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Heterogeneous Breast Phantom Development for Microwave Imaging Using Regression Models

机译:使用回归模型进行微波成像的异质乳房幻影开发

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摘要

As new algorithms for microwave imaging emerge, it is important to have standard accurate benchmarking tests. Currently, most researchers use homogeneous phantoms for testing new algorithms. These simple structures lack the heterogeneity of the dielectric properties of human tissue and are inadequate for testing these algorithms for medical imaging. To adequately test breast microwave imaging algorithms, the phantom has to resemble different breast tissues physically and in terms of dielectric properties. We propose a systematic approach in designing phantoms that not only have dielectric properties close to breast tissues but also can be easily shaped to realistic physical models. The approach is based on regression model to match phantom's dielectric properties with the breast tissue dielectric properties found in Lazebnik et al. (2007). However, the methodology proposed here can be used to create phantoms for any tissue type as long as ex vivo, in vitro, or in vivo tissue dielectric properties are measured and available. Therefore, using this method, accurate benchmarking phantoms for testing emerging microwave imaging algorithms can be developed.
机译:随着用于微波成像的新算法的出现,重要的是要进行标准的精确基准测试。当前,大多数研究人员使用同质体模来测试新算法。这些简单的结构缺乏人体组织介电特性的异质性,因此不足以测试这些用于医学成像的算法。为了充分测试乳房微波成像算法,人体模型必须在物理上和介电特性方面类似于不同的乳房组织。我们提出了一种设计体模的系统方法,该体模不仅具有接近乳腺组织的介电特性,而且可以轻松地塑造为逼真的物理模型。该方法基于回归模型,以使模型的介电特性与Lazebnik等人发现的乳腺组织介电特性相匹配。 (2007)。但是,这里提出的方法可以用于创建任何组织类型的体模,只要可以测量和获得离体,体外或体内组织介电特性。因此,使用这种方法,可以开发出用于测试新兴微波成像算法的精确基准模型。

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