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Spectral correction of OA signals based on multiple irradiation sensing: experimental validation

机译:基于多重辐射感测的OA信号的光谱校正:实验验证

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In this study we show that the spectral distortion of OA signals, caused by wavelength-dependent optical attenuation inside the bulk tissue, can be corrected based on OA imaging, when using multiple-irradiation sensing. The tissue is modeled as a strongly scattering background, in which a discrete number of blood vessels, characterized by a higher absorption than the background, are sparsely distributed. OA signals generated by these vessels, which serve as intrinsic "fluence detectors", are recorded as a function of irradiation position. In order to account for realistic situations, we have developed a semi-empirical light diffusion model that is fitted to the recorded signals, so as to determine the background's optical effective attenuation coefficient for arbitrarily shaped tissues. The experimental validation of this model was performed on tissue-mimicking phantoms. The results demonstrate a successful correction of the measured OA spectrum of the embedded vessel-like inclusions, in the presence of lateral geometrical boundaries and when vessel-like absorbing structures influence the light propagation.
机译:在这项研究中,我们表明,当使用多重辐射感测时,可以基于OA成像校正由大块组织内部与波长相关的光衰减引起的OA信号的光谱失真。组织被建模为强烈散射的背景,其中稀疏地分布了离散的血管(稀疏分布),这些血管的特征在于比背景更高的吸收率。由这些容器产生的OA信号(作为固有的“通量检测器”)被记录为照射位置的函数。为了解决现实情况,我们开发了适合记录信号的半经验光扩散模型,以便确定任意形状组织的背景光学有效衰减系数。该模型的实验验证是在模仿组织的模型上进行的。结果表明,在存在侧向几何边界以及当容器状吸收结构影响光传播时,可以成功校正嵌入式容器状夹杂物的OA光谱。

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