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Quantitative oximetry of breast tumors: a near-infrared method that identifies two optimal wavelengths for each tumor

机译:乳腺肿瘤的定量血氧测定法:一种近红外方法,可确定每种肿瘤的两个最佳波长

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摘要

We present a noninvasive optical method to measure the oxygen saturation of hemoglobin in breast lesions. This method introduces the novel concept that the best choice of near-infrared wavelengths for noninvasive tumor oximetry consists of a wavelength pair (λ_(1), λ_(2)) within the range 680-880 nm, where the specific values of λ_(1) and λ_(2) depend on the optical properties of the specific tumor under examination. Our method involves two steps: (1) identify the optimal wavelength pair for each tumor and (2) measure the tumor oxygenation using the optical data at the two selected wavelengths. We have tested our method by acquiring experimental optical data from turbid media containing cylindrical or irregularly shaped inhomogeneities and by computing theoretical data for the case of spherical lesions embedded in a highly scattering medium. We have found that our optical method can provide accurate and quantitative measurements of the oxygenation of embedded lesions without requiring knowledge of their size, shape, and depth.
机译:我们提出了一种非侵入性的光学方法来测量乳腺病变中血红蛋白的氧饱和度。该方法引入了一种新概念,即无创肿瘤血氧饱和度测定法的最佳近红外波长选择是在680-880 nm范围内的一个波长对(λ_(1),λ_(2)),其中λ_( 1)和λ_(2)取决于所检查特定肿瘤的光学特性。我们的方法涉及两个步骤:(1)为每个肿瘤确定最佳波长对;(2)使用在两个选定波长处的光学数据来测量肿瘤氧合。我们已经通过从包含圆柱形或不规则形状不均匀性的混浊介质中获取实验光学数据,并通过计算嵌入高度散射介质中的球形病变的理论数据来测试我们的方法。我们发现,我们的光学方法可以提供嵌入式病变的氧合的准确和定量测量,而无需了解其大小,形状和深度。

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