Suppr超能文献

心脏血流模拟:综述

Heart blood flow simulation: a perspective review.

作者信息

Doost Siamak N, Ghista Dhanjoo, Su Boyang, Zhong Liang, Morsi Yosry S

机构信息

Biomechanics and Tissue Engineering Lab, Faculty of Science, Engineering and Technology, Swinburne University of Technology, Melbourne, Australia.

University 2020 Foundation, Northborough, MA, USA.

出版信息

Biomed Eng Online. 2016 Aug 25;15(1):101. doi: 10.1186/s12938-016-0224-8.

Abstract

Cardiovascular disease (CVD), the leading cause of death today, incorporates a wide range of cardiovascular system malfunctions that affect heart functionality. It is believed that the hemodynamic loads exerted on the cardiovascular system, the left ventricle (LV) in particular, are the leading cause of CVD initiation and propagation. Moreover, it is believed that the diagnosis and prognosis of CVD at an early stage could reduce its high mortality and morbidity rate. Therefore, a set of robust clinical cardiovascular assessment tools has been introduced to compute the cardiovascular hemodynamics in order to provide useful insights to physicians to recognize indicators leading to CVD and also to aid the diagnosis of CVD. Recently, a combination of computational fluid dynamics (CFD) and different medical imaging tools, image-based CFD (IB-CFD), has been widely employed for cardiovascular functional assessment by providing reliable hemodynamic parameters. Even though the capability of CFD to provide reliable flow dynamics in general fluid mechanics problems has been widely demonstrated for many years, up to now, the clinical implications of the IB-CFD patient-specific LVs have not been applicable due to its limitations and complications. In this paper, we review investigations conducted to numerically simulate patient-specific human LV over the past 15 years using IB-CFD methods. Firstly, we divide different studies according to the different LV types (physiological and different pathological conditions) that have been chosen to reconstruct the geometry, and then discuss their contributions, methodologies, limitations, and findings. In this regard, we have studied CFD simulations of intraventricular flows and related cardiology insights, for (i) Physiological patient-specific LV models, (ii) Pathological heart patient-specific models, including myocardial infarction, dilated cardiomyopathy, hypertrophic cardiomyopathy and hypoplastic left heart syndrome. Finally, we discuss the current stage of the IB-CFD LV simulations in order to mimic realistic hemodynamics of patient-specific LVs. We can conclude that heart flow simulation is on the right track for developing into a useful clinical tool for heart function assessment, by (i) incorporating most of heart structures' (such as heart valves) operations, and (ii) providing useful diagnostic indices based hemodynamic parameters, for routine adoption in clinical usage.

摘要

心血管疾病(CVD)是当今主要的死亡原因,它包含了一系列影响心脏功能的心血管系统故障。据信,施加在心血管系统上,尤其是左心室(LV)上的血流动力学负荷,是CVD发生和发展的主要原因。此外,人们认为早期诊断和预测CVD可以降低其高死亡率和发病率。因此,已经引入了一套强大的临床心血管评估工具来计算心血管血流动力学,以便为医生提供有用的见解,以识别导致CVD的指标,并辅助CVD的诊断。最近,计算流体动力学(CFD)和不同医学成像工具的结合,即基于图像的CFD(IB-CFD),通过提供可靠的血流动力学参数,已被广泛用于心血管功能评估。尽管多年来CFD在一般流体力学问题中提供可靠流动动力学的能力已得到广泛证明,但到目前为止,由于其局限性和复杂性,基于IB-CFD的患者特异性左心室的临床意义尚未得到应用。在本文中,我们回顾了过去15年使用IB-CFD方法对患者特异性人体左心室进行数值模拟的研究。首先,我们根据为重建几何形状而选择的不同左心室类型(生理和不同病理状况)对不同研究进行分类,然后讨论它们的贡献、方法、局限性和发现。在这方面,我们研究了心室内流动的CFD模拟以及相关的心脏病学见解,包括(i)生理患者特异性左心室模型,(ii)病理心脏患者特异性模型,包括心肌梗死、扩张型心肌病、肥厚型心肌病和左心发育不全综合征。最后,我们讨论了IB-CFD左心室模拟的当前阶段,以便模拟患者特异性左心室的真实血流动力学。我们可以得出结论,心脏血流模拟正朝着发展成为一种用于心脏功能评估的有用临床工具的正确方向前进,通过(i)纳入大多数心脏结构(如心脏瓣膜)的运作,以及(ii)基于血流动力学参数提供有用的诊断指标,以便在临床使用中常规采用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8673/5000510/3e2d6f697275/12938_2016_224_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验