DocumentCode
1533691
Title
A new 3-D display method for 12-lead ECG
Author
Chiang, Huihua K. ; Chu, Chao-Wei ; Chen, Gau-Yang ; Kuo, Cheng-Deng
Author_Institution
Inst. of Biomed. Eng., Nat. Yang-Ming Univ., Taipei, Taiwan
Volume
48
Issue
10
fYear
2001
Firstpage
1195
Lastpage
1202
Abstract
A new three-dimensional (3-D) 12-lead electrocardiogram (EGG) display method is presented which employs a 3-D rectangular coordinate system to display the 12-lead cardiac electric signals in two 3-D graphs. The 3-D graph consists of a temporal axis representing the time domain of the cardiac signals, a spatial axis representing the lead positions, and an amplitude axis representing the voltages of the cardiac signals. The six horizontal plane leads and the other six frontal plane leads were displayed in two 3-D graphs, respectively. The voltages of the cardiac signals were represented in rainbow-like colors. Cubic interpolation was employed to insert interconnecting points between neighboring leads on each plane and to smooth the surface of the 3-D ECG graphs. The 3-D ECG graphs of a normal subject, a patient with myocardial infarction, and a patient with left bundle branch block were presented here. This new display method could not only be used as a complementary display method to the 12-lead EGG, but also provide physicians with an overall integral view about the spatial distribution of the cardiac signals.
Keywords
electrocardiography; graphs; 12-lead ECG; 12-lead cardiac electric signals; 3-D display method; 3-D graphs; 3-D rectangular coordinate system; amplitude axis; cardiac signal voltage; cardiac signals spatial distribution; cubic interpolation; electrodiagnostics; lead positions; left bundle branch patient; myocardial infarction; overall integral view; rainbow-like colors; temporal axis; Biomedical engineering; Cardiology; Chaos; Electrocardiography; Heart; Interpolation; Medical diagnostic imaging; Myocardium; Three dimensional displays; Voltage; Color; Diagnosis, Differential; Electrocardiography; Heart Diseases; Humans; Image Processing, Computer-Assisted; Imaging, Three-Dimensional;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/10.951523
Filename
951523
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