DocumentCode :
1239092
Title :
Heart sound cancellation from lung sound recordings using recurrence time statistics and nonlinear prediction
Author :
Ahlstrom, Christer ; Liljefeldt, Olle ; Hult, Peter ; Ask, Per
Author_Institution :
Dept. of Biomed. Eng., Linkopings Univ., Linkoping, Sweden
Volume :
12
Issue :
12
fYear :
2005
Firstpage :
812
Lastpage :
815
Abstract :
Heart sounds (HS) obscure the interpretation of lung sounds (LS). This letter presents a new method to detect and remove this undesired disturbance. The HS detection algorithm is based on a recurrence time statistic that is sensitive to changes in a reconstructed state space. Signal segments that are found to contain HS are removed, and the arising missing parts are replaced with predicted LS using a nonlinear prediction scheme. The prediction operates in the reconstructed state space and uses an iterated integrated nearest trajectory algorithm. The HS detection algorithm detects HS with an error rate of 4% false positives and 8% false negatives. The spectral difference between the reconstructed LS signal and an LS signal with removed HS was 0.34±0.25, 0.50±0.33, 0.46±0.35, and 0.94±0.64 dB/Hz in the frequency bands 20-40, 40-70, 70-150, and 150-300 Hz, respectively. The cross-correlation index was found to be 99.7%, indicating excellent similarity between actual LS and predicted LS. Listening tests performed by a skilled physician showed high-quality auditory results.
Keywords :
acoustic signal processing; bioacoustics; correlation methods; iterative methods; lung; medical signal processing; prediction theory; signal reconstruction; state-space methods; statistical analysis; 20 to 300 Hz; HS detection algorithm; bioacoustics; cross-correlation index; heart sound cancellation; integrated nearest trajectory algorithm; iterative algorithm; lung sound recording; nonlinear prediction scheme; reconstructed state space; recurrence time statistics; Detection algorithms; Error analysis; Frequency; Heart; Lungs; Performance evaluation; State-space methods; Statistics; Testing; Trajectory; Bioacoustics; heart sound (HS); lung sound (LS); nonlinear prediction; recurrence time statistics;
fLanguage :
English
Journal_Title :
Signal Processing Letters, IEEE
Publisher :
ieee
ISSN :
1070-9908
Type :
jour
DOI :
10.1109/LSP.2005.859528
Filename :
1542106
Link To Document :
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