Javascript must be enabled to continue!
Robustness of electrocardiographic imaging in the presence of electrical noise
View through CrossRef
Abstract
Funding Acknowledgements
Type of funding sources: Other. Main funding source(s): Ministerio de Ciencia, Innovación y Universidades; Generalitat Valenciana
Background
Electrocardiographic Imaging (ECGI) allows evaluating the cardiac substrate non-invasively. However, the inverse solution is strongly dependent on the noise of the body surface signals. Zero-order Tikhonov regularization together with L-curve optimization, widely used in ECGI studies, allows minimizing the sources of noise to find an optimal solution.
Objective
Evaluate the effect of electrical and noise on the L-curve optimization in computer simulations of atrial activity and in the physiological interpretation of the inverse solution.
Methods
Five atrial simulations of regular rhythms (3 atrial flutter and 2 sinus rhythm) were used for computing the ECGI with five signal-to-noise ratios (SNR) (from 3dB to 40dB). ECGI was computed by zero-order Tikhonov regularization and L-curve optimization. The regularization parameter (λ) and the shape of the curve were analysed. Electrical noise was added to signals from an atrial flutter patient to study the effect on real ECGI signals. Local activation time (LAT) maps were obtained to evaluate the quality of the ECGI in front of noise. Correlation coefficient (CC) of LAT maps was computed between simulated electrograms and ECGIs.
Results
The level of noise was found to be correlated with the optimal regularization parameter (λ), (SNR 3dB, λ>10-6, SNR 40dB, λ<10-9). LAT maps for the optimal λ and higher were able to find relevant information about the simulation and patient independently on the SNR (CC3dB-EGM = 0.66±0.1, CC40dB-EGM = 0.76±0.1). Similar behaviour was observed in real atrial flutter signals (CC3dB-Ref = 0.83, CC10dB-Ref = 0.93). LAT maps from the atrial flutter were able to accurately locate the reentry circuit, as found in the electroanatomical map independently on the SNR.
Conclusion
LAT maps derived from ECGI are robust against the presence of noise. Although the reconstructed potentials are smoother with increasing levels of noise, LAT maps with and without noise show a good correlation thanks to an increased regularization.
Figure 1. A. Local activation times (LAT) map of a reference electrogram (EGM) from a computer simulation of sinus rhythm in the atria. B. Electrocardiographic imaging maps (ECGI) obtained from the simulation A for different levels of electrical noise and regularization parameters. C. Example of LAT map obtained with ECGI and the endocardial map of a typical atrial flutter together with LAT maps with increased electrical noise but comparable results (CC > 0.83).
Oxford University Press (OUP)
Title: Robustness of electrocardiographic imaging in the presence of electrical noise
Description:
Abstract
Funding Acknowledgements
Type of funding sources: Other.
Main funding source(s): Ministerio de Ciencia, Innovación y Universidades; Generalitat Valenciana
Background
Electrocardiographic Imaging (ECGI) allows evaluating the cardiac substrate non-invasively.
However, the inverse solution is strongly dependent on the noise of the body surface signals.
Zero-order Tikhonov regularization together with L-curve optimization, widely used in ECGI studies, allows minimizing the sources of noise to find an optimal solution.
Objective
Evaluate the effect of electrical and noise on the L-curve optimization in computer simulations of atrial activity and in the physiological interpretation of the inverse solution.
Methods
Five atrial simulations of regular rhythms (3 atrial flutter and 2 sinus rhythm) were used for computing the ECGI with five signal-to-noise ratios (SNR) (from 3dB to 40dB).
ECGI was computed by zero-order Tikhonov regularization and L-curve optimization.
The regularization parameter (λ) and the shape of the curve were analysed.
Electrical noise was added to signals from an atrial flutter patient to study the effect on real ECGI signals.
Local activation time (LAT) maps were obtained to evaluate the quality of the ECGI in front of noise.
Correlation coefficient (CC) of LAT maps was computed between simulated electrograms and ECGIs.
Results
The level of noise was found to be correlated with the optimal regularization parameter (λ), (SNR 3dB, λ>10-6, SNR 40dB, λ<10-9).
LAT maps for the optimal λ and higher were able to find relevant information about the simulation and patient independently on the SNR (CC3dB-EGM = 0.
66±0.
1, CC40dB-EGM = 0.
76±0.
1).
Similar behaviour was observed in real atrial flutter signals (CC3dB-Ref = 0.
83, CC10dB-Ref = 0.
93).
LAT maps from the atrial flutter were able to accurately locate the reentry circuit, as found in the electroanatomical map independently on the SNR.
Conclusion
LAT maps derived from ECGI are robust against the presence of noise.
Although the reconstructed potentials are smoother with increasing levels of noise, LAT maps with and without noise show a good correlation thanks to an increased regularization.
Figure 1.
A.
Local activation times (LAT) map of a reference electrogram (EGM) from a computer simulation of sinus rhythm in the atria.
B.
Electrocardiographic imaging maps (ECGI) obtained from the simulation A for different levels of electrical noise and regularization parameters.
C.
Example of LAT map obtained with ECGI and the endocardial map of a typical atrial flutter together with LAT maps with increased electrical noise but comparable results (CC > 0.
83).
Related Results
Environmental History of Oceanic Noise Pollution
Environmental History of Oceanic Noise Pollution
The concept of “ocean noise” precedes the concept of “ocean noise pollution” by about half a century. Those seeking a body of scholarly literature on ocean noise as an environmenta...
EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Mechanism of suppressing noise intensity of squeezed state enhancement
Mechanism of suppressing noise intensity of squeezed state enhancement
This research focuses on advanced noise suppression technologies for high-precision measurement systems, particularly addressing the limitations of classical noise reducing approac...
A Comprehensive Review of Noise Measurement, Standards, Assessment, Geospatial Mapping and Public Health
A Comprehensive Review of Noise Measurement, Standards, Assessment, Geospatial Mapping and Public Health
Noise pollution is an emerging issue in cities around the world. Noise is a pernicious pollutant in urban landscapes mainly due to the increasing number of city inhabitants, road a...
Frequency and bias dependent modeling of induced gate noise and cross-correlation noise in 40 nm metal-oxide-semiconductor field-effect transistors
Frequency and bias dependent modeling of induced gate noise and cross-correlation noise in 40 nm metal-oxide-semiconductor field-effect transistors
With the development of down-scaling of CMOS technology for low power, mixed-signal, and high frequency applications, the optimal high frequency performance is shown to be shifted ...
Noise Maps for Quantitative and Clinical Severity Towards Long-Term ECG Monitoring
Noise Maps for Quantitative and Clinical Severity Towards Long-Term ECG Monitoring
Noise and artifacts are inherent contaminating components and are particularly present in Holter electrocardiogram (ECG) monitoring. The presence of noise is even more significant ...
Research Progress of Noise in High-Speed Cutting Machining
Research Progress of Noise in High-Speed Cutting Machining
High-speed cutting technology has become a development trend in the material processing industry. However, high-intensity noise generated during high-speed cutting exerts a potenti...
Unsound Judgments
Unsound Judgments
This aural history surveys two parallel developments in the postwar United States: the commercial popularization of the white noise or “white sound” machine in the 1960s and ’70s; ...

