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使用宽带漫射光谱法对乳腺癌进行体内水状态测量。

In vivo water state measurements in breast cancer using broadband diffuse optical spectroscopy.

作者信息

Chung S H, Cerussi A E, Klifa C, Baek H M, Birgul O, Gulsen G, Merritt S I, Hsiang D, Tromberg B J

机构信息

Beckman Laser Institute, University of California, Irvine, 1002 Health Sciences Road, Irvine, CA 92612, USA.

出版信息

Phys Med Biol. 2008 Dec 7;53(23):6713-27. doi: 10.1088/0031-9155/53/23/005. Epub 2008 Nov 7.

Abstract

Structural changes in water molecules are related to physiological, anatomical and pathological properties of tissues. Near infrared (NIR) optical absorption methods are sensitive to water; however, detailed characterization of water in thick tissues is difficult to achieve because subtle spectral shifts can be obscured by multiple light scattering. In the NIR, a water absorption peak is observed around 975 nm. The precise NIR peak's shape and position are highly sensitive to water molecular disposition. We introduce a bound water index (BWI) that quantifies shifts observed in tissue water absorption spectra measured by broadband diffuse optical spectroscopy (DOS). DOS quantitatively measures light absorption and scattering spectra and therefore reveals bound water spectral shifts. BWI as a water state index was validated by comparing broadband DOS to magnetic resonance spectroscopy, diffusion-weighted MRI and conductivity in bound water tissue phantoms. Non-invasive DOS measurements of malignant and normal breast tissues performed in 18 subjects showed a significantly higher fraction of free water in malignant tissues (p < 0.0001) compared to normal tissues. BWI of breast cancer tissues inversely correlated with Nottingham-Bloom-Richardson histopathology scores. These results highlight broadband DOS sensitivity to molecular disposition of water and demonstrate the potential of BWI as a non-invasive in vivo index that correlates with tissue pathology.

摘要

水分子的结构变化与组织的生理、解剖和病理特性相关。近红外(NIR)光吸收方法对水敏感;然而,由于多重光散射会掩盖细微的光谱偏移,因此难以实现对厚组织中水的详细表征。在近红外区域,在975nm左右观察到一个水吸收峰。精确的近红外峰的形状和位置对水分子排列高度敏感。我们引入了一个结合水指数(BWI),用于量化通过宽带漫射光学光谱(DOS)测量的组织水吸收光谱中观察到的偏移。DOS定量测量光吸收和散射光谱,因此揭示结合水的光谱偏移。通过将宽带DOS与磁共振光谱、扩散加权MRI以及结合水组织模型中的电导率进行比较,验证了BWI作为一种水状态指数。对18名受试者的恶性和正常乳腺组织进行的非侵入性DOS测量显示,与正常组织相比,恶性组织中的自由水比例显著更高(p < 0.0001)。乳腺癌组织的BWI与诺丁汉-布鲁姆-理查森组织病理学评分呈负相关。这些结果突出了宽带DOS对水分子排列的敏感性,并证明了BWI作为一种与组织病理学相关的非侵入性体内指数的潜力。

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