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果蝇定向行为中视觉刺激的多稳定性。

Multi-stability with ambiguous visual stimuli in Drosophila orientation behavior.

机构信息

Rudolf Virchow Center, University of Wuerzburg, Germany.

出版信息

PLoS Biol. 2018 Feb 13;16(2):e2003113. doi: 10.1371/journal.pbio.2003113. eCollection 2018 Feb.

Abstract

It is widely accepted for humans and higher animals that vision is an active process in which the organism interprets the stimulus. To find out whether this also holds for lower animals, we designed an ambiguous motion stimulus, which serves as something like a multi-stable perception paradigm in Drosophila behavior. Confronted with a uniform panoramic texture in a closed-loop situation in stationary flight, the flies adjust their yaw torque to stabilize their virtual self-rotation. To make the visual input ambiguous, we added a second texture. Both textures got a rotatory bias to move into opposite directions at a constant relative angular velocity. The results indicate that the fly now had three possible frames of reference for self-rotation: either of the two motion components as well as the integrated motion vector of the two. In this ambiguous stimulus situation, the flies generated a continuous sequence of behaviors, each one adjusted to one or another of the three references.

摘要

对于人类和高等动物来说,视觉是一种主动的过程,其中生物体解释刺激。为了探究这是否也适用于低等动物,我们设计了一种模糊运动刺激,它在果蝇行为中类似于多稳定感知范式。在封闭循环中静止飞行时,面对均匀的全景纹理,苍蝇会调整偏航扭矩以稳定它们的虚拟自转。为了使视觉输入模糊,我们添加了第二个纹理。两个纹理都有旋转偏置,以恒定的相对角速度向相反方向移动。结果表明,苍蝇现在有三个可能的自我旋转参考框架:两个运动分量中的任何一个,以及两个运动分量的综合运动矢量。在这种模糊刺激情况下,苍蝇产生了连续的行为序列,每个行为都调整到三个参考中的一个或另一个。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3b0/5826666/78d191bd49c2/pbio.2003113.g001.jpg

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