Software algorithm and hardware design for real-time implementation of new spectral estimator

被引:2
作者
Ciaccio, Edward J. [1 ,2 ]
Biviano, Angelo B. [1 ]
Garan, Hasan [1 ]
机构
[1] Columbia Univ, Dept Med, Med Ctr, Div Cardiol, New York, NY 10027 USA
[2] Columbia Univ, Presbyterian Hosp, New York, NY 10032 USA
来源
BIOMEDICAL ENGINEERING ONLINE | 2014年 / 13卷
关键词
Algorithm; Analog computer; Circuit design; Digital computer; Spectral analyzer; FRACTIONATED ATRIAL ELECTROGRAMS; NONINVASIVE ASSESSMENT; DOMINANT FREQUENCY; SINUS RHYTHM; CYCLE LENGTH; FIBRILLATION; ABLATION; ORGANIZATION; TRANSFORM; HUMANS;
D O I
10.1186/1475-925X-13-61
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Background: Real-time spectral analyzers can be difficult to implement for PC computer-based systems because of the potential for high computational cost, and algorithm complexity. In this work a new spectral estimator (NSE) is developed for real-time analysis, and compared with the discrete Fourier transform (DFT). Method: Clinical data in the form of 216 fractionated atrial electrogram sequences were used as inputs. The sample rate for acquisition was 977 Hz, or approximately 1 millisecond between digital samples. Real-time NSE power spectra were generated for 16,384 consecutive data points. The same data sequences were used for spectral calculation using a radix-2 implementation of the DFT. The NSE algorithm was also developed for implementation as a real-time spectral analyzer electronic circuit board. Results: The average interval for a single real-time spectral calculation in software was 3.29 mu s for NSE versus 504.5 mu s for DFT. Thus for real-time spectral analysis, the NSE algorithm is approximately 150x faster than the DFT. Over a 1 millisecond sampling period, the NSE algorithm had the capability to spectrally analyze a maximum of 303 data channels, while the DFT algorithm could only analyze a single channel. Moreover, for the 8 second sequences, the NSE spectral resolution in the 3-12 Hz range was 0.037 Hz while the DFT spectral resolution was only 0.122 Hz. The NSE was also found to be implementable as a standalone spectral analyzer board using approximately 26 integrated circuits at a cost of approximately $500. The software files used for analysis are included as a supplement, please see the Additional files 1 and 2. Conclusions: The NSE real-time algorithm has low computational cost and complexity, and is implementable in both software and hardware for 1 millisecond updates of multichannel spectra. The algorithm may be helpful to guide radiofrequency catheter ablation in real time.
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页数:22
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共 28 条
[1]  
Ahmad Anita, 2010, Journal of Biomedical Science & Engineering, V3, P843, DOI 10.4236/jbise.2010.39114
[2]   Real-time dominant frequency mapping and ablation of dominant frequency sites in atrial fibrillation with left-to-right frequency gradients predicts long-term maintenance of sinus rhythm [J].
Atienza, Felipe ;
Almendral, Jesus ;
Jalife, Jose ;
Zlochiver, Sharon ;
Ploutz-Snyder, Robert ;
Torrecilla, Esteban G. ;
Arenal, Angel ;
Kalifa, Jerome ;
Fernandez-Aviles, Francisco ;
Berenfeld, Omer .
HEART RHYTHM, 2009, 6 (01) :33-40
[3]   Time- and frequency-domain analyses of atrial fibrillation activation rate: The optical mapping reference [J].
Berenfeld, Omer ;
Ennis, Steve ;
Hwang, Elliot ;
Hooven, Brian ;
Grzeda, Krzysztof ;
Mironov, Sergey ;
Yamazaki, Masatoshi ;
Kalifa, Jerome ;
Jalife, Jose .
HEART RHYTHM, 2011, 8 (11) :1758-1765
[4]   Frequency Domain and Time Complex Analyses Manifest Low Correlation and Temporal Variability When Calculating Activation Rates in Atrial Fibrillation Patients [J].
Biviano, Angelo B. ;
Coromilas, James ;
Ciaccio, Edward J. ;
Whang, William ;
Hickey, Kathleen ;
Garan, Hasan .
PACE-PACING AND CLINICAL ELECTROPHYSIOLOGY, 2011, 34 (05) :540-548
[5]   PROCEDURES FOR COMPUTING DISCRETE FOURIER-TRANSFORM ON STAGGERED BLOCKS [J].
BONGIOVANNI, G ;
CORSINI, P ;
FROSINI, G .
IEEE TRANSACTIONS ON ACOUSTICS SPEECH AND SIGNAL PROCESSING, 1976, 24 (02) :132-137
[6]   Detection of the diastolic pathway, circuit morphology, and inducibility of human postinfarction ventricular tachycardia from mapping in sinus rhythm [J].
Ciaccio, Edward J. ;
Chow, Anthony W. ;
Kaba, Riyaz A. ;
Davies, D. Wyn ;
Segal, OLiver R. ;
Peters, Nichotas S. .
HEART RHYTHM, 2008, 5 (07) :981-991
[7]   Computational method for high resolution spectral analysis of fractionated atrial electrograms [J].
Ciaccio, Edward J. ;
Biviano, Angelo B. ;
Garan, Hasan .
COMPUTERS IN BIOLOGY AND MEDICINE, 2013, 43 (10) :1573-1582
[8]   Comparison of spectral estimators for characterizing fractionated atrial electrograms [J].
Ciaccio, Edward J. ;
Biviano, Angelo B. ;
Garan, Hasan .
BIOMEDICAL ENGINEERING ONLINE, 2013, 12
[9]   Spectral Profiles of Complex Fractionated Atrial Electrograms Are Different in Longstanding and Acute Onset Atrial Fibrillation Atrial Electrogram Spectra [J].
Ciaccio, Edward J. ;
Biviano, Angelo B. ;
Whang, William ;
Gambhir, Alok ;
Garan, Hasan .
JOURNAL OF CARDIOVASCULAR ELECTROPHYSIOLOGY, 2012, 23 (09) :971-979
[10]   A new transform for the analysis of complex fractionated atrial electrograms [J].
Ciaccio, Edward J. ;
Biviano, Angelo B. ;
Whang, William ;
Coromilas, James ;
Garan, Hasan .
BIOMEDICAL ENGINEERING ONLINE, 2011, 10