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果蝇复眼中一阶和二阶神经元对移动物体的视觉敏锐度。

Visual acuity for moving objects in first- and second-order neurons of the fly compound eye.

作者信息

Juusola M, French A S

机构信息

Department of Physiology and Biophysics, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

J Neurophysiol. 1997 Mar;77(3):1487-95. doi: 10.1152/jn.1997.77.3.1487.

Abstract

The early stages of visual systems contain a variety of components that limit both the spatial resolution and the temporal resolution of vision. When an animal sees a moving object, or moves relative to its environment, both spatial and temporal factors contribute to its ability to resolve the movement. In the present work we have combined currently available knowledge about the early stages of fly vision (optical system, photoreceptors, and large monopolar cells) to predict the resolution of the first two cell layers to moving point objects. These calculations included recent measurements of nonlinear light responses. Because background light level has a strong effect on the temporal behavior of these early visual layers, we examined the effects of light level on motion resolution. We also studied the effect of position within the eye, which is known to affect the static resolution of vision. Our results indicate that responses in large monopolar cells to moving point objects are maximal at angular velocities of 100-200 degrees/s. The resolution of point objects by both these early stages of the visual system is similar from stationary to an angular velocity of approximately 200 degrees/s. Above this, resolution deteriorates approximately linearly with velocity.

摘要

视觉系统的早期阶段包含多种限制视觉空间分辨率和时间分辨率的组件。当动物看到一个移动的物体,或者相对于其环境移动时,空间和时间因素都会影响其分辨运动的能力。在本研究中,我们结合了目前关于果蝇视觉早期阶段(光学系统、光感受器和大的单极细胞)的知识,来预测前两层细胞对移动点物体的分辨率。这些计算包括最近对非线性光反应的测量。由于背景光水平对这些早期视觉层的时间行为有强烈影响,我们研究了光水平对运动分辨率的影响。我们还研究了眼内位置的影响,已知这会影响视觉的静态分辨率。我们的结果表明,大的单极细胞对移动点物体的反应在角速度为100 - 200度/秒时最大。视觉系统这两个早期阶段对静止到大约200度/秒角速度的点物体的分辨率相似。高于此,分辨率随速度大致呈线性下降。

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