Pancorbo Lucia, Ruiperez-Campillo Samuel, Tormos Alvaro, Guill Antonio, Cervigon Raquel, Alberola Antonio, Chorro Francisco Javier, Millet Jose, Castells Francisco
ITACA InstituteUniversitat Politècnica de València 46022 Valencia Spain.
Universidad de Castilla-La Mancha 16071 Cuenca Spain.
IEEE Open J Eng Med Biol. 2023 Dec 20;5:32-44. doi: 10.1109/OJEMB.2023.3344349. eCollection 2024.
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 [Formula: see text] grid sizes, underscoring its suitability for the latest generation of orientation-independent cardiac catheters.
高密度多电极导管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表征,因为它们有识别受损部位的潜力。这些部位通常表现为异常的电传导,这可能会导致局部无序的传播波前。为了对其进行量化,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团块之间的方向变化。所提出的矢量场异质性度量已在一组矢量图中具有受控组织水平的模拟以及各种网格大小上进行了评估。此外,它还在离体Langendorff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前具有更好的捕获能力,并且模拟证明该度量有效地捕获了传播模式中无序程度的逐渐增加。值得注意的是,对于[公式:见正文]网格大小,它产生了稳健且一致的结果,突出了其适用于最新一代与方向无关的心脏导管。