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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Quantification of 3-D field effects during 2-D microwave imaging
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Quantification of 3-D field effects during 2-D microwave imaging

机译:二维微波成像过程中的3-D场效应的量化

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摘要

Two-dimensional (2-D) approaches to microwave imaging have dominated the research landscape primarily due to the moderate levels of measurement data, data-acquisition time, and computational costs required. Three-dimensional (3-D) approaches have been investigated in simulation, phantom, and animal experiments. While 3-D approaches are certainly important in terms of the potential to improve image quality, their associated costs are significant at this time. In addition, benchmarks are needed to evaluate these new generation systems as more 3-D methods begin to appear. In this paper, we present a systematic series of experiments which assess the capability of our 2-D system to image classical 3-D geometries. We demonstrate where current methods suffer from 3-D effects but also identify situations where they remain quite useful. Comparisons between reconstructions utilizing phantom measurements and simulated 3-D data are also shown to validate the results. These findings suggest that for certain biomedical applications, 2-D approaches remain quite attractive.
机译:二维(2-D)微波成像方法在研究领域占据主导地位,这主要是由于中等水平的测量数据,数据采集时间和所需的计算成本。三维(3-D)方法已在模拟,体模和动物实验中进行了研究。虽然就提高图像质量的潜力而言,3-D方法当然很重要,但目前其相关成本却很高。此外,随着更多的3-D方法开始出现,需要基准来评估这些新一代系统。在本文中,我们提出了一系列系统的实验,这些实验评估了我们的2-D系统成像经典3-D几何图形的能力。我们演示了当前方法在哪些方面会遭受3-D效果的困扰,同时还指出了仍然十分有用的情况。还显示了利用幻像测量值进行的重建与模拟的3-D数据之间的比较,以验证结果。这些发现表明,对于某些生物医学应用,二维方法仍然很有吸引力。

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