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通过 3D 全自动图像分析破译心肌梗死后的微血管变化。

Deciphering microvascular changes after myocardial infarction through 3D fully automated image analysis.

机构信息

Centro Nacional de Investigaciones Cardiovasculares Carlos III (CNIC), Madrid, 28029, Spain.

Biomedical Image Technologies (BIT), ETSI Telecomunicación, Universidad Politécnica de Madrid, Madrid, 28040, Spain.

出版信息

Sci Rep. 2018 Jan 30;8(1):1854. doi: 10.1038/s41598-018-19758-4.

Abstract

The microvasculature continuously adapts in response to pathophysiological conditions to meet tissue demands. Quantitative assessment of the dynamic changes in the coronary microvasculature is therefore crucial in enhancing our knowledge regarding the impact of cardiovascular diseases in tissue perfusion and in developing efficient angiotherapies. Using confocal microscopy and thick tissue sections, we developed a 3D fully automated pipeline that allows to precisely reconstruct the microvasculature and to extract parameters that quantify all its major features, its relation to smooth muscle actin positive cells and capillary diffusion regions. The novel pipeline was applied in the analysis of the coronary microvasculature from healthy tissue and tissue at various stages after myocardial infarction (MI) in the pig model, whose coronary vasculature closely resembles that of human tissue. We unravelled alterations in the microvasculature, particularly structural changes and angioadaptation in the aftermath of MI. In addition, we evaluated the extracted knowledge's potential for the prediction of pathophysiological conditions in tissue, using different classification schemes. The high accuracy achieved in this respect, demonstrates the ability of our approach not only to quantify and identify pathology-related changes of microvascular beds, but also to predict complex and dynamic microvascular patterns.

摘要

微血管会持续适应病理生理条件,以满足组织需求。因此,定量评估冠状动脉微血管的动态变化对于增强我们对心血管疾病在组织灌注中影响的认识以及开发有效的血管治疗方法至关重要。我们使用共聚焦显微镜和厚组织切片,开发了一个 3D 全自动管道,该管道可以精确重建微血管,并提取量化其所有主要特征、与平滑肌肌动蛋白阳性细胞和毛细血管扩散区域关系的参数。该新管道应用于分析猪模型中健康组织和心肌梗死后不同阶段的冠状动脉微血管,猪的冠状动脉血管与人类组织非常相似。我们揭示了微血管的变化,特别是在心肌梗死后的结构变化和血管适应。此外,我们使用不同的分类方案评估了提取知识在预测组织病理生理条件方面的潜力。在这方面取得的高精度证明了我们的方法不仅能够定量和识别与微血管床相关的病理学变化,还能够预测复杂和动态的微血管模式。

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