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The Noisy-bit Method For Digital Displays:converting A 256 Luminance Resolution into A Continuous Resolution

机译:数字显示器的噪声位方法:将256亮度分辨率转换为连续分辨率

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Visual psychophysics often manipulates the contrast of the image on a digital display screen. Therefore, the limitation of the number of different luminance intensities displayable for most computers (typically, 256) is frequently an issue. To avoid this problem, experimenters generally need to purchase special hardware (graphic cards) and/or develop specific computer programs. Here, we describe an easy-to-implement method, consisting of adding noise to the displayed stimulus, that we call the noisy-bit method. This random dithering method, generalized to 256 luminance intensities, is equivalent to displaying continuous luminance intensities plus a certain amount of noise. Psychophysical testing using a standard spatiotemporal resolution (60 Hz and 1,024 × 768 pixels) demonstrated that the noise introduced by the noisy-bit method has no significant impact on contrast threshold and is not visible. We conclude that the noisy-bit method, combined with the standard 256 luminance levels, is perceptually equivalent to an analog display with a continuous luminance intensity resolution when the spatiotemporal resolution is high enough that the noise becomes negligible (which is easily attainable with the typical spatiotemporal resolutions of present-day computers).
机译:视觉心理物理学经常操纵数字显示屏上图像的对比度。因此,对于大多数计算机(通常为256)可显示的不同亮度强度的数量的限制常常是一个问题。为了避免这个问题,实验人员通常需要购买特殊的硬件(图形卡)和/或开发特定的计算机程序。在这里,我们描述了一种易于实现的方法,包括将噪声添加到显示的刺激中,我们将其称为“噪声位”方法。这种随机抖动方法一般可实现256个亮度强度,等效于显示连续的亮度强度和一定量的噪声。使用标准时空分辨率(60 Hz和1,024×768像素)进行的心理物理测试表明,由噪声位方法引入的噪声对对比度阈值无明显影响,因此不可见。我们得出的结论是,当时空分辨率足够高以至于噪声变得可以忽略不计时,噪声位方法与标准的256个亮度级组合起来在感觉上等效于具有连续亮度强度分辨率的模拟显示器(这在常规情况下很容易实现)当今计算机的时空分辨率)。

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