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人类病变主动脉血流动力学参数的计算流体动力学建模:一项系统综述。

Computational Fluid Dynamics Modeling of Hemodynamic Parameters in the Human Diseased Aorta: A Systematic Review.

作者信息

Ong Chi Wei, Wee Ian, Syn Nicholas, Ng Sheryl, Leo Hwa Liang, Richards Arthur Mark, Choong Andrew M T L

机构信息

Department of Biomedical Engineering, National University of Singapore, Singapore, Singapore; SingVaSC, Singapore Vascular Surgical Collaborative, Singapore, Singapore.

SingVaSC, Singapore Vascular Surgical Collaborative, Singapore, Singapore; Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.

出版信息

Ann Vasc Surg. 2020 Feb;63:336-381. doi: 10.1016/j.avsg.2019.04.032. Epub 2019 Jul 22.

Abstract

BACKGROUND

The analysis of the correlation between blood flow and aortic pathology through computational fluid dynamics (CFD) shows promise in predicting disease progression, the effect of operative intervention, and guiding patient treatment. However, to date, there has not been a comprehensive systematic review of the published literature describing CFD in aortic diseases and their treatment.

METHODS

This review includes 136 published articles which have investigated the application of CFD in all types of aortic disease (aneurysms, dissections, and coarctation). We took into account case studies of both, treated or untreated pathology, investigated with CFD. We also graded all studies using an author-defined Grading of Recommendations Assessment, Development and Evaluation (GRADE) approach based on the validation method used for the CFD results.

RESULTS

There are no randomized controlled trials assessing the efficacy of CFD as applied to aortic pathology, treated or untreated. Although a large number of observational studies are available, those using clinical imaging tools as independent validation of the calculated CFD results exist in far smaller numbers. Only 21% of all studies used clinical imaging as a tool to validate the CFD results and these were graded as high-quality studies.

CONCLUSIONS

Contemporary evidence shows that CFD can provide additional hemodynamic parameters such as wall shear stress, vorticity, disturbed laminar flow, and recirculation regions in untreated and treated aortic disease. These have the potential to predict the progression of aortic disease, the effect of operative intervention, and ultimately help guide the choice and timing of treatment to the benefit of patients and clinicians alike.

摘要

背景

通过计算流体动力学(CFD)分析血流与主动脉病变之间的相关性,在预测疾病进展、手术干预效果及指导患者治疗方面显示出前景。然而,迄今为止,尚未对已发表的描述CFD在主动脉疾病及其治疗中的应用的文献进行全面系统的综述。

方法

本综述纳入了136篇已发表的文章,这些文章研究了CFD在各类主动脉疾病(动脉瘤、夹层和缩窄)中的应用。我们考虑了CFD研究的已治疗或未治疗病变的病例研究。我们还根据用于CFD结果的验证方法,采用作者定义的推荐分级评估、制定和评价(GRADE)方法对所有研究进行分级。

结果

尚无随机对照试验评估CFD应用于已治疗或未治疗的主动脉病变的疗效。虽然有大量观察性研究,但使用临床成像工具作为计算得到的CFD结果的独立验证的研究数量要少得多。所有研究中只有21%使用临床成像作为验证CFD结果的工具,这些研究被评为高质量研究。

结论

当代证据表明,CFD可以提供额外的血流动力学参数,如壁面切应力、涡度、紊乱层流和再循环区域,用于未治疗和已治疗的主动脉疾病。这些参数有可能预测主动脉疾病的进展、手术干预的效果,并最终有助于指导治疗的选择和时机,使患者和临床医生都受益。

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