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同步加速器在线相衬显微CT能够对嵌入的软组织样本进行详细的虚拟组织学分析,无论样本是否经过染色。

Synchrotron inline phase contrast µCT enables detailed virtual histology of embedded soft-tissue samples with and without staining.

作者信息

Saccomano Mara, Albers Jonas, Tromba Giuliana, Dobrivojević Radmilović Marina, Gajović Srećko, Alves Frauke, Dullin Christian

机构信息

Translational Molecular Imaging, Max Planck Institute for Experimental Medicine, Germany.

Elettra-Sincrotrone, Trieste, Italy.

出版信息

J Synchrotron Radiat. 2018 Jul 1;25(Pt 4):1153-1161. doi: 10.1107/S1600577518005489. Epub 2018 May 31.

Abstract

Synchrotron radiation micro-computed tomography (SRµCT) based virtual histology, in combination with dedicated ex vivo staining protocols and/or phase contrast, is an emerging technology that makes use of three-dimensional images to provide novel insights into the structure of tissue samples at microscopic resolution with short acquisition times of the order of minutes or seconds. However, the high radiation dose creates special demands on sample preparation and staining. As a result of the lack of specific staining in virtual histology, it can supplement but not replace classical histology. Therefore, the aim of this study was to establish and compare optimized ex vivo staining and acquisition protocols for SRµCT-based virtual histology of soft-tissue samples, which could be integrated into the standard workflow of classical histology. The high grade of coherence of synchrotron radiation allows the application of propagation-based phase contrast imaging (PBI). In this study, PBI yielded a strong increase in image quality even at lower radiation doses and consequently prevented any damage to the tissue samples or the embedding material. This work has demonstrated that the improvement in contrast-to-noise ratio by PBI enabled label-free virtual histology of soft-tissue specimens embedded in paraffin to a level of detail that exceeds that achieved with staining protocols.

摘要

基于同步辐射微计算机断层扫描(SRµCT)的虚拟组织学,结合专门的离体染色方案和/或相衬成像,是一种新兴技术,它利用三维图像,以分钟或秒量级的短采集时间,在微观分辨率下为组织样本结构提供新见解。然而,高辐射剂量对样本制备和染色提出了特殊要求。由于虚拟组织学中缺乏特异性染色,它可以补充但不能取代传统组织学。因此,本研究的目的是建立并比较基于SRµCT的软组织样本虚拟组织学的优化离体染色和采集方案,这些方案可整合到传统组织学的标准工作流程中。同步辐射的高相干性允许应用基于传播的相衬成像(PBI)。在本研究中,即使在较低辐射剂量下,PBI也能显著提高图像质量,从而防止对组织样本或包埋材料造成任何损伤。这项工作表明,PBI对软组织标本石蜡包埋块对比度噪声比的改善实现了无标记虚拟组织学,其细节程度超过了染色方案所能达到的水平。

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