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Use of a Human Visual System Model to Predict Observer Performance with CRT vs LCD Display of Images

机译:使用人类视觉系统模型预测CRT与LCD图像显示的观察者性能

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摘要

This Project evaluated a human visual system model (JNDmetrix) based on just noticeable difference (JND) and frequency-channel vision-modeling principles to assess whether a Cathode ray tube (CRT) or a liquid crystal display (LCD) monochrome display monitor would yield better observer performance in radiographic interpretation. Key physical characteristics, such as veiling glare and modulation transfer function (MTF) of the CRT and LCD were measured. Regions of interest from mammographic images with masses of different contrast levels were shown once on each display to six radiologists using a counterbalanced presentation order. The images were analyzed using the JNDmetrix model. Performance as measured by receiver operating characteristic (ROC) analysis was significantly better overall on the LCD display (P = 0.0120). The JNDmetrix model predicted the result (P = 0.0046) and correlation between human and computer observers was high (r2 (quadratic) = 0.997). The results suggest that observer performance with LCD displays is superior to CRT viewing, at least for on-axis viewing.
机译:该项目仅根据显着差异(JND)和频率通道视觉建模原理评估了人类视觉系统模型(JNDmetrix),以评估阴极射线管(CRT)或液晶显示器(LCD)单色显示器的产量观察者在射线照相解释方面的表现更好。测量了关键的物理特性,例如CRT和LCD的面纱眩光和调制传递函数(MTF)。在每个显示器上,以平衡显示顺序将来自乳腺X射线照片中具有不同对比度水平质量的感兴趣区域显示给六位放射科医生。使用JNDmetrix模型分析图像。通过接收器工作特性(ROC)分析测得的性能在LCD显示屏上总体上要好得多(P = 0.0120)。 JNDmetrix模型可预测结果(P = 0.0046),并且人和计算机观察者之间的相关性很高(r2(二次)= 0.997)。结果表明,至少对于同轴观察,LCD显示器的观察者性能优于CRT观察。

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