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首页> 外文期刊>Applied optics >Optical fluence distribution study in tissue in dark-field confocal photoacoustic microscopy using a modified Monte Carlo convolution method
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Optical fluence distribution study in tissue in dark-field confocal photoacoustic microscopy using a modified Monte Carlo convolution method

机译:改进的蒙特卡洛卷积法在暗场共聚焦光声显微镜中研究组织中的光通量分布

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摘要

We have modified the existing convolution method of the Monte Carlo simulation for finite photon beams with both translational and rotational invariance. The modified convolution method was applied to simulate the optical fluence distribution in tissue in dark-field confocal photoacoustic microscopy. We studied the influence of the size of the dark field and the illumination incident angle on the depth position of the effective optical focus (the region with the highest fluence) and the fluence ratio (the ratio of the optical fluence at the effective optical focus inside the tissue to the optical fluence on the tissue surface along the ultrasonic axis). Within the reach of diffuse photons, the depth position of the effective optical focus increases with the size of the dark field and is much less sensitive to the incident angle. The findings show that, while the fluence at the effective optical focus decreases, the fluence ratio increases with the size of the dark field. The incident angle has a weaker influence on the fluence ratio than the size of the dark field does. An incident angle between 30 and 50 degrees gives the highest fluence at the effective optical focus.
机译:我们已经修改了蒙特卡洛模拟的现有平积方法,用于同时具有平移和旋转不变性的有限光子束。改进的卷积方法被应用于模拟暗场共聚焦光声显微镜中组织的光学通量分布。我们研究了暗场大小和照明入射角对有效光学焦点的深度位置(能量密度最高的区域)和能量密度比(有效能量焦点处的光学能量密度之比)的影响。组织对沿超声轴在组织表面上的光通量的影响)。在扩散光子的作用范围内,有效光学焦点的深度位置会随着暗场的大小而增加,并且对入射角的敏感度将大大降低。研究结果表明,尽管有效光学焦点处的能量密度降低,但能量密度比率却随着暗场的大小而增加。入射角对能量密度比的影响比暗场的大小弱。在30到50度之间的入射角可在有效光学焦点上提供最高的通量。

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