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首页> 外文期刊>Applied optics >THEORY OF EQUIDISTANT THREE-DIMENSIONAL RADIANCE MEASUREMENTS WITH OPTICAL MICROPROBES
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THEORY OF EQUIDISTANT THREE-DIMENSIONAL RADIANCE MEASUREMENTS WITH OPTICAL MICROPROBES

机译:光学微探针的等量三维辐射测量理论

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摘要

Fiber-optic radiance microprobes, increasingly applied for measurements of internal light fields in living tissues, provide three-dimensional radiance distribution solids and radiant energy fluence rates at different depths of turbid samples. These data are, however, distorted because of an inherent feature of optical fibers: nonuniform angular sensitivity. Because of this property a radiance microprobe during a single measurement partly underestimates light from the envisaged direction and partly senses light from other directions. A theory of three-dimensional equidistant radiance measurements has been developed that provides correction for this instrumental error using the independently obtained function of the angular sensitivity of the microprobe. For the first time, as far as we know, the measurements performed with different radiance microprobes are comparable. An example of application is presented. The limitations of this theory and the prospects for this approach are discussed. [References: 10]
机译:光纤辐射微探针正越来越多地用于测量活组织中的内部光场,它提供了在不同浑浊样品深度的三维辐射分布固体和辐射能量通量率。但是,由于光纤的固有特征,这些数据会失真:不均匀的角度灵敏度。由于这种特性,辐射微探针在单次测量期间部分低估了来自设想方向的光,部分感知了来自其他方向的光。已经开发了三维等距辐射测量的理论,该理论使用独立获得的微探针角度灵敏度函数对这种仪器误差进行校正。据我们所知,第一次使用不同辐射微探针进行的测量是可比的。给出了一个应用示例。讨论了该理论的局限性以及该方法的前景。 [参考:10]

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