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Measurement and correction of the effects of lag on contrast-detail test results in fluoroscopy

机译:荧光检查中滞后对对比细节测试结果影响的测量和校正

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摘要

Persistence of the video signal between TV frames, an effect also known as image lag, can lead to anomalously good contrast-detail test results for fluoroscopy systems. In this practical paper, a simple method is described which quantifies lag in fluoroscopy systems an corrects for its effect on threshold contrast. A digital framestore was used to acquire temporally contiguous fluoroscopy images. Correlation of the variance between an initial base TV frame and successive later frames was then measured via the correlation coefficient. Plotted against time, this function defines a time constant which characterizes the rate at which the initial variance pattern is replaced by incoming quantum noise. A survey of seven fluoroscopy units incorporating vacuum TV camera tubes found a mean time constant of 0.06 s. The relative change in contrast-detail performance was then measured as a function of applied digital frame averaging for two separate fluoroscopy units. A time constant was found for each frame averaging mode using the correlation of variance between frames. These measurements were used to derive a function which corrects contrast-detail results obtained for a unit with a measured nominal time constant to the typical vacuum camera tube time constant of 0.06 s. The correction is shown to significantly reduce the spread of contrast-detail results obtained over a range of temporal filtration settings.
机译:电视帧之间视频信号的持续存在,也称为图像滞后,会导致荧光检查系统异常良好的对比度细节测试结果。在本实用论文中,描述了一种简单的方法,该方法可以量化荧光检查系统中的滞后并校正其对阈值对比度的影响。使用数字框架存储来获取时间连续的透视图像。然后,通过相关系数来测量初始基本电视帧与随后的后续帧之间的方差的相关性。根据时间进行绘制,此函数定义了一个时间常数,该常数表征了初始方差图样被传入的量子噪声替换的速率。对七个装有真空电视摄象机镜筒的透视装置进行的调查发现,平均时间常数为0.06 s。然后测量对比度细节性能的相对变化,作为两个独立的透视单元的应用数字帧平均的函数。使用帧之间方差的相关性,为每个帧平均模式找到一个时间常数。这些测量值被用来导出一个函数,该函数将具有测量的标称时间常数的设备所获得的对比度细节结果校正为典型的真空相机管时间常数0.06 s。该校正显示可以显着减少在一定范围的时间过滤设置下获得的对比度细节结果的扩散。

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