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A Study of Grid Artifacts Formation and Elimination in Computed Radiographic Images

机译:计算机放射线图像中网格伪像的形成与消除的研究

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摘要

Computed radiography (CR) has many advantages such as filmless operations, efficiency, and convenience. Furthermore, it is easier to integrate with the picture archiving and communication systems. Another important advantage is that CR images generally have a wider dynamic range than conventional screen film. Unfortunately, grid artifacts and moiré pattern artifacts may be present in CR images. These artifacts become a more serious problem when viewing CR images on a computer monitor when a clinic grade monitor is not available. Images produced using a grid with higher frequency or a Potter–Bucky grid (i.e., a moving grid, Bucky for short) can reduce occurrence but cannot guarantee elimination of these artifacts [CR & PACS (2000); Detrick F (2001), pp 7–8]. In this paper, the formation of the artifacts is studied. We show that the grid artifacts occur in a narrow band of frequency in the frequency domain. The frequency can be determined, accurately located, and thus removed from the frequency domain. When comparing the results obtained from the proposed method against the results obtained using previous computer methods, we show that our method can achieve better image quality.
机译:计算机射线照相(CR)具有许多优点,例如无胶片操作,效率高和方便。此外,更易于与图片存档和通信系统集成。另一个重要的优点是CR图像通常比常规的屏幕胶片具有更宽的动态范围。不幸的是,CR图像中可能会出现网格伪影和莫尔图案伪影。当诊所级监视器不可用时,在计算机监视器上查看CR图像时,这些伪影会成为一个更严重的问题。使用频率较高的网格或Potter-Bucky网格(即移动网格,简称Bucky)生成的图像可以减少出现,但不能保证消除这些伪影[CR&PACS(2000); Detrick F(2001),第7-8页。在本文中,研究了伪像的形成。我们表明,网格伪像出现在频域的窄频带中。可以确定频率,准确定位频率,从而将其从频域中删除。当比较从提议的方法获得的结果与使用以前的计算机方法获得的结果时,我们表明我们的方法可以实现更好的图像质量。

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