区间(图论)
计算机科学
光学测图
计算机视觉
数学
心脏病学
医学
组合数学
作者
Peter Langfield,Josselin Duchâteau,Richard D. Walton,Frédéric Sacher,Julien Rogier,Louis Labrousse,Fabien Brette,Mélèze Hocini,Michel Haı̈ssaguerre,Olivier Bernus,Edward J. Vigmond
出处
期刊:Computing in Cardiology (CinC), 2012
日期:2018-12-30
标识
DOI:10.22489/cinc.2018.132
摘要
Background: A large Dispersion of Repolarization (DoR) is associated with an increased arrhythmogenic risk.This can be measured clinically by calculating the Activation Recovery Interval (ARI) to estimate Action Potential Duration (APD).However, the ability of ARI to accurately predict APD dispersion in patients with repolarization abnormality has not been determined.Objective: Compare ARI calculated from patients with optical mapping of human hearts to establish the validity of ARI as a surrogate for APD.Methods: Optical mapping (OM) was performed on the left ventricles of 4 explanted human hearts.APD and repolarization times were measured endo-and epicardially on the anterior of the LV.Electroanatomic mapping was performed with CARTO over the entire endo-and epicardial surfaces of 3 patients.Activation and repolarization were calculated, dispersion of ARI was measured.Results: APD and ARI were consistent between mapping methods over most of the sub-regions studied.Epicardium ARI dispersion was consistently higher than that of the endocardium in both OM and CARTO datasets.Conclusion: APD distribution, and consequently DoR, agree between mapping methods.Measuring DoR by ARI accurately assesses the underlying repolarization abnormalities in patients.
科研通智能强力驱动
Strongly Powered by AbleSci AI