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生成可扩展二尖瓣形态计量模型的工具包。

A toolbox for generating scalable mitral valve morphometric models.

机构信息

Department of Mechanical Engineering, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.

Department of Mechanical Engineering, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.

出版信息

Comput Biol Med. 2021 Aug;135:104628. doi: 10.1016/j.compbiomed.2021.104628. Epub 2021 Jul 5.

Abstract

The mitral valve is a complex anatomical structure, whose shape is key to several traits of its function and disease, being crucial for the success of surgical repair and implantation of medical devices. The aim of this study was to develop a parametric, scalable, and clinically useful model of the mitral valve, enabling the biomechanical evaluation of mitral repair techniques through finite element simulations. MATLAB was used to parameterize the valve: the annular boundary was sampled from a porcine mitral valve mesh model and landmark points and relevant boundaries were selected for the parameterization of leaflets using polynomial fitting. Several geometric parameters describing the annulus, leaflet shape and papillary muscle position were implemented and used to scale the model according to patient dimensions. The developed model, available as a toolbox, allows for the generation of a population of models using patient-specific dimensions obtained from medical imaging or averaged dimensions evaluated from empirical equations based on the Golden Proportion. The average model developed using this framework accurately represents mitral valve shapes, associated with relative errors reaching less than 10% for annular and leaflet length dimensions, and less than 24% in comparison with clinical data. Moreover, model generation takes less than 5 min of computing time, and the toolbox can account for individual morphological variations and be employed to evaluate mitral valve biomechanics; following further development and validation, it will aid clinicians when choosing the best patient-specific clinical intervention and improve the design process of new medical devices.

摘要

二尖瓣是一个复杂的解剖结构,其形状是其功能和疾病特征的关键,对于手术修复和医疗设备植入的成功至关重要。本研究旨在开发一个二尖瓣的参数化、可扩展且具有临床应用价值的模型,通过有限元模拟来评估二尖瓣修复技术的生物力学特性。MATLAB 用于对瓣膜进行参数化:环形边界从猪二尖瓣网格模型中采样,并选择关键点和相关边界,使用多项式拟合对瓣叶进行参数化。实施了几个描述瓣环、瓣叶形状和乳头肌位置的几何参数,并根据患者尺寸对模型进行缩放。该模型以工具箱的形式提供,允许使用从医学图像获得的患者特定尺寸或使用基于黄金比例的经验公式评估的平均尺寸生成模型群体。使用该框架开发的平均模型准确地表示了二尖瓣的形状,与环形和瓣叶长度尺寸的相对误差小于 10%,与临床数据的相对误差小于 24%。此外,模型生成所需的计算时间不到 5 分钟,该工具箱可以考虑个体形态变化,并用于评估二尖瓣的生物力学特性;在进一步开发和验证后,它将有助于临床医生选择最佳的特定于患者的临床干预措施,并改进新型医疗设备的设计过程。

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