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Uncertainty analysis of time resolved transmittance characterization of solid tissue phantoms

机译:固体组织体模时间分辨透射率表征的不确定性分析

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Solid tissue phantom are the preferred tool for the development, validation, testing and calibration of photon migration instrument. Accuracy, or trueness, of the optical properties of reference phantoms is of the utmost importance as they will be used as the conventional true value against which instrument errors will be evaluated. A detailed quantitative analysis of the uncertainty of time-resolved transmittance characterization of solid optical tissue phantom is presented. Random error sources taken into account are Poisson noise of the photon counting process, additive dark count noise and instrument response function stability. Systematic error sources taken into account are: phantom thickness uncertainty, refractive index uncertainty, time correlated single photon counting system time base calibration uncertainty. Correction procedures for these systematic errors are presented whenever a correction is possible.
机译:实体组织体模是用于开发,验证,测试和校准光子迁移仪器的首选工具。参考体模的光学特性的准确性或真实性至关重要,因为它们将用作评估仪器误差的常规真实值。提出了详细的定量分析的固体光学组织体模的时间分辨透射率表征的不确定性。考虑的随机误差源是光子计数过程的泊松噪声,加性暗计数噪声和仪器响应函数的稳定性。考虑到的系统误差源为:幻像厚度不确定度,折射率不确定度,与时间相关的单光子计数系统时基校准不确定度。只要有可能,就提出了针对这些系统错误的纠正程序。

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