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Fluorescence-enhanced tomographic imaging in large phantoms using gain-modulated ICCD camera

机译:使用增益调制ICCD相机对大型体模进行荧光增强层析成像

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摘要

A frequency-domain photon migration (FDPM) imager employing an image-intensified CCD camera for fast data acquisition on a large tissue-mimicking phantom (1087 ml) is described. Fluorescence-enhanced imaging is performed employing frequency-domain techniques at 100 MHz in order to obtain the boundary measurements of phase and amplitude and to recover the interior optical maps using the first principles of light propagation. The effect of refractive-index parameter in the boundary condition of the light propagation model is not significant due to the large phantom volume and its curvilinear nature. Initial experiments were performed under perfect (1:0 contrast) and imperfect (100:1 contrast) uptake cases using indocyanine green as the contrast agent. Preliminary 3D image reconstructions using the approximate extended Kalman filter (AEKF) algorithm are presented.
机译:描述了一种频域光子迁移(FDPM)成像仪,该成像仪采用图像增强CCD相机在大型组织模拟体模(1087 ml)上进行快速数据采集。为了获得相位和幅度的边界测量值并使用光传播的第一个原理来恢复内部光学图,使用频域技术在100 MHz上执行了荧光增强成像。由于较大的幻像体及其曲线特性,折射率参数在光传播模型的边界条件下的影响并不明显。使用吲哚花青绿作为造影剂,在完美(1:0对比度)和不完美(100:1对比度)摄取情况下进行了初始实验。提出了使用近似扩展卡尔曼滤波器(AEKF)算法的初步3D图像重建。

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