Second heart sound (S2) splitting results from nonsimultaneous closures between aortic (A2) and pulmonic valves (P2) and may be used to detect timing differences (dyssynchrony) in relaxation between right (RV) and left ventricle (LV). However, overlap of A2 and P2 and the change in heart sound morphologies have complicated detection of the S2 splitting interval. This study introduces a novel S-transform amplitude ridge tracking (START) algorithm for estimating S2 splitting interval and investigates the relationship between S2 splitting and interventricular relaxation dyssynchrony (IRD). First, the START algorithm was validated in a simulated model of heart sound. It showed small errors (<5 ms) in estimating splitting intervals from 10 to...
Phonocardiography (PCG) second heart sound represents aortic-pulmonary valves closure and beginnin...
Phonocardiographic signals contain bioacoustic information reflecting the operation of the heart. No...
AbstractThe purpose of this study was to evaluate left ventricular mechanical dyssynchrony (LVMD) in...
Second heart sound (S2) splitting results from nonsimultaneous closures between aortic (A2) and pulm...
SUMMARY We report a new method of detection of the timing of the aortic and pulmonary valve closure ...
The second heart sound consists of aortic and pulmonary components. Analysis on the changes of the s...
The intervals between the two components of the second heart sound (A2-P2), measured from the phonoc...
Diagnosing heart diseases with a stethoscope and ECG are two fundamental methods because of its effi...
This paper is concerned with the segmentation of the second heart sound (S2) of the phonocardiogram ...
The second heart sound (S2) consists of aortic (A2) and pulmonary (P2) components which are produced...
A2 and P2 are the two components of the second heart sound S2. A2 is the sound produced by the closi...
Background: Phonocardiography (PCG) can be used to determine systolic time intervals (STIs) from ven...
none12noLeft ventricular (LV) dyssynchrony is a predictor of response to biventricular (BiV) pacing ...
Purpose. Tissue Doppler imaging (TDI), speckle tracking imaging (STI), and radionuclide angioscintig...
A novel algorithm to separate S2 heart sounds into their aortic and pulmonary components is proposed...
Phonocardiography (PCG) second heart sound represents aortic-pulmonary valves closure and beginnin...
Phonocardiographic signals contain bioacoustic information reflecting the operation of the heart. No...
AbstractThe purpose of this study was to evaluate left ventricular mechanical dyssynchrony (LVMD) in...
Second heart sound (S2) splitting results from nonsimultaneous closures between aortic (A2) and pulm...
SUMMARY We report a new method of detection of the timing of the aortic and pulmonary valve closure ...
The second heart sound consists of aortic and pulmonary components. Analysis on the changes of the s...
The intervals between the two components of the second heart sound (A2-P2), measured from the phonoc...
Diagnosing heart diseases with a stethoscope and ECG are two fundamental methods because of its effi...
This paper is concerned with the segmentation of the second heart sound (S2) of the phonocardiogram ...
The second heart sound (S2) consists of aortic (A2) and pulmonary (P2) components which are produced...
A2 and P2 are the two components of the second heart sound S2. A2 is the sound produced by the closi...
Background: Phonocardiography (PCG) can be used to determine systolic time intervals (STIs) from ven...
none12noLeft ventricular (LV) dyssynchrony is a predictor of response to biventricular (BiV) pacing ...
Purpose. Tissue Doppler imaging (TDI), speckle tracking imaging (STI), and radionuclide angioscintig...
A novel algorithm to separate S2 heart sounds into their aortic and pulmonary components is proposed...
Phonocardiography (PCG) second heart sound represents aortic-pulmonary valves closure and beginnin...
Phonocardiographic signals contain bioacoustic information reflecting the operation of the heart. No...
AbstractThe purpose of this study was to evaluate left ventricular mechanical dyssynchrony (LVMD) in...