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Noninvasively diagnosing coronary artery disease with 61-channel MCG data 被引量:2
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作者 Tuo Chen Chen Zhao +2 位作者 shiqin jiang Peter Van Leeuwen Dietrich Grnemeyer 《Chinese Science Bulletin》 SCIE EI CAS 2014年第11期1123-1128,共6页
Magnetocardiography(MCG) has been investigated as a tool for noninvasive detection of coronary artery disease(CAD). In this study, the area ratio of positive and negative magnetic induction extracted from an extrema c... Magnetocardiography(MCG) has been investigated as a tool for noninvasive detection of coronary artery disease(CAD). In this study, the area ratio of positive and negative magnetic induction extracted from an extrema circle in the magnetocardiogram was analyzed at specific time points in the cardiac cycle: P maximum, R peak, J point, T onset, T peak and T end. The area of the positive proportion of the magnetic field relative to the total area within a circle encompassing the field extrema was determined and proposed for fast-speed CAD diagnosis. MCG was performed with a 61-channel biomagnetometer in a shielded environment in 38 healthy subjects and 15 CAD patients. A notable difference in area ratio was found between healthy and CAD subjects at the peak time of T wave: 0.416 ± 0.090 versus0.465 ± 0.065(p = 0.013). Using a cutoff value of 0.4506resulted in a sensitivity and specificity of 86.7 % and 73.8 %,respectively. This approach may enable a fast-speed CAD diagnosis in a clinical setting. 展开更多
关键词 冠心病 诊断 通道 冠状动脉疾病 CAD 心动周期 峰值时间 面积率
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Sparse current source reconstruction in MCG
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作者 Mengpei Chen shiqin jiang +4 位作者 Lu Bing Chen Zhao Birgit Hailer Dietrich Gr nemeyer Peter Van Leeuwen 《Science Bulletin》 SCIE EI CAS CSCD 2015年第14期1235-1240,共6页
Cardiac current source reconstruction is investigated by a fast greedy sparse(FGS) method applied to simulated and real magnetocardiography(MCG) data measured using 61-channel superconducting quantum interference devi... Cardiac current source reconstruction is investigated by a fast greedy sparse(FGS) method applied to simulated and real magnetocardiography(MCG) data measured using 61-channel superconducting quantum interference device. The approach reduces the size of the lead field matrix based on a priori knowledge of dipolar magnetic field map. Consequently, the computational demands and the accuracy of sparse source reconstruction are improved simultaneously. The simulation results demonstrate that the FGS method is capable of reconstructing sparse equivalent current sources using the magnetic field data generated by a single current source with varying orientation or multiple current sources generated randomly. In addition, we analyze the cardiac current source reconstructed with real MCG data at typical instants and discuss the electrical excitation conduction during the QRS complex based on moving sparse source imaging. 展开更多
关键词 Magnetocardiography (MCG) Sparsedecomposition Current source reconstruction Cardiac electrical activity Signal processing
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