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Research on medical applications of contrast sensitivity function to red-green gratings in 3D space

机译:对比敏感度函数在3D空间中红绿光栅的医学应用研究

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Contrast sensitivity function (CSF), which is a quick and valid index to measure human visual performance, can be applied into medical monitoring and various retinal disease diagnosis. However, there is a lack of researches on CSF in three-dimensional (3D) space. In this paper, CSF of human color vision to red-green chromatic gratings in 3D space is fully investigated. Based on the typical chromatic contrast sensitivity test system, in which the screen is parallel to human face, four inclined planes in 3D space are taken into consideration. Contrast thresholds for chromatic gratings of inclined planes are measured within 20 individual subjects. Experimental results show that the contrast sensitivity of each inclined plane is a low-pass function for red-green gratings. In order to fully utilize chromatic contrast sensitivity in 3D space, a visual model of red-green contrast sensitivity in 3D space is well fitted. Simulation results demonstrate that the proposed model achieves high consistency with human chromatic visual characteristics. (C) 2016 Elsevier B.V. All rights reserved.
机译:对比敏感度函数(CSF)是一种快速有效的指标,可以衡量人的视觉表现,可用于医学监测和各种视网膜疾病的诊断。但是,在三维(3D)空间中缺乏对CSF的研究。本文全面研究了人类彩色视觉对3D空间中红绿色彩色光栅的CSF。基于屏幕平行于人脸的典型色差对比灵敏度测试系统,考虑了3D空间中的四个倾斜平面。倾斜平面的彩色光栅的对比度阈值在20个单独的对象中进行测量。实验结果表明,对于红绿光栅,每个倾斜平面的对比度灵敏度是低通函数。为了充分利用3D空间中的彩色对比度敏感度,非常适合3D空间中红绿色对比度敏感度的可视模型。仿真结果表明,该模型与人的彩色视觉特征具有较高的一致性。 (C)2016 Elsevier B.V.保留所有权利。

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