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Imaging workflow and calibration for CT-guided time-domain fluorescence tomography

机译:CT引导时域荧光层析成像的成像工作流程和校准

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In this study, several key optimization steps are outlined for a non-contact, time-correlated single photon counting small animal optical tomography system, using simultaneous collection of both fluorescence and transmittance data. The system is presented for time-domain image reconstruction in vivo, illustrating the sensitivity from single photon counting and the calibration steps needed to accurately process the data. In particular, laser time- and amplitude-referencing, detector and filter calibrations, and collection of a suitable instrument response function are all presented in the context of time-domain fluorescence tomography and a fully automated workflow is described. Preliminary phantom time-domain reconstructed images demonstrate the fidelity of the workflow for fluorescence tomography based on signal from multiple time gates.
机译:在这项研究中,概述了非接触式,时间相关的单光子计数小型动物光学断层扫描系统的几个关键优化步骤,同时收集了荧光和透射率数据。提出了用于体内时域图像重建的系统,说明了单光子计数的灵敏度以及准确处理数据所需的校准步骤。尤其是在时域荧光层析成像技术中介绍了激光时间参考和幅度参考,检测器和滤波器的校准以及合适的仪器响应函数的收集,并描述了一种全自动的工作流程。初步的幻影时域重建图像显示了基于来自多个时间门的信号进行荧光层析成像的工作流程的保真度。

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