Meaney Paul M, Fox Colleen J, Geimer Shireen D, Paulsen Keith D
Thayer School of Engineering at Dartmouth College, Hanover, NH 03755 USA and the Chalmers University of Technology, Gothenburg 41296 SE.
Deparetment of Radiology at the Dartmouth-Hitchcock Medical Center, Lebanon, NH 03766 USA.
IEEE Trans Microw Theory Tech. 2017 May;65(5):1471-1478. doi: 10.1109/TMTT.2016.2638423. Epub 2017 Jan 31.
We examine the broadband behavior of complex electrical properties of glycerin and water mixtures over the frequency range of 0.1 - 25.0 GHz, especially as they relate to using these liquids as coupling media for microwave tomographic imaging. Their combination is unique in that they are mutually miscible over the full range of concentrations which allows them to be tailored to dielectric property matching for biological tissues. While the resultant mixture properties are partially driven by differences in the inherent low frequency permittivity of each constituent, relaxation frequency shifts play a disproportionately larger role in increasing the permittivity dispersion while also dramatically increasing the effective conductivity over the frequency range of 1 to 3 GHz. For the full range of mixture ratios, the relaxation frequency shifts from 17.5 GHz for 0% glycerin to less than 0.1 GHz for 100% glycerin. Of particular interest is the fact that the conductivity stays above 1.0 S/m over the 1-3 GHz range for glycerin mixture ratios (70-90% glycerin) we use for microwave breast tomography. The high level of attenuation is critical for suppressing unwanted multipath signals. This paper presents a full characterization of these liquids along with a discussion of their benefits and limitations in the context of microwave tomography.
我们研究了甘油和水混合物在0.1 - 25.0 GHz频率范围内复电特性的宽带行为,特别是它们作为微波断层成像耦合介质时的相关特性。它们的组合很独特,因为在整个浓度范围内都能相互混溶,这使得它们能够根据生物组织的介电特性匹配进行定制。虽然混合后的特性部分由各成分固有低频介电常数的差异驱动,但弛豫频率偏移在增加介电常数色散方面发挥了不成比例的更大作用,同时在1至3 GHz频率范围内也显著提高了有效电导率。对于所有混合比例,弛豫频率从0%甘油时的17.5 GHz转变为100%甘油时的低于0.1 GHz。特别值得关注的是,对于我们用于微波乳腺断层成像的甘油混合比例(70 - 90%甘油),在1 - 3 GHz范围内电导率保持在1.0 S/m以上。高衰减水平对于抑制不需要的多径信号至关重要。本文全面描述了这些液体,并讨论了它们在微波断层成像背景下的优点和局限性。