Computational laser spectroscopy in a biological tissue.

M Gantri, H Trabelsi, E Sediki, R Ben Salah
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引用次数: 6

Abstract

We present a numerical spectroscopic study of visible and infrared laser radiation in a biological tissue. We derive a solution of a general two-dimensional time dependent radiative transfer equation in a tissue-like medium. The used model is suitable for many situations especially when the external source is time-dependent or continuous. We use a control volume-discrete ordinate method associated with an implicit three-level second-order time differencing scheme. We consider a very thin rectangular biological-tissue-like medium submitted to a visible or a near infrared light sources. The RTE is solved for a set of different wavelength source. All sources are assumed to be monochromatic and collimated. The energetic fluence rate is computed at a set of detector points on the boundaries. According to the source type, we investigate either the steady-state or transient response of the medium. The used model is validated in the case of a heterogeneous tissue-like medium using referencing experimental results from the literature. Also, the developed model is used to study changes on transmitted light in a rat-liver tissue-like medium. Optical properties depend on the source wavelength and they are taken from the literature. In particular, light-transmission in the medium is studied for continuous wave and for short pulse.

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生物组织中的计算激光光谱学。
我们提出了一个可见和红外激光辐射在生物组织中的数值光谱研究。导出了类组织介质中二维随时间变化的辐射传递方程的解。所使用的模型适用于许多情况,特别是当外部源是时间相关的或连续的。我们使用了一种控制体离散坐标方法,并结合了隐式三阶二阶差分格式。我们考虑一个非常薄的矩形生物组织样介质提交到一个可见或近红外光源。求解了一组不同波长光源的RTE。所有的光源都假定是单色的和准直的。在边界上的一组检测点处计算能量影响率。根据源的类型,我们研究了介质的稳态或瞬态响应。使用的模型在异质组织样介质的情况下使用参考文献中的实验结果进行验证。该模型还用于研究大鼠肝组织样介质中透射光的变化。光学性质取决于源波长,它们取自文献。特别研究了连续波和短脉冲光在介质中的传输。
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