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Assessment of the size, position, and optical properties of breast tumors in vivo by noninvasive optical methods

机译:通过无创光学方法评估体内乳腺肿瘤的大小,位置和光学特性

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摘要

We present a method for the noninvasive determination of the size, position, and optical properties (absorption and reduced scattering coefficients) of tumors in the human breast. The tumor is first detected by frequency-domain optical mammography. It is then sized, located, and optically characterized by use of diffusion theory as a model for the propagation of near-infrared light in breast tissue.Our method assumes that the tumor is a spherical inhomogeneity embedded in an otherwise homogeneous tissue. We report the results obtained on a 55-year-old patient with a papillary cancer in the right breast. We found that the tumor absorbs and scatters near-infrared light more strongly than the surrounding healthy tissue. Our method has yielded a tumor diameter of 2.1 ± 0.2 cm, which is comparable with the actual size of 1.6 cm, determined after surgery. From the tumor absorption coefficients at two wavelengths (690 and 825 nm), we calculated the total hemoglobin concentration(40±10 μM) and saturation (71 ± 9%) of the tumor. These results can provide the clinical examiner with more detailed information about breast lesions detected by frequency-domain optical mammography, thereby enhancing its potential for specificity.#1998 Optical Society of America OCIS codes: 170.3830, 300.0300, 300.1030, 290.0290.
机译:我们提出了一种用于非侵入性确定人乳腺肿瘤的大小,位置和光学特性(吸收和减小的散射系数)的方法。首先通过频域光学乳腺摄影术检测肿瘤。然后通过使用扩散理论作为模型在乳房组织中传播的模型来确定大小,定位并进行光学表征。我们的方法假设肿瘤是嵌入在其他均质组织中的球形不均匀性。我们报告了一名55岁右乳头状癌患者的结果。我们发现,肿瘤比周围的健康组织吸收和散射近红外光的强度更高。我们的方法产生的肿瘤直径为2.1±0.2 cm,这与手术后确定的1.6 cm的实际大小相当。从两个波长(690和825 nm)处的肿瘤吸收系数,我们计算了肿瘤的总血红蛋白浓度(40±10μM)和饱和度(71±9%)。这些结果可以为临床检查者提供有关通过频域光学乳房X线摄影术检测到的乳房病变的更多详细信息,从而增强其特异性的潜力。#1998美国光学学会OCIS代码:170.3830、300.0300、300.1030、290.0290。

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