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心肌梗死形态学组织学参数的高级模块化自动计算

Advanced modular automated calculation of the morpho-histological parameters in myocardial infarction.

作者信息

Curaj Adelina, Pop-Fele Lucian, Jovanovic Marko, Jonas Stephan Michael, Moellmann Julia, Ghertescu Doina, Novac Ovidiu Constantin, Rusu Mihaela, Liehn Elisa A

机构信息

Institute for Molecular Cardiovascular Research (IMCAR), RWTH Aachen University, Germany.

Institute for Molecular Cardiovascular Research, University Hospital, RWTH Aachen, Germany.

出版信息

Discoveries (Craiova). 2016 Sep 30;4(3):e66. doi: 10.15190/d.2016.13.

Abstract

Myocardial infarction represents the most investigated pathology. Heart tissues are histologically assayed on a routine base in clinical laboratories. However, the lack of a standard operation procedure for e.g. calculating the size of the infarcted area of myocardium, may lead to an increased errors' interval, with little correlation between results of a same tissue and/or with other pathophysiological parameters. This creates a clear barrier for further development of novel therapeutic strategies. In the present study, we present the robust applicability of a novel methodology such as: advanced modular automated calculation of (i) the size of infarcted heart of mice, (ii) the net collagen content present in the scar, and (iii) the interstitial fibrosis in remote, which are simultaneously performed. The new approach of defining the infarct size, one of the important predictor of every cardiac therapeutic intervention, will create a positive impact in the research accuracy. Additionally, it will be expected that the readily assembled reports of simultaneously computed parameters and its user-friendly operation allow an efficient and effective estimation of measurements.

摘要

心肌梗死是研究最多的病理情况。心脏组织在临床实验室中会定期进行组织学检测。然而,例如在计算心肌梗死面积时缺乏标准操作程序,可能会导致误差区间增大,同一组织的结果之间以及与其他病理生理参数之间的相关性很小。这为新型治疗策略的进一步发展造成了明显障碍。在本研究中,我们展示了一种新方法的强大适用性,例如:对(i)小鼠梗死心脏的大小、(ii)瘢痕中存在的净胶原含量以及(iii)远处的间质纤维化进行先进的模块化自动计算,这些计算是同时进行的。定义梗死面积的新方法是每种心脏治疗干预的重要预测指标之一,将对研究准确性产生积极影响。此外,预计同时计算参数的易于汇编的报告及其用户友好的操作将允许对测量进行高效有效的估计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30fd/6941562/5d5865bb96d4/discoveries-04-066-g001.jpg

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