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颅内动脉瘤血流动力学建模可靠性研究综述:为何单纯计算流体动力学无法解决该问题。

A review on the reliability of hemodynamic modeling in intracranial aneurysms: why computational fluid dynamics alone cannot solve the equation.

机构信息

1Department of Fluid Dynamics and Technical Flows.

2Research CampusSTIMULATE, and.

出版信息

Neurosurg Focus. 2019 Jul 1;47(1):E15. doi: 10.3171/2019.4.FOCUS19181.

Abstract

Computational blood flow modeling in intracranial aneurysms (IAs) has enormous potential for the assessment of highly resolved hemodynamics and derived wall stresses. This results in an improved knowledge in important research fields, such as rupture risk assessment and treatment optimization. However, due to the requirement of assumptions and simplifications, its applicability in a clinical context remains limited.This review article focuses on the main aspects along the interdisciplinary modeling chain and highlights the circumstance that computational fluid dynamics (CFD) simulations are embedded in a multiprocess workflow. These aspects include imaging-related steps, the setup of realistic hemodynamic simulations, and the analysis of multidimensional computational results. To condense the broad knowledge, specific recommendations are provided at the end of each subsection.Overall, various individual substudies exist in the literature that have evaluated relevant technical aspects. In this regard, the importance of precise vessel segmentations for the simulation outcome is emphasized. Furthermore, the accuracy of the computational model strongly depends on the specific research question. Additionally, standardization in the context of flow analysis is required to enable an objective comparison of research findings and to avoid confusion within the medical community. Finally, uncertainty quantification and validation studies should always accompany numerical investigations.In conclusion, this review aims for an improved awareness among physicians regarding potential sources of error in hemodynamic modeling for IAs. Although CFD is a powerful methodology, it cannot provide reliable information, if pre- and postsimulation steps are inaccurately carried out. From this, future studies can be critically evaluated and real benefits can be differentiated from results that have been acquired based on technically inaccurate procedures.

摘要

颅内动脉瘤(IA)的计算血流动力学建模在评估高分辨率血流动力学和衍生壁应力方面具有巨大潜力。这导致在诸如破裂风险评估和治疗优化等重要研究领域的知识得到了提高。然而,由于需要假设和简化,其在临床环境中的适用性仍然有限。

本文重点介绍了沿交叉学科建模链的主要方面,并强调了计算流体动力学(CFD)模拟嵌入多处理工作流程的情况。这些方面包括与成像相关的步骤、真实血流动力学模拟的设置以及多维计算结果的分析。为了浓缩广泛的知识,在每个小节的末尾都提供了具体的建议。

总的来说,文献中有各种单独的子研究评估了相关的技术方面。在这方面,强调了模拟结果中精确血管分段的重要性。此外,计算模型的准确性强烈依赖于具体的研究问题。此外,需要在流程分析方面进行标准化,以实现研究结果的客观比较,并避免医学领域内的混淆。最后,应该始终伴随着数值研究进行不确定性量化和验证研究。

总之,本综述旨在提高医生对 IA 中血流动力学建模潜在误差源的认识。尽管 CFD 是一种强大的方法,但如果不准确地进行预和后模拟步骤,它就无法提供可靠的信息。由此,未来的研究可以进行批判性评估,并且可以将真正的收益与基于技术上不准确的过程获得的结果区分开来。

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