首页> 外文会议>33rd Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Microwave imaging for breast cancer detection: Advances in three — Dimensional image reconstruction
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Microwave imaging for breast cancer detection: Advances in three — Dimensional image reconstruction

机译:用于乳腺癌检测的微波成像:三维图像重建的新进展

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Microwave imaging is based on the electrical property (permittivity and conductivity) differences in materials. Microwave imaging for biomedical applications is particularly interesting, mainly due to the fact that available range of dielectric properties for different tissues can provide important functional information about their health. Under the assumption that a 3D scattering problem can be reasonably represented as a simplified 2D model, one can take advantage of the simplicity and lower computational cost of 2D models to characterize such 3D phenomenon. Nonetheless, by eliminating excessive model simplifications, 3D microwave imaging provides potentially more valuable information over 2D techniques, and as a result, more accurate dielectric property maps may be obtained. In this paper, we present some advances we have made in three-dimensional image reconstruction, and show the results from a 3D breast phantom experiment using our clinical microwave imaging system at Dartmouth Hitchcock Medical Center (DHMC), NH.
机译:微波成像基于材料的电特性(介电常数和电导率)差异。生物医学应用的微波成像特别有趣,这主要是由于不同组织的介电特性的可用范围可以提供有关其健康的重要功能信息。在可以将3D散射问题合理地表示为简化2D模型的假设下,可以利用2D模型的简单性和较低的计算成本来表征这种3D现象。尽管如此,通过消除过多的模型简化,3D微波成像比2D技术可能提供了更有价值的信息,因此,可以获得更准确的介电特性图。在本文中,我们介绍了三维图像重建中取得的一些进展,并显示了使用我们位于新罕布什尔州达特茅斯·希区柯克医学中心(DHMC)的临床微波成像系统进行的3D乳房幻像实验的结果。

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