Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/31978
Title: Effects of Interpolation on the Inverse Problem of Electrocardiography
Authors: Dogrusoz, YS
Bear, LR
Bergquist, J
Dubois, R
Good, W
MacLeod, RS
Rababah, A
STOKS, Job 
Advisors: Dendale, Paul
Volders, Paul
Peeters, Ralf
Issue Date: 2020
Source: Computing in cardiology, 46
Abstract: Electrocardiographic Imaging (ECGI) aims to reconstruct electrograms from the body surface potential measurements. Bad leads are usually excluded from the inverse problem solution. Alternatively, interpolation can be applied. This study explores how sensitive ECGI is to different bad-lead configurations and interpolation methods. Experimental data from a Langendorff-perfused pig heart suspended in a human-shaped torso-tank was used. Six different bad lead cases were designed based on clinical experience. Inverse problem was solved by applying Tikhonov regularization i) using the complete data, ii) bad-leads-removed data, and iii) interpolated data, with 5 different methods. Our results showed that ECGI accuracy of an interpolation method highly depends on the location of the bad leads. If they are in the high-potential-gradient regions of the torso, a highly accurate interpolation method is needed to achieve an ECGI accuracy close to using complete data. If the BSP reconstruction of the interpolation method is poor in these regions, the reconstructed electro-grams also have lower accuracy, suggesting that bad leads should be removed instead of interpolated. The inverse-forward method was found to be the best among all interpolation methods applied in this study in terms of both missing BSP lead reconstruction and ECGI accuracy, even for the bad leads located over the chest.
Document URI: http://hdl.handle.net/1942/31978
ISBN: 9781728169361
DOI: 10.22489/cinc.2019.100
Category: C1
Type: Proceedings Paper
Appears in Collections:Research publications

Files in This Item:
File Description SizeFormat 
CinC2019-100.pdfPublished version799.51 kBAdobe PDFView/Open
Show full item record

Page view(s)

36
checked on Aug 8, 2022

Download(s)

14
checked on Aug 8, 2022

Google ScholarTM

Check

Altmetric


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.