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A Comprehensive Review on Design and Development of Human Breast Phantoms for Ultra-Wide Band Breast Cancer Imaging Systems

机译:超宽带乳腺癌成像系统人乳腺假体的设计与开发综述

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Microwave ultra-wide band UWB imaging system is a contemporary biomedical imaging technology for early detection of breast cancers. This imaging system requires the development of breast phantoms for experimental data analysis. In order to obtain realistic results, it is very important that these phantoms mimic the characteristics of real biological breast tissue as close as possible. For this purpose, scientists and engineers make use of the dielectric properties of human breast. This paper takes a survey of mathematical formulations used to determine biological dielectric properties and then takes a review of current breast phantoms being used in UWB imaging systems with reference to the analytical dielectric measurements. At present, breast phantoms are made, both, manually in laboratory utilizing different chemicals and also by using computational electromagnetic algorithms to introduce better heterogeneity in them. They can then easily be tested by doing computer simulations. In this review paper, emphasis is made on the phantoms which are made in laboratory for doing hardware experimentations.
机译:微波超宽带UWB成像系统是用于早期发现乳腺癌的现代生物医学成像技术。这种成像系统需要开发用于实验数据分析的乳房模型。为了获得真实的结果,非常重要的一点是,这些体模尽可能地模仿真实的生物乳腺组织的特征。为此,科学家和工程师利用了人类乳房的介电特性。本文对用于确定生物介电特性的数学公式进行了调查,然后参考分析介电测量对UWB成像系统中当前使用的乳房体模进行了回顾。目前,既可以在实验室中使用不同的化学物质手动制作假体,也可以使用计算电磁算法在其中引入更好的异质性。然后可以通过计算机模拟轻松地对其进行测试。在这篇综述文章中,重点是在实验室中进行硬件实验的幻像。

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