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The influence of conductivity perturbations on MIT sensitivity field

机译:电导率扰动对MIT灵敏度场的影响

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Magnetic Induction Tomography (MIT) attempts to image conductivity distribution of biological tissues from pairs excitation and receiver coils. The inverse eddy current problem is nonlinear and ill-posed. Analysis of sensitivity field is necessary for image reconstruction. This study investigates the influence of conductivity perturbations, that is, changing the conductivity of a small region by a small amount, on the sensitivity field. Changes of sensitivity field relative to homogeneous conductivity background are calculated using finite-element method. The results show that the distribution of sensitivity field has relations with location and size of conductivity perturbations. This study provides the theoretical basis for image reconstruction.
机译:磁感应断层扫描(MIT)尝试从成对的激励线圈和接收线圈中成像生物组织的电导率分布。反涡电流问题是非线性的且不适定。灵敏度场的分析对于图像重建是必要的。这项研究调查了电导率摄动的影响,即,少量改变小区域的电导率对灵敏度场的影响。使用有限元方法计算相对于均匀电导率背景的灵敏度场的变化。结果表明,灵敏度场的分布与电导扰动的位置和大小有关。该研究为图像重建提供了理论基础。

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