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用于减少旋转全景X线摄影中多余阴影的数字灰度变换。

Digital gray-level transformation for the reduction of redundant shadows in rotational panoramic radiography.

作者信息

Hayakawa Y, Wakoh M, Yamamoto K, Ueno H, Kuroyanagi K

机构信息

Tokyo Dental College.

出版信息

Bull Tokyo Dent Coll. 1990 Aug;31(3):211-5.

PMID:2131175
Abstract

In rotational panoramic radiography, the tomographic motion in combination with a slit scanning method make an image layer wide. But some objects outside the image layer are hard to blur and they result to redundant shadows. The gray-level transformation, as one form of digital image processing for the reduction of these redundant shadows, was evaluated. Two methods, the gamma transformation and the histogram flattening method, were examined. A drum scanner was used as the image scanner. The panoramic image on the x-ray film was turned into an 8 bit digital image on the image memory, which had the size of a 512 x 480 matrix. In rotational panoramic radiography, there are low density and contrast regions where redundant shadows of the cervical vertebrae and the mandibular ramus are superimposed on the tomographic image. The histogram of the gray-level was suppressed for the lower gray-levels. The stretching of this gray-level distribution was effective in the reducing redundant shadows. When processed by gamma transformation, the smaller gamma coefficient below 1.0 clarified the tomographic image, and when processed by the histogram flattening method, the setting of the level (L) value around 64-128 effectively reduced the redundant shadows. However, the effectiveness of both gray-level transformations was greatest in restricted cases in which the area where redundant shadows were superimposed on the tomographic image was comparatively large.

摘要

在旋转全景X线摄影中,断层运动与狭缝扫描方法相结合可使图像层变宽。但图像层外的一些物体难以模糊,会产生多余的阴影。对作为减少这些多余阴影的一种数字图像处理形式的灰度变换进行了评估。研究了两种方法,即伽马变换和直方图均衡化方法。使用鼓式扫描仪作为图像扫描仪。X线胶片上的全景图像被转换为图像存储器上的8位数字图像,其大小为512×480矩阵。在旋转全景X线摄影中,存在低密度和低对比度区域,颈椎和下颌支的多余阴影叠加在断层图像上。灰度直方图在较低灰度级处受到抑制。这种灰度分布的拉伸在减少多余阴影方面是有效的。当通过伽马变换处理时,小于1.0的较小伽马系数可使断层图像更清晰,当通过直方图均衡化方法处理时,将电平(L)值设置在64 - 128左右可有效减少多余阴影。然而,两种灰度变换的有效性在受限情况下最大,即断层图像上叠加多余阴影的区域相对较大的情况。

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