| 生物医学工程 | 
									
										
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    					| 基于增强的谱分析和奇异值分解的T波交替检测 | 
  					 
  					  										
						| 王娟,黄忠朝,刘正春 | 
					 
															
					| 中南大学 生物医学工程研究所,湖南 长沙 410083 | 
					 
										
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    					T-wave alternans detection based on enhanced spectral method  
and singular value decomposition | 
  					 
  					  					  					
						| WANG Juan, HUANG Zhong-chao, LIU Zheng-chun | 
					 
															
						| Institute of Biomedical Engineering, Central South University, Changsha 410083, China | 
					   
									 
				
				
					
						
							
								
									
									
									
									
									 
          
          
            
                         
            
									            
									                
																														  
																|   [1] MOODY G B. The PhysioNet/computers in cardiology challenge 2008: Twave alternans [C]∥Computing in Cardiology. Bologna: IEEE , 2008: 505-508. 
[2] HAGHJOO M, ARYA A, SADRAMELI M A. Microvolt Twave alternans: a review of techniques, interpretation, utility, clinical studies, and future perspectives [J]. International Journal of Cardiology, 2006, 109(3): 293-306. 
[3] BEATA S, AGATA M L, JACEK K. Current developments in microvolt Twave alternans [J]. Indian Pacing and Electrophysiology Journal, 2006, 6(4): 214-225. 
[4] MORENOMARTINEZ E. Enhanced spectral method for Twave alternans analysis [C]∥ 2007 IEEE International Symposium on Intelligent Signal Processing. New York: IEEE, 2007: 651-656. 
[5] MATINEZ J P, OLMOS S. Methodological principles of T wave alternans analysis: a unified framework [J]. IEEE Transactions on Biomedical Engineering, 2005, 52(4): 599-611. 
[6] KHAUSTOV A,NEMATI S, CLIFFORD G D. An opensource standard Twave alternans detector for benchmarking [C]∥ Computing in Cardiology. Bologna: IEEE, 2008: 509-512. 
[7] LI C, ZHENG C, TAI C. Detection of ECG characteristic points using wavelet transforms [J]. IEEE Transactions on Biomedical Engineering, 1995, 42(1): 21-28. 
[8] MARTNEZ J P, ALMEIDA R, OLMOS S. A waveletbased ECG delineator: evaluation on standard databases [J]. IEEE Transactions on Biomedical Engineering, 2004, 51(4): 570-581. 
[9] SHEN T W, TSAO Y T. An improved spectral method of detecting and quantifying Twave alternans for SCD risk evaluation [C]∥Computing in Cardiology. Bologna: IEEE, 2008: 609-612. 
[10] ADAM D R, SMITH J M, AKSELROD S, et al. Fluctuations in Twave morphology and susceptibility to ventricular fibrillation [J]. Journal of Electrocardiology, 1984, 17(3): 209-218. 
[11] RICHTER S, DURAY G, HOHNLOSER S H. How to analyze Twave alternans [J]. Heart Rhythm, 2005, 2(11): 1268-1271. 
[12] GHAFFARI A, HOMAEINEZHAD M R, ATAROD M. Detecting and quantifying Twave alternans using the correlation method and comparison with the FFTbased method [C]∥Computing in Cardiology. Bologna: IEEE, 2008: 761-764. 
[13] 刘雄飞,郭爽,李长庚,等.非均匀噪声分布心电信号的奇异值小波消噪法[J]. 中南大学学报:自然科学版,2009, 40(5): 1374-1380. 
LIU Xiongfei, GUO Shuang, LI Changgeng, et al. Denoising method for electrocardiograph of nonuniform noise distribution based on singular value decomposition and wavelet transform [J]. Journal of Central South University: Engineering Science, 2009, 40(5): 1374-1380. 
[14] 段向阳,王永生,苏永生.基于奇异值分解的信号特征提取方法研究[J].振动与冲击,2009, 28(11): 30-33. 
DUAN Xiangyang, WANG Yongsheng, SU Yongsheng. Feature extraction methods based on singular value decomposition [J]. Journal of Vibration and Shock, 2009, 28(11): 30-33. 
[15] Indexof/challenge/2008/sources/Sieed [EB/OL]. 2008-09-01. http:∥www.physionet.org/challenge/2008/sources/Sieed/twa.m. 
[16] File: reference ranks [EB/OL]. 2008-09-01. http:∥www.physionet.org/challenge/2008/reference-ranks.  | 
															   
																													 
									             
									           
             
			            			 
			 
             
												
											    	
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