首页> 美国卫生研究院文献>Yonsei Medical Journal >Comparison of Unmonochromatized Synchrotron Radiation and Conventional X-rays in the Imaging of Mammographic Phantom and Human Breast Specimens: A Preliminary Result
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Comparison of Unmonochromatized Synchrotron Radiation and Conventional X-rays in the Imaging of Mammographic Phantom and Human Breast Specimens: A Preliminary Result

机译:乳房X线摄影幻影和人类乳房标本成像中非单色同步辐射与常规X射线的比较:初步结果

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摘要

A simple imaging setup based on the principle of coherence-based contrast X-ray imaging with unmonochromatized synchrotron radiation was used for studying mammographic phantom and human breast specimens. The use of unmonochromatized synchrotron radiation simplifies the instrumentation, decreases the cost and makes the procedure simpler and potentially more suitable for clinical applications. The imaging systems consisted of changeable silicon wafer attenuators, a tungsten slit system, a CdWO4 scintillator screen, a CCD (Charge Coupled Device) camera coupled to optical magnification lenses, and a personal computer. In preliminary studies, a spatial resolution test pattern and glass capillary filled with air bubbles were imaged to evaluate the resOolution characteristics and coherence-based contrast enhancement. Both the spatial resolution and image quality of the proposed system were compared with those of a conventional mammography system in order to establish the characteristic advantages of this approach. The images obtained with the proposed system showed a resolution of at least 25 µm on the test pattern with much better contrast, while the images of the capillary filled with air bubbles revealed coherence-based edge enhancement. This result shows that the coherence-based contrast imaging system, which emphasizes the refraction effect from the edge of materials of different refractive indexes, is applicable to imaging studies in fundamental medicine and biology, although further research works will be required before it can be used for clinical applications.
机译:一个简单的成像设置基于基于相干性的对比X射线成像原理和未单色化的同步加速器辐射,用于研究乳房X线摄影体模和人体乳房标本。非单色同步加速器辐射的使用简化了仪器,降低了成本,并使过程更简单,并且可能更适合于临床应用。成像系统由可变硅晶片衰减器,钨狭缝系统,CdWO4闪烁屏,耦合到光学放大透镜的CCD(电荷耦合器件)相机以及个人计算机组成。在初步研究中,对空间分辨率测试图案和充满气泡的玻璃毛细管进行了成像,以评估再溶解特性和基于相干性的对比度增强。为了确定该方法的特征优势,将所提出系统的空间分辨率和图像质量与常规乳腺X线摄影系统进行了比较。用所提出的系统获得的图像在测试图案上显示至少25 µm的分辨率,具有更好的对比度,而充满气泡的毛细管图像则显示出基于相干性的边缘增强。该结果表明,基于相干性的对比度成像系统强调了来自不同折射率材料边缘的折射效应,适用于基础医学和生物学的成像研究,尽管在使用之前还需要进一步的研究工作。用于临床。

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