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Optical tomograph with photon counting and projective reconstruction of the parameters of absorbing `phantoms' in extended scattering media

机译:带有光子计数的光学断层扫描仪和投射式重建在扩展散射介质中吸收“幻像”的参数

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摘要

A highly sensitive detection system with time-resolved photon counting was developed for modulation optical tomography (diode laser with a power of 15-30 mW, modulation frequency 100 MHz) of extended scattering objects. Experiments with model objects (linear dimensions up to 140 mm, absorption coefficients of 0.005-0.015, scattering coefficients of 1.4 mm~-1) showed that the propagation of optical radiation in such media is described by a relative path-lengthening coefficient which varied in the range 1.2-4.2, depending on the absorption coefficient and on the size of the object. A rapid projection algorithm for the solution of the inverse problem was used in the reconstruction of images of strongly absorbing inclusions known as `phantoms' (cylinders 10-23 mm in diameter). An algorithm was developed for the solution of the direct problem, which made it possible to reduce the solution time to 5-10 min.
机译:开发了一种具有时间分辨光子计数的高灵敏度检测系统,用于扩展散射物体的调制光学层析成像(功率为15-30 mW的二极管激光器,调制频率为100 MHz)。对模型对象(线性尺寸最大为140 mm,吸收系数为0.005-0.015,散射系数为1.4 mm〜-1)的实验表明,光辐射在此类介质中的传播由相对路径加长系数来描述,该相对路径加长系数在范围1.2-4.2,取决于吸收系数和物体的尺寸。一种用于解决反问题的快速投影算法用于重建被称为“幻影”(直径为10-23毫米的圆柱)的强吸收性夹杂物的图像。开发了用于解决直接问题的算法,这使得将求解时间减少到5-10分钟成为可能。

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