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PACS环境下X光片的稳健在线方向校正

Robust online orientation correction for radiographs in PACS environments.

作者信息

Luo Hui, Luo Jiebo

机构信息

Kodak Health Imaging Research Laboratory, Rochester, NY 14650, USA.

出版信息

IEEE Trans Med Imaging. 2006 Oct;25(10):1370-9. doi: 10.1109/tmi.2006.880677.

Abstract

In picture archiving and communications systems (PACS), images need to be displayed in standardized ways for radiologists' interpretations. However, for most radiographs acquired via computed radiography (CR), digital radiography (DR), or digitized films, the image orientation is undetermined because of the variations in examination conditions and patients' situations. To address this problem, an automatic orientation correction method is developed. It first detects the most indicative region in a radiograph for image orientation, and then extracts a set of low-level visual features from the region. Based on these features, a well-trained classifier, using support vector machines, is employed to recognize the correct orientation of the radiograph and reorient it to the desired position. A large-scale experiment was conducted on more than 12 000 radiographs, which covered a wide variety of exam types, to validate the method. The overall success rate of orientation correction was 96.1%. A workflow study on the method also demonstrated a significant improvement in efficiency for image display. To our knowledge, this work represents the first robust system designed to handle all radiographic exam types using a unified framework instead of using dedicated strategies for different exam types.

摘要

在图像存档与通信系统(PACS)中,图像需要以标准化方式显示,以便放射科医生进行解读。然而,对于通过计算机X线摄影(CR)、数字X线摄影(DR)或数字化胶片获取的大多数X光片,由于检查条件和患者情况的差异,图像方向是不确定的。为了解决这个问题,开发了一种自动方向校正方法。它首先在X光片中检测出用于图像定向的最具指示性的区域,然后从该区域提取一组低级视觉特征。基于这些特征,使用支持向量机的经过良好训练的分类器被用来识别X光片的正确方向,并将其重新定向到所需位置。对超过12000张X光片进行了大规模实验,这些X光片涵盖了各种各样的检查类型,以验证该方法。方向校正的总体成功率为96.1%。对该方法的工作流程研究还表明,图像显示效率有了显著提高。据我们所知,这项工作代表了第一个强大的系统,该系统设计用于使用统一框架处理所有X光检查类型,而不是针对不同检查类型使用专用策略。

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