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基于血流的冠状动脉旁路移植术通畅性指标:用于指导发展的不确定性量化模拟

Flow-Based Coronary Artery Bypass Graft Patency Metrics: Uncertainty Quantification Simulations to Guide Development.

作者信息

Drost Sita, Drost Cornelis J

机构信息

Transonic Europe B.V., Business Park Stein 205, Elsloo, 6181 MB, The Netherlands.

Transonic Systems Inc., 34 Dutch Mill Road, Ithaca, New York, 14850, USA.

出版信息

Cardiovasc Eng Technol. 2025 Apr;16(2):171-189. doi: 10.1007/s13239-024-00765-8. Epub 2025 Jan 3.

Abstract

PURPOSE

Over time, transit time flow measurement (TTFM) has proven itself as a simple and effective tool for intra-operative evaluation of coronary artery bypass grafts (CABGs). However, metrics used to screen for possible technical error show considerable spread, preventing the definition of sharp cut-off values to distinguish between patent, questionable, and failed grafts. The simulation study presented in this paper aims to quantify this uncertainty for commonly used patency metrics, and to identify the most important physiological parameters influencing it.

METHODS

Uncertainty quantification was performed on a realistic multiscale numerical model of the coronary circulation, guided by Morris screening sensitivity analysis of a simpler, lumped-parameter model. Simulation results were qualitatively verified against results of a recent clinical study.

RESULTS

Correspondence with clinical study data is reasonable, especially considering that the model was not fitted in any way. Stenosis severity was confirmed to be an influential parameter. However, also cardiac period and graft diameter were observed to be important, particularly for mean flow rate and pulsatility index.

CONCLUSION

Metrics quantifying the flow waveform's diastolic dominance show the highest sensitivity to graft stenosis, and seem to be least affected by autoregulation. Among these, the novel diastolic resistance index shows the strongest sensitivity to stenosis severity.

SIGNIFICANCE

The approach used in this study is expected to benefit the development of improved patency metrics, by allowing medical engineers to include sensitivity and uncertainty in assessing, in-silico, the potential of novel metrics, thus enabling them to provide better guidance in the design of clinical studies.

摘要

目的

随着时间的推移,渡越时间血流测量(TTFM)已证明自身是一种用于冠状动脉旁路移植术(CABG)术中评估的简单而有效的工具。然而,用于筛查可能技术误差的指标显示出相当大的差异,这使得难以定义明确的临界值来区分通畅、可疑和失败的移植血管。本文所呈现的模拟研究旨在量化常用通畅指标的这种不确定性,并确定影响它的最重要生理参数。

方法

在冠状动脉循环的真实多尺度数值模型上进行不确定性量化,以一个更简单的集总参数模型的莫里斯筛选敏感性分析为指导。模拟结果与近期一项临床研究的结果进行了定性验证。

结果

与临床研究数据的对应是合理的,特别是考虑到该模型未进行任何拟合。狭窄严重程度被确认为一个有影响的参数。然而,还观察到心动周期和移植血管直径也很重要,尤其是对平均流速和搏动指数而言。

结论

量化血流波形舒张期优势的指标对移植血管狭窄显示出最高的敏感性,并且似乎受自动调节的影响最小。其中,新的舒张期阻力指数对狭窄严重程度显示出最强的敏感性。

意义

本研究中使用的方法有望通过允许医学工程师在计算机模拟中评估新指标的潜力时纳入敏感性和不确定性,从而为改进通畅指标的开发提供帮助,进而使他们能够在临床研究设计中提供更好的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4479/11933184/09674c0ec97f/13239_2024_765_Fig1_HTML.jpg

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