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基于高分辨率同步辐射的相位对比成像与吸收对比成像在评估大鼠脑内血管网络结构中的比较:从 2D 到 3D 视角。

Comparison of high-resolution synchrotron-radiation-based phase-contrast imaging and absorption-contrast imaging for evaluating microstructure of vascular networks in rat brain: from 2D to 3D views.

机构信息

Department of Neurology, Xiangya Hospital, Central South University, Changsha, Hunan 410008, People's Republic of China.

State Key Laboratory of Drug Research, CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, People's Republic of China.

出版信息

J Synchrotron Radiat. 2019 Nov 1;26(Pt 6):2024-2032. doi: 10.1107/S1600577519011688. Epub 2019 Sep 11.

DOI:10.1107/S1600577519011688
PMID:31721747
Abstract

Conventional imaging methods such as magnetic resonance imaging, computed tomography and digital subtraction angiography have limited temporospatial resolutions and shortcomings like invasive angiography, potential allergy to contrast agents, and image deformation, that restrict their application in high-resolution visualization of the structure of microvessels. In this study, through comparing synchrotron radiation (SR) absorption-contrast imaging to absorption phase-contrast imaging, it was found that SR-based phase-contrast imaging could provide more detailed ultra-high-pixel images of microvascular networks than absorption phase-contrast imaging. Simultaneously, SR-based phase-contrast imaging was used to perform high-quality, multi-dimensional and multi-scale imaging of rat brain angioarchitecture. With the aid of image post-processing, high-pixel-size two-dimensional virtual slices can be obtained without sectioning. The distribution of blood supply is in accordance with the results of traditional tissue staining. Three-dimensional anatomical maps of cerebral angioarchitecture can also be acquired. Functional partitions of regions of interest are reproduced in the reconstructed rat cerebral vascular networks. Imaging analysis of the same sample can also be displayed simultaneously in two- and three-dimensional views, which provides abundant anatomical information together with parenchyma and vessels. In conclusion, SR-based phase-contrast imaging holds great promise for visualizing microstructure of microvascular networks in two- and three-dimensional perspectives during the development of neurovascular diseases.

摘要

传统的成像方法,如磁共振成像、计算机断层扫描和数字减影血管造影,具有有限的时空分辨率,并且存在侵入性血管造影、潜在的造影剂过敏和图像变形等缺点,限制了它们在高分辨率可视化微血管结构中的应用。在这项研究中,通过比较同步辐射(SR)吸收对比成像和吸收相位对比成像,发现基于 SR 的相位对比成像可以提供比吸收相位对比成像更详细的微血管网络超高像素图像。同时,基于 SR 的相位对比成像用于对大鼠脑血管结构进行高质量、多维和多尺度成像。借助图像后处理,可以在不进行切片的情况下获得高像素尺寸的二维虚拟切片。供血分布与传统组织染色的结果一致。还可以获得脑血管解剖学的三维解剖图谱。对感兴趣区域的功能分区在重建的大鼠脑血管网络中得到再现。还可以同时在二维和三维视图中显示对同一样本的成像分析,提供丰富的解剖信息以及实质和血管。总之,基于 SR 的相位对比成像有望在神经血管疾病发展过程中可视化微血管网络的微观结构,提供二维和三维视角。

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