Optomotor course control in flies with largely asymmetric visual input.

R Kern, M Egelhaaf
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引用次数: 31

Abstract

We have studied freely flying and walking flies as well as flies flying in a flight simulator in order to discover how functionally blinding one of the eyes affects the fly's ability to move straight. It is hard to tell just by observing the animals' movements whether they have been deprived of vision in one eye. Statistical analysis is need to show that there are differences in the locomotory paths of monocular and binocular flies: monocular flies tend to turn slightly towards the side of the seeing eye. It is possible that the superimposed translational and rotational optic flow fields, generated on the trajectory of monocular flies, sum to zero net flow. This overall flow over the retina of the open eye might lead to a state of optomotor equilibrium.

非对称视觉输入果蝇的视运动过程控制。
我们已经研究了自由飞行和行走的苍蝇,以及在飞行模拟器中飞行的苍蝇,以发现功能性失明一只眼睛如何影响苍蝇的直线移动能力。仅仅通过观察动物的动作很难判断它们是否一只眼睛被剥夺了视力。需要统计分析表明,单眼蝇和双目蝇在运动路径上存在差异:单眼蝇倾向于向看见眼的一侧轻微转向。这是可能的,叠加的平移和旋转光流场,产生在单目苍蝇的轨迹,总和为零净流量。这种在视网膜上的整体流动可能会导致一种视运动平衡状态。
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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