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首页> 外文期刊>Journal of Medical Engineering >A MATLAB-Based Boundary Data Simulator for Studying the Resistivity Reconstruction Using Neighbouring Current Pattern
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A MATLAB-Based Boundary Data Simulator for Studying the Resistivity Reconstruction Using Neighbouring Current Pattern

机译:基于MATLAB的边界数据仿真器,用于研究使用邻近电流模式的电阻率重构

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Phantoms are essentially required to generate boundary data for studying the inverse solver performance in electrical impedance tomography (EIT). A MATLAB-based boundary data simulator (BDS) is developed to generate accurate boundary data using neighbouring current pattern for assessing the EIT inverse solvers. Domain diameter, inhomogeneity number, inhomogeneity geometry (shape, size, and position), background conductivity, and inhomogeneity conductivity are all set as BDS input variables. Different sets of boundary data are generated by changing the input variables of the BDS, and resistivity images are reconstructed using electrical impedance tomography and diffuse optical tomography reconstruction software (EIDORS). Results show that the BDS generates accurate boundary data for different types of single or multiple objects which are efficient enough to reconstruct the resistivity images for assessing the inverse solver. It is noticed that for the BDS with 2048 elements, the boundary data for all inhomogeneities with a diameter larger than 13.3% of that of the phantom are accurate enough to reconstruct the resistivity images in EIDORS-2D. By comparing the reconstructed image with an original geometry made in BDS, it would be easier to study the inverse solver performance and the origin of the boundary data error can be identified.
机译:实质上需要虚拟模型来生成边界数据,以研究电阻抗层析成像(EIT)中的反求解器性能。开发了基于MATLAB的边界数据模拟器(BDS),以使用相邻电流模式生成准确的边界数据,以评估EIT反演算器。畴直径,不均匀性数,不均匀性几何形状(形状,大小和位置),背景电导率和不均匀性电导率都设置为BDS输入变量。通过更改BDS的输入变量可生成不同组的边界数据,并使用电阻抗X线断层摄影和漫射光X线断层摄影重建软件(EIDORS)重建电阻率图像。结果表明,BDS可以为不同类型的单个或多个对象生成准确的边界数据,该数据足以重建电阻率图像以评估逆求解器。注意,对于具有2048个元素的BDS,直径大于幻影直径的所有不均匀性的边界数据都足够精确,可以重建EIDORS-2D中的电阻率图像。通过将重建的图像与BDS中制作的原始几何图形进行比较,可以更轻松地研究逆求解器的性能,并且可以识别边界数据错误的起因。

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