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Human Sinus Studies using Monte Carlo Simulations and Diode Laser Gas Absorption Spectroscopy

机译:使用蒙特卡罗模拟和二极管激光气体吸收光谱的人窦研究

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We demonstrate the possibility of non-intrusive in-vivo human sinus studies by diode laser gas absorption spectroscopy. Molecular oxygen in tissue-like phantoms were investigated in a practical backscattering detection geometry for frontal sinus studies both experimentally and numerically using the Monte Carlo concept, implemented in the Advanced Systems Analysis Program (ASAP) software. Light was launched into and detected from the forehead on a health volunteer. A model representing the frontal sinus measurements was implemented in ASAP and studied. The results from the experiments and the simulations show a good agreement for both the tissue-like phantom measurements and the measurements of the healthy volunteer. Preliminary data from human maxillary sinus measurements are also shown. The results are promising and suggest further development of this technique for sinuses studies.
机译:我们展示了二极管激光气体吸收光谱的非侵入式人类窦研究的可能性。在实验和数值使用Monte Carlo概念的实际和数值上进行了额外的反向散射检测几何体,在高级系统分析程序(ASAP)软件中实现了分子样散射几何形状的分子氧。在健康志愿者上发射并从额头上发射并检测到。代表正面窦测量的模型是在尽量和研究中实施的。来自实验和模拟的结果表明,组织类似的幻像测量和健康志愿者的测量表现出良好的一致性。还显示了人颌骨测量的初步数据。结果是有前途的,并建议进一步发展这种鼻窦研究技术。

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