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The optical properties of mouse skin in the visible and near infrared spectral regions

机译:小鼠皮肤在可见光和近红外光谱区域的光学特性

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摘要

Visible and near-infrared radiation is now widely employed in health science and technology. Pre-clinical trials are still essential to allow appropriate translation of optical methods into clinical practice. Our results stress the importance of considering the mouse strain and gender when planning pre-clinical experiments that depend on light-skin interactions. Here, we evaluated the optical properties of depilated albino and pigmented mouse skin using reproducible methods to determine parameters that have wide applicability in biomedical optics. Light penetration depth (δ), absorption (µa), reduced scattering (µ's) and reduced attenuation (µ't) coefficients were calculated using the Kubelka-Munk model of photon transport and spectrophotometric measurements. Within a broad wavelength coverage (400–1400 nm), the main optical tissue interactions of visible and near infrared radiation could be inferred. Histological analysis was performed to correlate the findings with tissue composition and structure. Disperse melanin granules present in depilated pigmented mouse skin were shown to be irrelevant for light absorption. Gender mostly affected optical properties in the visible range due to variations in blood and abundance of dense connective tissue. On the other hand, mouse strains could produce more variations in the hydration level of skin, leading to changes in absorption in the infrared spectral region. A spectral region of minimal light attenuation, commonly referred as the “optical window”, was observed between 600 and 1350 nm.
机译:可见光和近红外辐射现已广泛应用于健康科学和技术中。临床前试验对于将光学方法适当地转化为临床实践仍然至关重要。我们的结果强调了在计划依赖于光皮相互作用的临床前实验时,考虑小鼠品系和性别的重要性。在这里,我们使用可再现的方法来评估脱毛的白化病和色素沉着的小鼠皮肤的光学特性,以确定在生物医学光学中具有广泛适用性的参数。使用Kubelka-Munk模型进行光子传输和分光光度测量,可以计算出光穿透深度(δ),吸收(μa),减少的散射(μ's)和减少的衰减(μ't)系数。在较宽的波长范围内(400-1400 nm),可以推断出可见光和近红外光的主要光学组织相互作用。进行组织学分析以使发现与组织组成和结构相关。脱毛的有色小鼠皮肤中存在的分散的黑色素颗粒与光吸收无关。由于血液的变化和致密结缔组织的丰度,性别在可见光范围内对光学性能的影响最大。另一方面,小鼠品系可能在皮肤的水合作用水平上产生更多变化,从而导致红外光谱区域吸收的变化。在600到1350 nm之间观察到最小光衰减的光谱区域,通常称为“光学窗口”。

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