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Torso Geometry Reconstruction and Body Surface Electrode Localization Using Three-Dimensional Photography

机译:躯干几何重建和体表电极三维定位

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摘要

We conducted a prospective clinical study (n=14; 29% female) to assess the accuracy of a three-dimensional (3D) photography-based method of torso geometry reconstruction and body surface electrodes localization. The position of 74 body surface electrocardiographic (ECG) electrodes (diameter 5 mm) was defined by two methods: 3D photography, and CT (marker diameter 2 mm) or MRI (marker size 10×20 mm) imaging. Bland-Altman analysis showed good agreement in X (bias −2.5 [95% limits of agreement (LoA) −19.5 to 14.3] mm), Y (bias −0.1 [95% LoA −14.1 to 13.9] mm), and Z coordinates (bias −0.8 [95% LoA −15.6 to 14.2] mm), as defined by the CT/MRI imaging, and 3D photography. The average Hausdorff distance between the two torso geometry reconstructions was 11.17 ± 3.05 mm. Thus, accurate torso geometry reconstruction using 3D photography is feasible. Body surface ECG electrodes coordinates as defined by the CT/MRI imaging, and 3D photography, are in good agreement.
机译:我们进行了一项前瞻性临床研究(n = 14; 29%的女性),以评估基于三维(3D)摄影的躯干几何形状重建和体表电极定位方法的准确性。 74种体表心电图(ECG)电极(直径5 mm)的位置通过两种方法定义:3D摄影和CT(标记直径2 mm)或MRI(标记尺寸10×20 mm)成像。 Bland-Altman分析显示在X(偏置-2.5 [95%协议限度(LoA)-19.5至14.3] mm),Y(偏置-0.1 [95%LoA -14.1至13.9] mm)和Z坐标方面具有良好的一致性由CT / MRI成像和3D摄影所定义的(偏置-0.8 [95%LoA -15.6至14.2] mm)。两次躯干几何重建之间的平均Hausdorff距离为11.17±3.05 mm。因此,使用3D摄影进行精确的躯干几何重建是可行的。 CT / MRI成像和3D摄影所定义的体表ECG电极坐标非常吻合。

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