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乳腺钼靶摄影中的数字化要求:对微钙化灶计算机辅助检测的影响

Digitization requirements in mammography: effects on computer-aided detection of microcalcifications.

作者信息

Chan H P, Niklason L T, Ikeda D M, Lam K L, Adler D D

机构信息

Department of Radiology, University of Michigan, Ann Arbor 48109-0326.

出版信息

Med Phys. 1994 Jul;21(7):1203-11. doi: 10.1118/1.597354.

Abstract

We have developed a computerized method for detection of microcalcifications on digitized mammograms. The program has achieved an accuracy that can detect subtle microcalcifications which may potentially be missed by radiologists. In this study, we evaluated the dependence of the detection accuracy on the pixel size and pixel depth of the digitized mammograms. The mammograms were digitized with a laser film scanner at a pixel size of 0.035 mm x0.035 mm and 12-bit gray levels. Digitization with larger pixel sizes or fewer number of bits was simulated by averaging adjacent pixels or by eliminating the least significant bits, respectively. The SNR enhancement filter and the signal-extraction criteria in the computer program were adjusted to maximize the accuracy of signal detection for each pixel size. The overall detection accuracy was compared using the free response receiver operating characteristic curves. The results indicate that the detection accuracy decreases significantly as the pixel size increases from 0.035 mm x 0.035 mm to 0.07 mm x 0.07 mm (P < 0.007) and from 0.07 mm x 0.07 mm to 0.105 mm x 0.105 mm (P < 0.002). The detection accuracy is essentially independent of pixel depth from 12 to 9 bits and decreases significantly (P < 0.003) from 9 to 8 bits; a rapid decrease is observed as the pixel depth decreases further from 8 to 7 bits (P < 0.03) or from 7 to 6 bits (P < 0.02).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们已经开发出一种用于在数字化乳腺X线照片上检测微钙化的计算机化方法。该程序已达到能够检测放射科医生可能会遗漏的细微微钙化的准确度。在本研究中,我们评估了检测准确度对数字化乳腺X线照片像素大小和像素深度的依赖性。乳腺X线照片使用激光胶片扫描仪以0.035毫米×0.035毫米的像素大小和12位灰度级进行数字化。分别通过对相邻像素求平均或消除最低有效位来模拟更大像素大小或更少位数的数字化。调整计算机程序中的信噪比增强滤波器和信号提取标准,以最大化每个像素大小的信号检测准确度。使用自由响应接收器操作特性曲线比较总体检测准确度。结果表明,随着像素大小从0.035毫米×0.035毫米增加到0.07毫米×0.07毫米(P < 0.007)以及从0.07毫米×0.07毫米增加到0.105毫米×0.105毫米(P < 0.002),检测准确度显著降低。检测准确度在像素深度从12位到9位时基本不受影响,而从9位到8位时显著降低(P < 0.003);随着像素深度从8位进一步降低到7位(P < 0.03)或从7位降低到6位(P < 0.02),观察到快速下降。(摘要截断于250字)

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