光运动平衡路径的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neuronal representation of optic flow experienced by unilaterally blinded flies on their mean walking trajectories.

Asymmetries in the optic flow on both eyes may indicate an unintended turn of an animal and evoke compensatory optomotor responses. On a straight path in an evenly structured environment, the optic flow on both eyes is balanced corresponding to a state of optomotor equilibrium. When one eye is occluded an optomotor equilibrium is expected to be reached on a curved path provided that the translatory optic flow component is cancelled by a superimposed rotation. This hypothesis is tested by analysing how the HSE cell, a constituent element of the fly's optomotor system, represents optic flow in behavioural situations. The optic flow as seen on the average trajectory of freely walking monocular flies is reconstructed. This optic flow is used as stimulus of the HSE cell in electrophysiological experiments and as input of a model of the fly's optomotor system. The responses of the HSE cell and of the model fluctuate around the resting potential. On average, they are much smaller than the responses evoked by optic flow experienced on a straight path. These results corroborate the hypothesis that the mean trajectory of monocular flies corresponds to a path of optomotor equilibrium.

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