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Analysis of Light Absorption with Variation of Epidermis Thickness in Human Skin Model using Monte Carlo Simulation

机译:利用蒙特卡洛模拟分析人体皮肤模型中表皮厚度的光吸收

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The sensitivity of the oxygenation detection using non-invasive light visible and near infrared range during muscle activation is clinically important. Monte Carlo simulations have been performed to determine light propagation based on epidermal thickness of human skin model. All perimeters such as absorption coefficient, scattering coefficient and anisotropy factor of the five layers samples in the visible spectral range from 600 to 900 nm was determined in this paper. In order to assess the predictability of our simulations, we evaluate their accuracy by comparing results from the model with actual skin measured data. The parameters was estimated using root-mean-squared error of less than 5% for epidermal thickness from (0.001 to 0.2) cm of human skin model under the visible part of the spectrum. The change in optical density is significantly decreased and the linearity of measurement characteristics is clearly distorted by the presence of a larger thickness layer of epidermis about maximum 0.2 cm. Thus, suitable modelling of light propagation passing through epidermis layer in a human muscle is important for quantitative near-infrared spectroscopy and optical imaging for muscle activation studies.
机译:使用肌肉激活期间的非侵入性光可见光和近红外范围中的氧合检测的灵敏度是临床上重要的。 Monte Carlo模拟已被执行,以确定基于人皮肤模型的表皮厚度的光传播。所有周边如吸收系数,散射系数和在600至900纳米的可见光谱范围内的五个层的样品的各向异性因子在本文中确定的。为了评估我们的模拟的可预测性,我们评估通过实际测量皮肤的数据对模型进行比较,结果其准确性。使用小于5%的根均方误差为光谱的可见光部分下从人皮肤模型的(0.001〜0.2)厘米表皮厚度中的参数估计。在光学密度的变化被降低显著和测量特性的线性显然是由大约最大0.2厘米表皮的较大厚度层的存在失真。因此,通过表皮层传递一个人肌肉光传播的合适的建模是定量近红外光谱和光学成像用于肌肉活化研究很重要。

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