Advancements in Coronary Bifurcation Stenting Techniques: Insights From Computational and Bench Testing Studies

IF 2.2 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Andrea Colombo, Claudio Chiastra, Diego Gallo, Poay Huan Loh, Socrates Dokos, Mingzi Zhang, Hamed Keramati, Dario Carbonaro, Francesco Migliavacca, Tapabrata Ray, Nigel Jepson, Susann Beier
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引用次数: 0

Abstract

Coronary bifurcation lesions present complex challenges in interventional cardiology, necessitating effective stenting techniques to achieve optimal results. This literature review comprehensively examines the application of computational and bench testing methods in coronary bifurcation stenting, offering insights into procedural aspects, stent design considerations, and patient-specific characteristics. Structural mechanics finite element analysis, computational fluid dynamics, and multi-objective optimization are valuable tools for evaluating stenting strategies, including provisional side branch stenting and two-stenting techniques. We highlight the impact of procedural factors, such as balloon positioning and rewiring techniques, and stent design features on the outcome of percutaneous coronary interventions with stents. We discuss the importance of patient-specific characteristics in deployment strategies, such as bifurcation angle and plaque properties. This understanding informs present and future research and clinical practice on bifurcation stenting. Computational simulations are a continuously maturing advance that has significantly enhanced stenting devices and techniques for coronary bifurcation lesions over the years. However, the accurate account of patient-specific vessel and lesion characteristics, both in terms of anatomical and accurate physiological behavior, and their large variation between patients, remains a significant challenge in the field. In this context, advancements in multi-objective optimization offer significant opportunities for refining stent design and procedural practices.

Abstract Image

冠状动脉分叉支架置入技术的进展:来自计算和台架试验研究的见解
冠状动脉分叉病变在介入心脏病学中是一个复杂的挑战,需要有效的支架置入技术来达到最佳效果。本文献综述全面考察了计算和台架测试方法在冠状动脉分叉支架置入中的应用,提供了对程序方面、支架设计考虑和患者特异性特征的见解。结构力学、有限元分析、计算流体动力学和多目标优化是评估支架置入策略的重要工具,包括临时侧支支架置入和双支支架置入技术。我们强调了程序因素的影响,如球囊定位和重新布线技术,以及支架设计特征对经皮冠状动脉支架介入治疗结果的影响。我们讨论了部署策略中患者特异性特征的重要性,例如分岔角度和斑块特性。这一认识为目前和未来的分叉支架术研究和临床实践提供了依据。计算模拟是一项不断成熟的进步,多年来显著增强了冠状动脉分叉病变的支架植入设备和技术。然而,在解剖学和准确的生理行为方面,准确地描述患者特异性血管和病变特征,以及它们在患者之间的巨大差异,仍然是该领域的一个重大挑战。在这种情况下,多目标优化的进步为改进支架设计和程序实践提供了重要的机会。
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来源期刊
International Journal for Numerical Methods in Biomedical Engineering
International Journal for Numerical Methods in Biomedical Engineering ENGINEERING, BIOMEDICAL-MATHEMATICAL & COMPUTATIONAL BIOLOGY
CiteScore
4.50
自引率
9.50%
发文量
103
审稿时长
3 months
期刊介绍: All differential equation based models for biomedical applications and their novel solutions (using either established numerical methods such as finite difference, finite element and finite volume methods or new numerical methods) are within the scope of this journal. Manuscripts with experimental and analytical themes are also welcome if a component of the paper deals with numerical methods. Special cases that may not involve differential equations such as image processing, meshing and artificial intelligence are within the scope. Any research that is broadly linked to the wellbeing of the human body, either directly or indirectly, is also within the scope of this journal.
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