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Rigorous characterization of time-resolved diffuse spectroscopy systems for measurements of absorption and scattering properties using solid phantoms

机译:严格表征时间分辨漫射光谱系统,使用固体模型测量吸收和散射特性

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摘要

Two systems for measurements of absorption and scattering properties, based on picosecond-pulse lasers and single-photon counting detection, were characterized using a detailed protocol. The first system utilizes diode lasers at 660, 785, 910 and 974 nm as light sources. The second employs a Ti:sapphire and a mode-locked dye laser to produce tunable pulses in the range 610 - 1000 nm. Using solid tissue phantoms, the systems were rigorously characterized and compared in terms of absolute accuracy of the measured scattering and absorption coefficients, the linearity over the parameter range, the precision with respect to injected light energy, the stability over time, and the reproducibility of the results. The phantoms were made of epoxy resin with TiO as scatterer and black toner powder as absorber.
机译:使用详细协议对两个基于皮秒脉冲激光器和单光子计数检测的吸收和散射特性测量系统进行了表征。第一个系统利用660、785、910和974 nm的二极管激光器作为光源。第二种使用钛蓝宝石和锁模染料激光器产生610-1000 nm范围内的可调脉冲。使用实心组织体模,对系统进行了严格的表征,并根据测得的散射和吸收系数的绝对精度,参数范围内的线性,相对于注入光能的精度,随时间的稳定性以及可重复性进行了比较。结果。幻影由环氧树脂制成,TiO为散射体,黑色碳粉为吸收体。

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