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首页> 外文期刊>Biomedical Optics Express >Phantom and mouse experiments of time-domain fluorescence tomography using total light approach
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Phantom and mouse experiments of time-domain fluorescence tomography using total light approach

机译:使用全光方法进行时域荧光层析成像的幻像和小鼠实验

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摘要

Phantom and mouse experiments of time-domain fluorescence tomography were conducted to demonstrate the total light approach which was previously proposed by authors. The total light approach reduces the computation time to solve the forward model for light propagation. Time-resolved temporal profiles were acquired for cylindrical phantoms having single or double targets containing indocyanine green (ICG) solutions. The reconstructed images of ICG concentration reflected the true distributions of ICG concentration with a spatial resolution of about 10 mm. In vivo experiments were conducted using a mouse in which an ICG capsule was embedded beneath the skin in the abdomen. The reconstructed image of the ICG concentration again reflected the true distribution of ICG although artifacts due to autofluorescence appeared in the vicinity of the skin. The effectiveness of the total light approach was demonstrated by the phantom and mouse experiments.
机译:进行了时域荧光层析成像的幻像和小鼠实验,以证明作者先前提出的全光方法。全光方法减少了求解光传播的正向模型所需的计算时间。对于具有单个或两个目标的包含吲哚菁绿(ICG)溶液的圆柱体模,获取了时间分辨的时间轮廓。 ICG浓度的重建图像反映了ICG浓度的真实分布,其空间分辨率约为10 mm。使用小鼠进行体内实验,其中将ICG胶囊嵌入腹部皮肤下。尽管由于自发荧光引起的伪影出现在皮肤附近,但ICG浓度的重建图像再次反映了ICG的真实分布。幻影和小鼠实验证明了全光方法的有效性。

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