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Spatial frequency domain spectroscopy of two layer media

机译:两层介质的空间频域光谱

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摘要

Monitoring of tissue blood volume and oxygen saturation using biomedical optics techniques has the potential to inform the assessment of tissue health, healing, and dysfunction. These quantities are typically estimated from the contribution of oxyhemoglobin and deoxyhemoglobin to the absorption spectrum of the dermis. However, estimation of blood related absorption in superficial tissue such as the skin can be confounded by the strong absorption of melanin in the epidermis. Furthermore, epidermal thickness and pigmentation varies with anatomic location, race, gender, and degree of disease progression. This study describes a technique for decoupling the effect of melanin absorption in the epidermis from blood absorption in the dermis for a large range of skin types and thicknesses. An artificial neural network was used to map input optical properties to spatial frequency domain diffuse reflectance of two layer media. Then, iterative fitting was used to determine the optical properties from simulated spatial frequency domain diffuse reflectance. Additionally, an artificial neural network was trained to directly map spatial frequency domain reflectance to sets of optical properties of a two layer medium, thus bypassing the need for iteration. In both cases, the optical thickness of the epidermis and absorption and reduced scattering coefficients of the dermis were determined independently. The accuracy and efficiency of the iterative fitting approach was compared with the direct neural network inversion.
机译:使用生物医学光学技术监测组织的血容量和血氧饱和度有可能为组织健康,愈合和功能障碍的评估提供参考。这些量通常根据氧合血红蛋白和脱氧血红蛋白对真皮吸收光谱的贡献来估算。然而,表皮组织中黑色素的强烈吸收可能会混淆皮肤等浅表组织中与血液有关的吸收估计。此外,表皮厚度和色素沉着随解剖位置,种族,性别和疾病进展程度而变化。这项研究描述了一种技术,该技术可在多种皮肤类型和厚度范围内将表皮中黑色素吸收与真皮中血液吸收脱钩。使用人工神经网络将输入光学特性映射到两层介质的空间频域漫反射率。然后,使用迭代拟合从模拟的空间频域漫反射确定光学特性。此外,还训练了一个人工神经网络,将空间频域反射率直接映射到两层介质的光学特性集,从而避免了迭代的需要。在这两种情况下,表皮的光学厚度以及真皮的吸收和降低的散射系数都是独立确定的。将迭代拟合方法的准确性和效率与直接神经网络反演进行了比较。

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