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用于测定生物医学光学特性的空间和时间分辨漫反射测量系统的比较。

Comparison of spatially and temporally resolved diffuse-reflectance measurement systems for determination of biomedical optical properties.

作者信息

Swartling Johannes, Dam Jan S, Andersson-Engels Stefan

机构信息

Department of Physics, Lund Institute of Technology, P.O. Box 118, SE-22100 Lund, Sweden.

出版信息

Appl Opt. 2003 Aug 1;42(22):4612-20. doi: 10.1364/ao.42.004612.

Abstract

Time-resolved and spatially resolved measurements of the diffuse reflectance from biological tissue are two well-established techniques for extracting the reduced scattering and absorption coefficients. We have performed a comparison study of the performance of a spatially resolved and a time-resolved instrument at wavelengths 660 and 786 nm and also of an integrating-sphere setup at 550-800 nm. The first system records the diffuse reflectance from a diode laser by means of a fiber bundle probe in contact with the sample. The time-resolved system utilizes picosecond laser pulses and a single-photon-counting detection scheme. We extracted the optical properties by calibration using known standards for the spatially resolved system, by fitting to the diffusion equation for the time-resolved system, and by using an inverse Monte Carlo model for the integrating sphere. The measurements were performed on a set of solid epoxy tissue phantoms. The results showed less than 10% difference in the evaluation of the reduced scattering coefficient among the systems for the phantoms in the range 9-20 cm(-1), and absolute differences of less than 0.05 cm(-1) for the absorption coefficient in the interval 0.05-0.30 cm(-1).

摘要

对生物组织漫反射进行时间分辨和空间分辨测量是提取约化散射系数和吸收系数的两种成熟技术。我们对一台空间分辨仪器和一台时间分辨仪器在660和786 nm波长下的性能进行了比较研究,还对一台550 - 800 nm的积分球装置进行了比较研究。第一个系统通过与样品接触的光纤束探头记录来自二极管激光器的漫反射。时间分辨系统利用皮秒激光脉冲和单光子计数检测方案。我们通过使用空间分辨系统的已知标准进行校准、对时间分辨系统拟合扩散方程以及对积分球使用逆蒙特卡罗模型来提取光学特性。测量是在一组固体环氧组织模型上进行的。结果表明,对于9 - 20 cm⁻¹范围内的模型,各系统对约化散射系数的评估差异小于10%,对于0.05 - 0.30 cm⁻¹区间内的吸收系数,绝对差异小于0.05 cm⁻¹。

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