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基于介电 Debye 模型的微波层析成像中的图像重建。

Image reconstruction in microwave tomography using a dielectric Debye model.

机构信息

Department of Signal and Systems, Biomedical Engineering Division, Chalmers University of Technology, SE-41296 Göteborg, Sweden.

出版信息

IEEE Trans Biomed Eng. 2012 Jan;59(1):156-66. doi: 10.1109/TBME.2011.2168606. Epub 2011 Sep 19.

Abstract

In this paper, quantitative dielectric image reconstruction based on broadband microwave measurements is investigated. A time-domain-based algorithm is derived where Debye model parameters are reconstructed in order to take into account the strong dispersive behavior found in biological tissue. The algorithm is tested with experimental and numerical data in order to verify the algorithm and to investigate improvements in the reconstructed image resulting from the improved description of the dielectric properties of the tissue when using broadband data. The comparison is made in relation to the more commonly used conductivity model. For the evaluation, two examples were considered, the first was a lossy saline solution and the second was less lossy tap water. Both liquids are strongly dispersive and used as a background medium in the imaging examples. The results show that the Debye model algorithm is of most importance in the tap water for a bandwidth of more than 1.5 GHz. Also the saline solution exhibits a dispersive behavior but since the losses restrict the useful bandwidth, the Debye model is of less significance even if somewhat larger and stronger artifacts can be seen in the conductivity model reconstructions.

摘要

本文研究了基于宽带微波测量的定量介电图像重建。推导了一种基于时域的算法,其中重建德拜模型参数,以考虑生物组织中发现的强色散行为。该算法通过实验和数值数据进行了测试,以验证算法,并研究了使用宽带数据时对组织介电特性的改进描述对重建图像的改善。与更常用的电导率模型进行了比较。为了进行评估,考虑了两个示例,第一个是有损耗的盐水溶液,第二个是损耗较小的自来水。这两种液体都是强色散的,并且在成像示例中用作背景介质。结果表明,对于带宽超过 1.5GHz 的自来水,德拜模型算法最重要。盐水溶液也表现出色散行为,但由于损耗限制了有用带宽,因此即使在电导率模型重建中可以看到更大和更强的伪像,德拜模型的意义也较小。

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