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Computational method for estimating boundary of abdominal subcutaneous fat for absolute electrical impedance tomography

机译:绝对电阻抗层析成像估计腹部皮下脂肪边界的计算方法

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Abdominal fat accumulation is considered an essential indicator of human health. Electrical impedance tomography has considerable potential for abdominal fat imaging because of the low specific conductivity of human body fat. In this paper, we propose a robust reconstruction method for high-fidelity conductivity imaging by abstraction of the abdominal cross section using a relatively small number of parameters. Toward this end, we assume homogeneous conductivity in the abdominal subcutaneous fat area and characterize its geometrical shape by parameters defined as the ratio of the distance from the center to boundary of subcutaneous fat to the distance from the center to outer boundary in 64 equiangular directions. To estimate the shape parameters, the sensitivity of the noninvasively measured voltages with respect to the shape parameters is formulated for numerical optimization. Numerical simulations are conducted to demonstrate the validity of the proposed method. A 3-dimensional finite element method is used to construct a computer model of the human abdomen. The inverse problems of shape parameters and conductivities are solved concurrently by iterative forward and inverse calculations. As a result, conductivity images are reconstructed with a small systemic error of less than 1% for the estimation of the subcutaneous fat area. A novel method is devised for estimating the boundary of the abdominal subcutaneous fat. The fidelity of the overall reconstructed image to the reference image is significantly improved. The results demonstrate the possibility of realization of an abdominal fat scanner as a low-cost, radiation-free medical device.
机译:腹部脂肪堆积被认为是人类健康的重要指标。由于人体脂肪的低比电导率,电阻抗断层扫描在腹部脂肪成像中具有相当大的潜力。在本文中,我们提出了一种健壮的重建方法,用于通过使用相对较少的参数提取腹部横截面来进行高保真电导率成像。为此,我们假设腹部皮下脂肪区域具有均匀的电导率,并通过参数定义其几何形状,这些参数定义为在64个等角方向上从皮下脂肪的中心到边界的距离与从中心到外边界的距离的比值。为了估计形状参数,制定了非侵入式测量电压相对于形状参数的灵敏度以进行数值优化。数值模拟表明该方法的有效性。使用三维有限元方法来构建人体腹部的计算机模型。形状参数和电导率的反问题可以通过迭代的正反计算同时解决。结果,以小于1%的小的系统误差重建电导率图像,以估计皮下脂肪面积。设计了一种新颖的方法来估计腹部皮下脂肪的边界。整体重建图像相对于参考图像的保真度得到显着提高。结果证明了将腹部脂肪扫描仪实现为低成本,无辐射的医疗设备的可能性。

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