Bowman Tyler, Vohra Nagma, Bailey Keith, El-Shenawee Magda
University of Arkansas, Bell Engineering Center, Department of Electrical Engineering, Fayetteville, Arkansas, United States.
Oklahoma State University, Oklahoma Animal Disease Diagnostic Laboratory, Stillwater, Oklahoma, United States.
J Med Imaging (Bellingham). 2019 Apr;6(2):023501. doi: 10.1117/1.JMI.6.2.023501. Epub 2019 May 14.
Terahertz imaging and spectroscopy characterization of freshly excised breast cancer tumors are presented in the range 0.15 to 3.5 THz. Cancerous breast tissues were obtained from partial or full removal of malignant tumors while healthy breast tissues were obtained from breast reduction surgeries. The reflection spectroscopy to obtain the refractive index and absorption coefficient is performed on experimental data at each pixel of the tissue, forming tomographic images. The transmission spectroscopy of the refractive index and absorption coefficient are retrieved from experimental data at few tissue points. The average refractive index and absorption coefficients for cancer, fat, and collagen tissue regions are compared between transmission and reflection modes. The reflection mode offers the advantage of retrieving the electrical properties across a significantly greater number of points without the need for sectioning or altering the freshly excised tissue as in the transmission mode. The terahertz spectral power images and the tomographic images demonstrated good qualitative comparison with pathology.
本文展示了在0.15至3.5太赫兹范围内对新鲜切除的乳腺癌肿瘤进行的太赫兹成像和光谱表征。癌性乳腺组织取自部分或完全切除的恶性肿瘤,而健康乳腺组织取自乳房缩小手术。通过反射光谱法在组织的每个像素处对实验数据进行处理以获得折射率和吸收系数,从而形成断层图像。在少数组织点处从实验数据中检索折射率和吸收系数的透射光谱。比较了透射和反射模式下癌症、脂肪和胶原组织区域的平均折射率和吸收系数。反射模式的优点是无需像透射模式那样对新鲜切除的组织进行切片或改变,就能在大量点上获取电学特性。太赫兹光谱功率图像和断层图像与病理学表现出良好的定性比较。