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昆虫运动探测器对自然图像的对比敏感度。

Contrast sensitivity of insect motion detectors to natural images.

作者信息

Straw Andrew D, Rainsford Tamath, O'Carroll David C

机构信息

Discipline of Physiology, School of Molecular and Biomedical Science, The University of Adelaide, Adelaide, SA, Australia.

出版信息

J Vis. 2008 Mar 28;8(3):32.1-9. doi: 10.1167/8.3.32.

Abstract

How do animals regulate self-movement despite large variation in the luminance contrast of the environment? Insects are capable of regulating flight speed based on the velocity of image motion, but the mechanisms for this are unclear. The Hassenstein-Reichardt correlator model and elaborations can accurately predict responses of motion detecting neurons under many conditions but fail to explain the apparent lack of spatial pattern and contrast dependence observed in freely flying bees and flies. To investigate this apparent discrepancy, we recorded intracellularly from horizontal-sensitive (HS) motion detecting neurons in the hoverfly while displaying moving images of natural environments. Contrary to results obtained with grating patterns, we show these neurons encode the velocity of natural images largely independently of the particular image used despite a threefold range of contrast. This invariance in response to natural images is observed in both strongly and minimally motion-adapted neurons but is sensitive to artificial manipulations in contrast. Current models of these cells account for some, but not all, of the observed insensitivity to image contrast. We conclude that fly visual processing may be matched to commonalities between natural scenes, enabling accurate estimates of velocity largely independent of the particular scene.

摘要

尽管环境的亮度对比度存在很大差异,动物是如何调节自身运动的呢?昆虫能够根据图像运动的速度来调节飞行速度,但其机制尚不清楚。哈森斯坦 - 赖夏特相关器模型及其扩展能够在许多情况下准确预测运动检测神经元的反应,但无法解释在自由飞行的蜜蜂和苍蝇中观察到的明显缺乏空间模式和对比度依赖性的现象。为了研究这种明显的差异,我们在食蚜蝇水平敏感(HS)运动检测神经元中进行细胞内记录,同时展示自然环境的移动图像。与使用光栅图案获得的结果相反,我们发现这些神经元在很大程度上独立于所使用的特定图像来编码自然图像的速度,尽管对比度范围有三倍之多。在强烈运动适应和最小运动适应的神经元中均观察到对自然图像反应的这种不变性,但它对对比度的人工操纵敏感。这些细胞的当前模型解释了部分而非全部观察到的对图像对比度不敏感的现象。我们得出结论,苍蝇的视觉处理可能与自然场景之间的共性相匹配,从而能够在很大程度上独立于特定场景准确估计速度。

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