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X 射线暗场成像(XDFI)——三维虚拟组织病理学的有前途的工具。

X-ray Dark-Field Imaging (XDFI)-a Promising Tool for 3D Virtual Histopathology.

机构信息

Department of Radiological Technology, Hokkaido University of Science, Sapporo, Hokkaido, 006-8585, Japan.

Graduate School of Medicine, Nagoya University, Nagoya, Aichi, 461-8673, Japan.

出版信息

Mol Imaging Biol. 2021 Aug;23(4):481-494. doi: 10.1007/s11307-020-01577-7. Epub 2021 Feb 23.

Abstract

X-ray dark-field imaging (XDFI) utilizing a thin silicon crystal under Laue case enables visualizing three-dimensional (3D) morphological alterations of human tissue. XDFI uses refraction-contrast derived from phase shift rather than absorption as the main X-ray image contrast source to render 2D and 3D images of tissue specimens in unprecedented detail. The unique features of XDFI are its extremely high sensitivity (approximately 1000:1 compared to absorption for soft tissues under X-ray energy of around 20 keV, theoretically) and excellent resolution (8.5 μm) without requiring contrast medium or staining. Thus, XDFI-computed tomography can generate 3D virtual histological images equivalent to those of stained histological sections pathologists observe under low-power light microscopy as far as organs and tissues selected as samples in preliminary studies. This paper reviews the fundamental principles and the potential of XDFI, describes two optical setups for XDFI with examples, illustrates features of XDFI that are salient for histopathology, and presents XDFI examples of refraction-contrast images of atherosclerotic plaques, musculoskeletal tissue, neuronal tissue, and breast cancer specimens. Availability of this X-ray imaging in routine histopathological evaluations of tissue specimens would help guide clinical decision making by highlighting suspicious areas in unstained, thick sections for further sampling and analysis using conventional histopathological techniques. XDFI is a promising tool for 3D virtual histopathology.

摘要

X 射线暗场成像(XDFI)利用薄硅晶体在劳厄条件下,能够可视化人体组织的三维(3D)形态变化。XDFI 使用源自相移的折射对比而不是吸收作为主要 X 射线图像对比源,以以前所未有的细节呈现组织标本的 2D 和 3D 图像。XDFI 的独特之处在于其极高的灵敏度(对于大约 20keV 的 X 射线能量下的软组织,与吸收相比约为 1000:1,理论上)和出色的分辨率(8.5μm),而无需对比剂或染色。因此,XDFI 计算机断层扫描可以生成与病理学家在低倍光显微镜下观察到的染色组织切片相同的 3D 虚拟组织学图像,就像初步研究中选择的器官和组织样本一样。本文综述了 XDFI 的基本原理和潜力,描述了两种具有示例的 XDFI 光学设置,说明了 XDFI 对组织病理学的突出特点,并展示了 XDFI 对动脉粥样硬化斑块、肌肉骨骼组织、神经元组织和乳腺癌标本的折射对比图像的示例。这种 X 射线成像在组织标本的常规组织病理学评估中的可用性将有助于通过突出未染色、厚切片中的可疑区域,指导临床决策,以便使用常规组织病理学技术进一步采样和分析。XDFI 是 3D 虚拟组织病理学的有前途的工具。

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