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Simulation study on characteristics of information extraction in multiple-image radiography
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作者 Cui Zhang Xiao-Dong Pan +4 位作者 Jing-Jie Ding Hong-Jie Shang Zhang-Gu Chen Yong-Fan Pu Gong-Ping Li 《Nuclear Science and Techniques》 SCIE CAS CSCD 2018年第5期87-97,共11页
Simulation experiments were performed to investigate the characteristics of information extraction in multiple-image radiography(MIR) based on geometrical optics approximation. Different Poisson noise levels were adde... Simulation experiments were performed to investigate the characteristics of information extraction in multiple-image radiography(MIR) based on geometrical optics approximation. Different Poisson noise levels were added to the simulation, and the results show that Poisson noise deteriorates the extraction results, with the degree of refraction > USAXS > absorption. The effects of Poisson noise are negligible when the detector's photon counts are about 1000 ph/pixel. A wider sampling range allows more accurate extraction results, but a narrower sampling range has a better signal-to-noise ratio for high Poisson noise levels, e.g., PN(10). The sampling interval can be suitably increased with a minor impact on the extraction results for low Poisson noise levels(PN(10000)). The extraction results are incomplete because a portion of the samplerocking curve is beyond the sampling range. This induces artifacts in the images, especially for strong refraction and USAXS signals. The artifacts are not obvious when the refraction angle and standard deviation of the USAXS are smaller than the sampling range by an order of magnitude.In general, the absorption barely affects the extraction results. However, additional Poisson noise will be generated when the sample is made of high-Z elements or has a large size due to the strong absorption. Here, the extraction results will deteriorate, and additional exposure time is required. This simulation provides important details on practical applications of MIR, with improvements in information extraction. 展开更多
关键词 X-ray imaging Phase CONTRAST ROCKING CURVE multiple-image radiography
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衍射增强成像相位信息提取与融合研究 被引量:1
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作者 胡春红 赵涛 +3 位作者 李辉 王雪艳 赵新颜 罗述谦 《中国图象图形学报》 CSCD 北大核心 2008年第8期1622-1628,共7页
众所周知,衍射增强成像(diffraction enhanced imaging,DEI)是一种功能强大的相位衬度成像技术,对于软组织来说,它能获得比基于吸收的传统X射线成像技术更高的衬度,并且能获得几乎不受散射影响的吸收像和折射像,而多图统计法(multiple i... 众所周知,衍射增强成像(diffraction enhanced imaging,DEI)是一种功能强大的相位衬度成像技术,对于软组织来说,它能获得比基于吸收的传统X射线成像技术更高的衬度,并且能获得几乎不受散射影响的吸收像和折射像,而多图统计法(multiple image radiography,MIR)则是在统计分析的基础上,对DEI进行改进而发展起来的新方法。和DEI方法相比较,由于MIR方法更不易受噪声的影响,同时能获得额外的小角散射像,而小角散射像则能显示物体的微观结构,因此,MIR方法能同时获得吸收像、折射像和小角散射像3种图像。另外,通过对吸收像、折射像和小角散射像进行融合,还能够在一幅图像中显示物体的多种信息。利用MIR方法获得生物样品3种相位信息图像,并对3种相位信息进行融合实验的结果表明,MIR图像能够清楚地显示出生物样品的内部细节和结构。 展开更多
关键词 相位信息提取 衍射增强成像 生物医学成像 多图统计法 图像融合
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