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Fluorescence-enhanced optical imaging in large tissue volumes using a gain-modulated ICCD camera.

机译:使用增益调制的ICCD相机在大组织体积中进行荧光增强的光学成像。

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摘要

A novel image-intensified charge-coupled device (ICCD) imaging system has been developed to perform 3D fluorescence tomographic imaging in the frequency-domain using near-infrared contrast agents. The imager is unique since it (i) employs a large tissue-mimicking phantom, which is shaped and sized to resemble a female breast and part of the extended chest-wall region, and (ii) enables rapid data acquisition in the frequency-domain by using a gain-modulated ICCD camera. Diffusion model predictions are compared to experimental measurements using two different referencing schemes under two different experimental conditions of perfect and imperfect uptake of fluorescent agent into a target. From these experimental measurements, three-dimensional images of fluorescent absorption were reconstructed using a computationally efficient variant of the approximate extended Kalman filter algorithm. The current work represents the first time that 3D fluorescence-enhanced optical tomographic reconstructions have beenachieved from experimental measurements of the time-dependent light propagation on a clinically relevant breast-shaped tissue phantom using a gain-modulated ICCD camera.
机译:已经开发出新颖的图像增强电荷耦合器件(ICCD)成像系统,以使用近红外造影剂在频域中执行3D荧光层析成像。该成像仪是独特的,因为它(i)采用了大型的模仿组织的幻像,其形状和大小类似于女性的乳房和扩展的胸壁区域的一部分,并且(ii)能够在频域中快速获取数据通过使用增益调制的ICCD摄像机。使用两种不同的参考方案,在两种不同的实验条件下将扩散模型的预测值与实验测量值进行比较,以完美和不完全地吸收目标荧光剂。从这些实验测量中,使用近似扩展卡尔曼滤波器算法的计算有效变体重建了荧光吸收的三维图像。当前的工作是首次使用增益调制的ICCD摄像机从临床相关的乳房状组织体模上随时间变化的光传播的实验测量中,首次实现了3D荧光增强光学层析成像重建。

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