He Bin, Li Guanglin, Zhang Xin
University of Illinois at Chicago, SEO 218, M/C-063, 851 S. Morgan Street, Chicago, IL 60607, USA.
IEEE Trans Biomed Eng. 2003 Oct;50(10):1190-202. doi: 10.1109/TBME.2003.817637.
We have developed a new approach for imaging cardiac transmembrane potentials (TMPs) within the three-dimensional (3-D) myocardium by means of an anisotropic heart model. The cardiac TMP distribution is estimated from body surface electrocardiograms by minimizing objective functions of the "measured" body surface potential maps (BSPMs) and the heart-model-generated BSPMs. Computer simulation studies have been conducted to evaluate the present 3-D TMP imaging approach using pacing protocols. Simulations of single-site pacing at 24 sites throughout the ventricles, as well as dual-site pacing at 12 pairs of sites in the vicinity of atrio-ventricular ring were performed. The present simulation results show that the correlation coefficient (CC) and relative error (RE) between the "true" and inversely estimated TMP distributions were 0.9915 +/- 0.0041 and 0.1266 +/- 0.0326, for single-site pacing, and 0.9889 +/- 0.0034 and 0.1473 +/- 0.0237 for dual-site pacing, respectively, when 10 microV Gaussian white noise (GWN) was added to the BSPMs. The effects of heart and torso geometry uncertainty were also evaluated by shifting the heart position by 10 mm and altering the torso size by 10%. The CC between the "true" and inversely estimated TMP distributions was above 0.97 when these geometry uncertainties were considered. The present simulation results demonstrate the feasibility of noninvasive estimation of TMP distribution throughout the ventricles from body surface electrocardiographic measurements, and suggest that the present method may become a useful alternative in noninvasive imaging of distributed cardiac electrophysiological processes within the 3-D myocardium.
我们已经开发出一种新方法,借助各向异性心脏模型对三维(3-D)心肌内的心脏跨膜电位(TMPs)进行成像。通过最小化“测量的”体表电位图(BSPMs)与心脏模型生成的BSPMs的目标函数,从体表心电图估计心脏TMP分布。已进行计算机模拟研究,以使用起搏协议评估当前的3-D TMP成像方法。在整个心室的24个位点进行了单部位起搏模拟,以及在房室环附近的12对位点进行了双部位起搏模拟。当前的模拟结果表明,当向BSPMs添加10微伏高斯白噪声(GWN)时,单部位起搏时“真实”与反向估计的TMP分布之间的相关系数(CC)和相对误差(RE)分别为0.9915±0.0041和0.1266±0.0326,双部位起搏时分别为0.9889±0.0034和0.1473±0.0237。还通过将心脏位置移动10毫米并将躯干大小改变10%来评估心脏和躯干几何形状不确定性的影响。当考虑这些几何形状不确定性时,“真实”与反向估计的TMP分布之间的CC高于0.97。当前的模拟结果证明了从体表心电图测量无创估计整个心室TMP分布的可行性,并表明本方法可能成为三维心肌内分布式心脏电生理过程无创成像的一种有用替代方法。