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首页> 外文期刊>Nuclear instruments and methods in physics research >Highly sensitive detection of the soft tissues based on refraction contrast by in-plane diffraction-enhanced imaging CT
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Highly sensitive detection of the soft tissues based on refraction contrast by in-plane diffraction-enhanced imaging CT

机译:面内衍射增强成像CT基于折射对比度的软组织高度灵敏检测

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We discuss the recently proposed computed tomography (CT) technique based on refractive effects for biomedical use, which reconstructs the in-plane refractive-index gradient vector field in a cross-sectional plane of interest by detecting the angular deviation of the beam, refracted by a sample, from the incident beam, using the diffraction-enhanced imaging (DEI) method. The CT has advantages for delineating biological weakly absorbing soft tissues over the conventional absorption-contrast CT because of the use of phase sensitive detection. The paper aims to define the imaging scheme rigidly and to demonstrate its efficacy for non-destructive measurement of biomedical soft-tissue samples without imaging agent.rnWe first describe the imaging principle of in-plane DEI-CT from the physico-mathematical viewpoints in detail, and investigate what physical quantities are extracted from the reconstructed images. Then, we introduce the imaging system using the synchrotron radiation as a light source, constructed at beamline BL-14B in KEK, Japan. Finally, we demonstrate the advantage of the refraction-based image for non-destructive analysis of biological sample by investigating the image of human breast cancer tumors obtained using the imaging system. Here, the refraction- and the apparent absorption-based images obtained simultaneously by the in-plane DEI-CT are compared. Also, the conventional absorption-based image obtained using micro-computed tomography (μCT) imaging system is compared with them. Thereby, it is shown that the refraction contrast much more sensitively delineates the soft tissues than the absorption contrast. In addition, the radiologic-histologic correlation study not only validates the efficacy for imaging soft tissues, but also produces the potential that the pathological inspection for the breast cancer tumors may be feasible non-destructively.
机译:我们讨论了基于生物医学折射效应的最近提出的计算机断层扫描(CT)技术,该技术通过检测光束的角度偏差来重建感兴趣的横截面中的面内折射率梯度矢量场。使用衍射增强成像(DEI)方法从入射光束中提取样品。由于采用了相敏检测技术,因此与传统的吸收对比CT相比,CT具有描绘生物弱吸收软组织的优势。本文旨在严格定义成像方案,并证明其对不使用成像剂的生物医学软组织样品进行非破坏性测量的有效性。首先我们从物理数学角度详细描述平面DEI-CT的成像原理,并研究从重构图像中提取了哪些物理量。然后,我们介绍了使用同步辐射作为光源的成像系统,该系统是在日本KEK的光束线BL-14B上构建的。最后,我们通过研究使用成像系统获得的人类乳腺癌肿瘤的图像,证明了基于折射的图像对生物样品进行非破坏性分析的优势。在此,比较了通过面内DEI-CT同时获得的基于折射和视在吸收的图像。此外,将使用微计算机断层扫描(μCT)成像系统获得的常规基于吸收的图像与它们进行了比较。由此表明,折射对比度比吸收对比度更敏感地描绘了软组织。此外,放射-组织学相关性研究不仅验证了软组织成像的有效性,而且还提出了乳腺癌肿瘤的病理学检查可能无损可行的潜力。

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