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CALIBRATION METHODS AND SYSTEMS FOR DIFFUSE OPTICAL TOMOGRAPHY AND SPECTROSCOPY

机译:弥散光学层析成像和光谱学的校准方法和系统

摘要

The invention features a calibration method for diffuse optical measurements that corrects transmittance measurements between a source and a detector for factors unrelated to sample properties. The calibration method is based on the same set of transmittance measurements that are subsequently corrected by the calibration and used in imaging and/or spectroscopy applications. The calibration method involves a forward calculation for each of multiple source-detector pairs based on an approximate model of the sample (310), and a minimization of an expression (330) that depends on the forward calculations and the transmittance measurements to determine self-consistent coupling coefficients for every source-detector pair. Once the coupling coefficients have been determined (360), they can be used to correct the transmittance measurements. If desired, an inverse calculation (370) can be performed on the corrected sample measurements to determine spatial variations in the optical properties of the sample. If necessary, the calibrat tion can be repeated (380) and iteratively improved, whereby the optical properties determined by the inverse calculation (370) in an earlier iteration are used to improve the sample model for the forward calculation in a subsequent iteration.
机译:本发明的特征在于用于漫射光学测量的校准方法,其针对与样品特性无关的因素校正源和检测器之间的透射率测量。校准方法基于同一组透射率测量值,该测量值随后将通过校准进行校正,并用于成像和/或光谱学应用中。校准方法包括基于样本的近似模型对多个源-探测器对中的每一个进行正向计算(310),并根据正向计算和透射率测量值确定表达式的最小化(330),以确定自每个源-检测器对的耦合系数都一致。一旦确定了耦合系数(360),就可以将其用于校正透射率测量值。如果需要,可以对校正后的样品测量结果执行逆计算(370),以确定样品的光学性质的空间变化。如果需要,可以重复进行校准(380)并进行迭代改进,从而在较早的迭代中使用由反计算(370)确定的光学特性来改进样本模型,以便在后续的迭代中进行正向计算。

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