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Proportionality between Wiener spectra of quantum mottle and the squares of modulation transfer functions.

机译:量子斑点的维纳光谱与调制传递函数的平方之间的比例。

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摘要

Rossmann proposed that the Wiener spectra of the quantum mottle of radiographs made using screen-film systems were proportional to the squares of the modulation transfer functions (MTFs) of the screen-film systems. On the other hand, Lubberts theoretically pointed out that the shape of the Wiener spectrum of the quantum mottle depended on the sum of the squares of the MTFs for different depths in the screen phosphor layer, rather than the square of the sum of the MTFs for the different depths, i.e. the square of the MTF of the screen-film systems. The purpose of this study is to experimentally investigate the proportionality between the Wiener spectra of the quantum mottle and the squares of the MTFs of screen-film systems using two screen-film systems having different screen thicknesses. For this purpose, we determined correction factors for the square of the MTF of the screen-film system in the Wiener spectrum of the quantum mottle at each spatial frequency when the Wiener spectral values of the screen mottle were separated into those of the quantum mottle and structure mottle. The correction factor is the ratio of the normalized Wiener spectrum of the quantum mottle to the square of the MTF of the screen-film system. As a result, for a thin screen, the correction factors were unity for all spatial frequencies; on the contrary, for a thick screen, the factor increased with spatial frequency. By calculating the theoretical correction factors using the models for the MTF and Wiener spectrum of the quantum mottle of Nishikawa and Yaffe based on Lubberts' theory, we verified that our experimental results agreed with Lubberts' theory. Furthermore, by obtaining the screen thickness dependence of the theoretical correction factors for the two screens, we showed that, for screens thinner than 0.02 mm, Rossmann's theory can be applied to the relationship between the Wiener spectrum of the quantum mottle and the MTF of the screen-film system, whereas for screens thicker than 0.02 mm, Lubberts' theory should be applied.
机译:Rossmann提出,使用屏幕胶片系统制作的射线照片的量子斑点的维纳光谱与屏幕胶片系统的调制传递函数(MTF)的平方成正比。另一方面,卢伯茨(Lubberts)从理论上指出,量子斑点的维纳光谱的形状取决于屏幕荧光粉层中不同深度的MTF的平方和,而不是MTF的平方和。不同的深度,即屏幕电影系统的MTF的平方。这项研究的目的是通过实验研究使用两种具有不同屏幕厚度的屏幕膜系统,量子斑点的维纳光谱与屏幕膜系统的MTF平方之间的比例。为此,当将屏幕斑点的维纳光谱值分离为量子斑点的维纳光谱和结构斑驳。校正因子是量子斑点的归一化维纳光谱与屏幕胶片系统MTF平方的比值。结果,对于一个薄屏幕,校正因子对于所有空间频率都是统一的。相反,对于厚屏幕,该因子随空间频率而增加。通过使用基于Lubberts理论的Nishikawa和Yaffe量子斑驳的MTF和Wiener谱模型计算理论校正因子,我们验证了我们的实验结果与Lubberts理论是一致的。此外,通过获得两个屏幕的理论校正因子的屏幕厚度依赖性,我们表明,对于小于0.02 mm的屏幕,Rossmann理论可以应用于量子斑驳的Wiener光谱与MTF的MTF之间的关系。屏幕-电影系统,而对于大于0.02毫米的屏幕,则应采用Lubberts理论。

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