首页> 外文会议>Conference on Photon Migration, Diffuse Spectroscopy, and Optical Coherence Tomography: Imaging and Functional Assessment, Jul 6-8, 2000, Amsterdam, the Netherlands >Fiber optic system for in vivo real-time determination of tissue optical properties from steady-state diffuse reflectance measurements
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Fiber optic system for in vivo real-time determination of tissue optical properties from steady-state diffuse reflectance measurements

机译:用于从稳态漫反射测量中体内实时确定组织光学性质的光纤系统

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摘要

We present a versatile and compact fiber optic probe for real-time determination of the absorption and the reduced scattering coefficients from spatially resolved continuous wave diffuse reflectance measurements. The probe collects the diffuse reflectance at six distances in the range 0.6 - 7.8 mm at four arbitrary wavelengths, which were 660, 785, 805, and 974 nm in these experiments. The maximum sampling rate for one cycle of measurements including all four wavelengths is about 100 Hz. The absorption and the reduced scattering coefficients are extracted real-time from the probe measurements using multivariate calibration methods based on multiple polynomial regression and Newton-Raphson algorithms. The system was calibrated on a 6x7 matrix of Intralipid/ink phantoms with optical properties within typical biological ranges, e.g. at 785 nm, the ranges of the absorption and the reduced scattering coefficients, were 0 - 0.3 /cm and 6 - 16 /cm, respectively. Cross-validation tests shoved that the mean prediction error, relative to the ranges of absorption and the reduced scattering coefficients were 2.8 % and 1.3 %, respectively.
机译:我们提出了一种多功能且紧凑的光纤探头,用于从空间分辨的连续波漫反射测量中实时确定吸收和降低的散射系数。探针在四个任意波长(在这些实验中分别为660、785、805和974 nm)处的0.6-7.8 mm范围内的六个距离处收集漫反射率。包括所有四个波长的一个测量周期的最大采样率约为100 Hz。使用基于多元多项式回归和Newton-Raphson算法的多元校准方法,从探针测量中实时提取吸收系数和降低的散射系数。该系统在6x7的Intralipid / ink phantoms矩阵上校准,该矩阵具有典型生物学范围内的光学特性,例如在785nm处,吸收和减小的散射系数的范围分别为0-0.3 / cm和6-16 / cm。交叉验证测试推论,相对于吸收范围和减小的散射系数,平均预测误差分别为2.8%和1.3%。

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