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(Reference retrieved automatically from SciELO through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

The temporal stability of recurrence quantification analysis attributes from chronic atrial fibrillation electrograms

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Author(s):
Tiago Paggi de Almeida ; Fernando Soares Schlindwein ; João Salinet [3] ; Xin Li [4] ; Gavin Shen-Wei Chu ; Jiun Haur Tuan [6] ; Peter James Stafford [7] ; G André Ng ; Diogo Coutinho Soriano [9]
Total Authors: 9
Document type: Journal article
Source: Res. Biomed. Eng.; v. 34, n. 4, p. 337-349, 2018-10-00.
Abstract

Abstract Introduction The temporal behavior of atrial electrograms (AEGs) collected during persistent atrial fibrillation (persAF) directly affects ablative treatment outcomes. We investigated different durations of AEGs collected during persAF using recurrence quantification analysis (RQA). Methods 797 bipolar AEGs with different durations (from 0.5 s to 8 s) from 18 patients were investigated. Four RQA-based attributes were evaluated based on AEG durations: determinism (DET); recurrence rate (RR); laminarity (LAM); and diagonal lines’ entropy (ENTR). The Spearman correlation (ρ) between each duration versus 8 s was calculated. AEG classification was performed following the CARTO criteria (Biosense Webster) and receiving operating characteristic (ROC) curves were created for the RQA variables. Results The RQA variables successfully discriminated the AEGs: the area under the ROC curves were as high as 0.70 for AEGs with 3.5 s or greater. Three types of AEGs were found using these variables: normal, fractionated and temporally unstable. The number of unstable AEGs decreased with longer AEG segments. Different AEG durations significantly affected the RQA variables (P<0.0001), with no statistical difference between the durations 6 s, 7 s and 8 s for DET, LAM and ENTR, and no difference between 7 s and 8 s for RR (P<0.0001). AEGs with 3 s or longer have shown ρ ≥ 80% for all variables. Conclusion The RQA variables have been shown effective in the characterization of AEGs collected during persAF with a shorter duration than current recommendations, which motivates their use for the characterization of atrial substrate during persAF ablation. (AU)

FAPESP's process: 15/12799-9 - 42th annual scientific meeting of Computing in Cardiology
Grantee:João Loures Salinet Júnior
Support Opportunities: Research Grants - Meeting - Abroad
FAPESP's process: 17/00319-8 - Atrial substrate identification in patients with chronic atrial fibrillation using multivariate statistical models and multiple attributes from atrial electrograms
Grantee:Tiago Paggi de Almeida
Support Opportunities: Scholarships in Brazil - Post-Doctoral