Title of article :
Three-Dimensional Visualization of Myocardial Ischemia Based on the Standard Twelve-Lead Electrocardiogram
Author/Authors :
Ma, Ying Department of Precision Machinery and Precision Instrumentation - University of Science and Technology of China - Hefei - Anhui, China , Sheng, Yang Department of Precision Machinery and Precision Instrumentation - University of Science and Technology of China - Hefei - Anhui, China , Ruixia, Tian The 105th Hospital of PLA - Hefei - Anhui, China , Xun, Chen The 105th Hospital of PLA - Hefei - Anhui, China
Abstract :
A novel method was proposed for transforming the ischemic information in the 12-lead electrocardiogram (ECG) into the pseudocolor pattern displayed on a 3D heart model based on the projection of a ST injury vector in this study. The projection of the ST
injury vector at a point on the heart surface was used for identifying the presence of myocardial ischemia by the difference between
the projection value and the detection threshold. Supposing that myocardial ischemia was uniform and continuous, the location
and range of myocardial ischemia could be accurately calculated and visually displayed in a color-encoding way. The diagnoses
of the same patient were highly consistent (kappa coefficient 𝑘 = 0.9030) between the proposed method used by ordinary people
lacking medical knowledge and the standard 12-lead ECG used by experienced cardiologists. In addition, the diagnostic accuracy of
the proposed method was further confirmed by the coronary angiography. The results of this study provide a new way to promote
the development of the 3D visualization of the standard 12-lead ECG, which has a great help for inexperienced doctors or ordinary
family members in their diagnosis of patients with myocardial ischemia.
Keywords :
Three-Dimensional , Twelve-Lead , Electrocardiogram
Journal title :
Computational and Mathematical Methods in Medicine