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Multi-Harmonic homodyne approach for optical property measurement of turbid medium in transmission geometry

机译:透射几何中混浊介质光学性能的多谐波零差方法

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The accurate determination of both absorption and scattering properties in homogeneous diffuse medium is critical in many applications of diffuse optical imaging, especially in clinical applications such as breast cancer diagnosis. In this paper, we report a frequency-domain method to simultaneously measure both absorption and reduced scattering coefficients ((mu)_(a) and (mu)_(s)~(')) in transmission geometry, based on a parallel homodyne approach using a RF-modulated laser source and a gain-modulated image intensifier. This method enables fast multi-pixel phase-sensitive measurement, which leads to an efficient way to obtain (mu)_(a) and (mu)_(s)~(') values via the well-known analytical Green's function solution in slab geometry. We developed an approximate formula of the analytical solution that is especially suitable for multi-pixel data analysis. In addition, we present a comprehensive multi-harmonic data analysis that includes DC data, which offers multi-frequency information from a single-frequency dataset, hence leading to improved accuracy and stability in measurement.
机译:在均质扩散介质中,吸收和散射特性的准确测定对于扩散光学成像的许多应用至关重要,特别是在诸如乳腺癌诊断等临床应用中。在本文中,我们报告了一种频域方法,该方法基于平行零差,同时测量透射几何中的吸收系数和降低的散射系数(μ_(a)和μ_(s)〜('))使用RF调制激光源和增益调制图像增强器的方法。该方法实现了快速的多像素相敏测量,从而导致了一种有效的方法,可以通过已知的解析格林函数解获得μ_(a)和μ_(s)〜(')值。平板几何。我们开发了一种解析解决方案的近似公式,该公式特别适用于多像素数据分析。此外,我们还提供了包括DC数据在内的全面的多谐波数据分析,该数据可从单频数据集中提供多频信息,从而提高了测量的准确性和稳定性。

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