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Simultaneous fluorescence yield and lifetime tomography from time-resolved transmittances of small-animal-sized phantom

机译:小动物模型的时间分辨透射率同时产生荧光和进行寿命层析成像

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摘要

There has been recently a considerable interest in simultaneously reconstructing yield and lifetime distributions of fluorescent imaging agents inside a bulky tissue, since combined monitoring of these two parameters provides a potential means of in vivo interrogating quantitative and environmental information of specific molecules, as well as accessing interactions among them. It is widely accepted that an advantageous way of accomplishing the task in the context of small-animal imaging is to use a time-domain (TD) modality. In this paper, we present a full three-dimensional, featured-data algorithm for TD diffuse fluorescence tomography, which inverts the Laplace-transformed TD coupled photon diffusion equations and employs a pair of real-domain transform-factors to effectively separate the fluorescent yield and lifetime parameters. By use of a specifically designed 16 X 16 channel time-correlated single photon counting system and a normalized Born formulation for the inversion, the proposed scheme in a transmission mode is experimentally validated to achieve simultaneous reconstruction of the fluorescent yield and lifetime distributions with reasonable accuracy.
机译:最近,在同时重建大体积组织内的荧光显像剂的产率和寿命分布方面引起了极大的兴趣,因为对这两个参数的组合监视提供了一种在体内询问特定分子的定量和环境信息以及获取信息的潜在手段。他们之间的互动。众所周知,在小动物成像的情况下完成任务的一种有利方式是使用时域(TD)模式。在本文中,我们提出了用于TD扩散荧光层析成像的完整三维特征数据算法,该算法将拉普拉斯变换的TD耦合光子扩散方程式求反,并采用一对实域变换因子来有效分离荧光产量和生命周期参数。通过使用专门设计的16 X 16通道时间相关的单光子计数系统和归一化的Born公式进行反演,该传输方案在透射模式下得到了实验验证,以合理的精度实现了荧光产量和寿命分布的同时重建。 。

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