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Discrimination between Doppler-shifted and non-shifted light in coherence domain path length resolved measurements of multiply scattered light

机译:相干域路径长度分辨多散射光测量中多普勒频移光和非频移光的区别

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摘要

We show a novel technique to distinguish between Doppler shifted and unshifted light in multiple scattering experiments on mixed static and dynamic media. With a phase modulated low coherence Mach- Zehnder interferometer, optical path lengths of shifted and unshifted light and path length dependent Doppler broadening are measured in a two-layer tissue phantom, with a superficial static layer of different thickness covering a semi-infinite dynamic medium having identical optical properties. No Doppler broadening is observed until a certain optical path length depending on the thickness of the superficial static layer. From the minimum optical path length corresponding to the Doppler-shifted light the thickness of the static layer that overlies the dynamic layer can be estimated. Validation of the experimentally determined thickness of the static layer is done with the Doppler Monte Carlo technique. This approach has potential applications in discriminating between statically and dynamically scattered light in the perfusion signal and in determining superficial burn depths
机译:我们展示了一种在混合静态和动态介质上的多次散射实验中区分多普勒偏移和未偏移的光的新技术。使用相位调制的低相干马赫曾德尔干涉仪,可以在两层组织体模中测量已移动和未移动的光的光程长度以及与路径长度有关的多普勒展宽,其中不同厚度的表面静态层覆盖了半无限动态介质具有相同的光学特性直到一定的光程长度取决于表面静态层的厚度,才观察到多普勒展宽。从对应于多普勒频移的光的最小光路长度,可以估算出覆盖在动态层上的静态层的厚度。实验确定的静态层厚度的验证是通过多普勒蒙特卡洛技术进行的。这种方法在区分灌注信号中的静态和动态散射光以及确定浅层烧伤深度方面具有潜在的应用

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