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组织学分辨率下完整水合小鼠心脏的三维结构。

Three-dimensional structure of entire hydrated murine hearts at histological resolution.

作者信息

Frohn Jasper, Böddeker Frederik, Reichardt Marius, Bruns Hendrik, Czajka Titus, Khan Amara, Broche Ludovic, Krisch Michael, Bravin Alberto, Alves Frauke, Zschüntzsch Jana, Salditt Tim

机构信息

Institute for X-ray Physics, Georg-August University Göttingen, Friedrich-Hund-Platz 1, 37077, Göttingen, Germany.

Georg-August University Göttingen, University Medical Center Göttingen, 37075, Göttingen, Germany.

出版信息

Sci Rep. 2025 Jan 22;15(1):2766. doi: 10.1038/s41598-024-83853-y.

Abstract

Imaging the entire cardiomyocyte network in entire small animal hearts at single cell resolution is a formidable challenge. Optical microscopy provides sufficient contrast and resolution in 2d, however fails to deliver non-destructive 3d reconstructions with isotropic resolution. It requires several invasive preparation steps, which introduce structural artefacts, namely dehydration, physical slicing and staining, or for the case of light sheet microscopy also clearing of the tissue. Our goal is to provide 3d reconstructions of the cardiomyocyte network in entire hydrated murine hearts, and to develop a methodology for quantitative analysis of heart pathologies based on X-ray phase contrast computed tomography (XPCT). We have used XPCT at two beamlines of the extremely brilliant source (EBS) at the European Synchrotron Radiation Facility (ESRF) to scan wild-type murine hearts at high resolution, as well as a series of murine hearts of different pathological models, at reduced resolution and higher throughput. All hearts were obtained from the small animal facility of the university medical center in Göttingen. The hearts were fixed in formalin, stored and measured non-destructively in phosphate buffer solution. The high resolution dataset allows to discern individual cardiomyocytes in the tissue. All datasets have been analyzed using semi-automated image segmentation of the ventricles, rotation into a common coordinate system, classification into different anatomical compartments, and finally the structure tensor approach. A 3d streamline representation of the cardiomyocyte orientation vector field is provided. The different cardiovascular disease models are analysed based on metrics derived from the 3d structure tensor. An entire hydrated murine heart has been covered at an isotropic voxel size of 1.6 m (distributed over several volumes). A binned and fused dataset of this heart is available at 3.2 m, and has been analyzed by the structure tensor approach to yield the ventricular cardiomyocyte network or mesh, i.e. the aggregation of the cardiomyocyte chains in particular in the ventricular wall. Semi-automatic determination of structural metrics is already achieved and the corresponding tools and resulting data are made publically available. XPCT using extremely brilliant undulator radiation is close to achieve single cell reconstruction in an entire small animal organ.

摘要

在单细胞分辨率下对整个小动物心脏中的心肌细胞网络进行成像,是一项极具挑战性的任务。光学显微镜在二维层面上能提供足够的对比度和分辨率,然而却无法以各向同性分辨率实现无损三维重建。它需要几个侵入性的制备步骤,这些步骤会引入结构伪影,即脱水、物理切片和染色,或者对于光片显微镜而言,还需要对组织进行清除处理。我们的目标是提供完整水合小鼠心脏中心肌细胞网络的三维重建,并开发一种基于X射线相衬计算机断层扫描(XPCT)对心脏病理进行定量分析的方法。我们在欧洲同步辐射装置(ESRF)的极亮光源(EBS)的两条光束线上使用XPCT,以高分辨率扫描野生型小鼠心脏,以及一系列不同病理模型的小鼠心脏,分辨率较低但通量更高。所有心脏均取自哥廷根大学医学中心的小动物设施。心脏用福尔马林固定,保存在磷酸盐缓冲溶液中并进行无损测量。高分辨率数据集能够分辨组织中的单个心肌细胞。所有数据集均使用心室的半自动图像分割、旋转到公共坐标系、分类到不同解剖区域,最后采用结构张量方法进行了分析。提供了心肌细胞方向向量场的三维流线表示。基于从三维结构张量导出的指标,对不同的心血管疾病模型进行了分析。整个水合小鼠心脏在各向同性体素大小为1.6μm(分布在多个体积中)的情况下被覆盖。该心脏的一个分箱融合数据集在3.2μm时可用,并已通过结构张量方法进行分析,以生成心室心肌细胞网络或网格,即心肌细胞链特别是心室壁中的聚集。已经实现了结构指标的半自动测定,并且相应的工具和所得数据已公开提供。使用极亮波荡器辐射的XPCT已接近在整个小动物器官中实现单细胞重建。

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