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Electromagnetic Spectroscopy of Normal Breast Tissue Specimens Obtained From Reduction Surgeries: Comparison of Optical and Microwave Properties

机译:从还原手术获得的正常乳房组织样本的电磁波谱:光学和微波特性的比较

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摘要

Techniques utilizing electromagnetic energy at microwave and optical frequencies have been shown to be promising for breast cancer detection and diagnosis. Since different biophysical mechanisms are exploited at these frequencies to discriminate between healthy and diseased tissue, combining these two modalities may result in a more powerful approach for breast cancer detection and diagnosis. Toward this end, we performed microwave dielectric spectroscopy and optical diffuse reflectance spectroscopy measurements at the same sites on freshly-excised normal breast tissues obtained from reduction surgeries at the University of Wisconsin Hospital, using microwave and optical probes with very similar sensing volumes. We found that the microwave dielectric constant and effective conductivity are correlated with tissue composition across the entire measurement frequency range (|r|~0.5–0.6, p<0.01), and that the optical absorption coefficient at 460 nm and optical scattering coefficient are correlated with tissue composition (|r|~ 0.4–0.6, p<0.02). Finally, we found that the optical absorption coefficient at 460 nm is correlated with the microwave dielectric constant and effective conductivity (r=−0.55, p<0.01). Our results suggest that combining optical and microwave modalities for analyzing breast tissue samples may serve as a crosscheck and provide complementary information about tissue composition.
机译:利用微波和光频率的电磁能的技术已被证明对乳腺癌的检测和诊断很有前途。由于在这些频率下利用了不同的生物物理机制来区分健康组织和患病组织,因此将这两种方式结合起来可能会导致更强大的乳腺癌检测和诊断方法。为此,我们在威斯康星大学医院的还原手术所获得的新鲜切除的正常乳腺组织的相同部位上,使用微波和光学探针,它们的感测体积非常相似,我们在相同部位进行了微波介电谱和光学漫反射光谱测量。我们发现,在整个测量频率范围内(| r |〜0.5-0.6,p <0.01),微波介电常数和有效电导率与组织组成相关,并且460 nm处的光吸收系数与光散射系数相关组织组成(| r |〜0.4-0.6,p <0.02)。最后,我们发现460 nm处的光吸收系数与微波介电常数和有效电导率相关(r = -0.55,p <0.01)。我们的结果表明,结合光学和微波模态分析乳腺组织样本可作为交叉检查并提供有关组织组成的补充信息。

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