Title :
The synthesis of the aortic valve closure sound of the dog by the mean filter of forward and backward predictor
Author :
Tang, Yu ; Danmin, Chen ; Durand, L.-G.
Author_Institution :
Smith-Kettwell Eye Res. Inst., San Francisco, CA, USA
Abstract :
The application of a new algorithm, the mean filter of forward and backward predictor, to synthesize the aortic component of the second heart sound (A 2), according to an exponentially damped sinusoid model, is described. The resulting estimates of four modeling parameters composing each sinusoid of A 2 (amplitude, damping factor, frequency, and phase) were used to synthesize the original aortic sounds. The synthesized sounds were then compared to the original sound recorded on the thorax of six dogs and an error index was computed. The results show that the method is more precise than the forward predictor filter, the backward predictor filter, and the improved KT algorithm. The new algorithm is also highly stable and the error index between the original A 2 and the synthesized waveforms is always less than 1%.
Keywords :
bioacoustics; cardiology; physiological models; aortic valve closure sound; backward predictor; dog; error index; exponentially damped sinusoid model; forward predictor; mean filter; modeling parameters; second heart sound; sound synthesis; synthesized waveforms; thorax; Amplitude estimation; Damping; Filters; Frequency estimation; Frequency synthesizers; Heart; Phase estimation; Predictive models; Thorax; Valves; Algorithms; Animals; Aortic Valve; Diagnosis, Computer-Assisted; Dogs; Evaluation Studies as Topic; Heart Sounds; Models, Cardiovascular; Monte Carlo Method;
Journal_Title :
Biomedical Engineering, IEEE Transactions on