矢量场异质性用于评估来自高密度多电极的局部紊乱心脏电传播波阵面

IF 2.7 Q3 ENGINEERING, BIOMEDICAL IEEE Open Journal of Engineering in Medicine and Biology Pub Date : 2023-12-20 DOI:10.1109/OJEMB.2023.3344349
Lucía Pancorbo;Samuel Ruipérez-Campillo;Álvaro Tormos;Antonio Guill;Raquel Cervigón;Antonio Alberola;Francisco Javier Chorro;José Millet;Francisco Castells
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引用次数: 0

摘要

由于高密度多电极导管具有识别受损部位的潜力,因此在心脏电生理学中越来越受欢迎,用于对心脏组织进行高级特征描述。这些部位通常以异常电传导为特征,可能会导致局部传播波面紊乱。为了对其进行量化,我们提出了一种基于矢量场分析的新型异质性参数,利用有限差分来测量相邻小块之间的方向变化。所提出的矢量场异质性指标已在一组模拟中进行了评估,模拟中的矢量图组织程度受控,网格大小各异。此外,还在离体朗根多夫灌注兔心脏的动物实验模型上进行了测试。与经典的空间不均匀性指数相比,所提出的参数对异质传播波面的捕捉能力更强,模拟证明该指标能有效捕捉传播模式中逐渐增加的无序性。值得注意的是,该指标在网格大小为 $\mathbf {4\times 4}$ 的情况下也能产生稳健而一致的结果,这表明该指标适用于最新一代与方向无关的心脏导管。
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Vector Field Heterogeneity for the Assessment of Locally Disorganised Cardiac Electrical Propagation Wavefronts From High-Density Multielectrodes
High-density multielectrode catheters are becoming increasingly popular in cardiac electrophysiology for advanced characterisation of the cardiac tissue, due to their potential to identify impaired sites. These are often characterised by abnormal electrical conduction, which may cause locally disorganised propagation wavefronts. To quantify it, a novel heterogeneity parameter based on vector field analysis is proposed, utilising finite differences to measure direction changes between adjacent cliques. The proposed Vector Field Heterogeneity metric has been evaluated on a set of simulations with controlled levels of organisation in vector maps, and a variety of grid sizes. Furthermore, it has been tested on animal experimental models of isolated Langendorff-perfused rabbit hearts. The proposed parameter exhibited superior capturing ability of heterogeneous propagation wavefronts compared to the classical Spatial Inhomogeneity Index, and simulations proved that the metric effectively captures gradual increments in disorganisation in propagation patterns. Notably, it yielded robust and consistent outcomes for $\mathbf {4\times 4}$ grid sizes, underscoring its suitability for the latest generation of orientation-independent cardiac catheters.
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来源期刊
CiteScore
9.50
自引率
3.40%
发文量
20
审稿时长
10 weeks
期刊介绍: The IEEE Open Journal of Engineering in Medicine and Biology (IEEE OJEMB) is dedicated to serving the community of innovators in medicine, technology, and the sciences, with the core goal of advancing the highest-quality interdisciplinary research between these disciplines. The journal firmly believes that the future of medicine depends on close collaboration between biology and technology, and that fostering interaction between these fields is an important way to advance key discoveries that can improve clinical care.IEEE OJEMB is a gold open access journal in which the authors retain the copyright to their papers and readers have free access to the full text and PDFs on the IEEE Xplore® Digital Library. However, authors are required to pay an article processing fee at the time their paper is accepted for publication, using to cover the cost of publication.
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