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首页> 外文期刊>Physics in medicine and biology. >EFFECTS OF TISSUE CONDUCTIVITY VARIATIONS ON THE CARDIAC MAGNETIC FIELDS SIMULATED WITH A REALISTIC HEART-TORSO MODEL
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EFFECTS OF TISSUE CONDUCTIVITY VARIATIONS ON THE CARDIAC MAGNETIC FIELDS SIMULATED WITH A REALISTIC HEART-TORSO MODEL

机译:组织电导率变化对真实心-躯干模型模拟的心脏磁场的影响

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Cardiac magnetic fields with varying tissue conductivities are simulated. A high-resolution finite-element torso model composed of 19 tissue types and with a voxel resolution of 1.5 mm x 1.5 mm x 3 mm is used. It has a detailed description of tissue geometries and therefore is well suited for analysing the effects of tissue conductivities on the cardiac magnetic fields. The computed results show the greatest sensitivity of the magnetic fields to the changes in the conductivity of blood and myocardium, and less significant sensitivity to the conductivity of the lungs, muscle, fat and other tissues. These results are relevant to future modelling of magnetocardiograms and solving the inverse problem. They also emphasize the importance of careful modelling of the blood and heart regions, and suggest that less attention needs to be directed to bone or fat tissue. [References: 35]
机译:模拟了具有不同组织电导率的心脏磁场。使用由19种组织类型组成的高分辨率有限元躯干模型,体素分辨率为1.5 mm x 1.5 mm x 3 mm。它具有组织几何形状的详细说明,因此非常适合分析组织电导率对心脏磁场的影响。计算结果表明,磁场对血液和心肌电导率变化的敏感性最高,对肺,肌肉,脂肪和其他组织的电导率的敏感性较低。这些结果与将来的心电图建模和解决反问题有关。他们还强调了对血液和心脏区域进行仔细建模的重要性,并建议需要较少关注骨骼或脂肪组织。 [参考:35]

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