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A dynamic system with digital lock-in-photon-counting for pharmacokinetic diffuse fluorescence tomography

机译:具有数字锁定光子计数的动态系统,用于药代动力学弥散荧光断层扫描

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Pharmacokinetic diffuse fluorescence tomography (DFT) can describe the metabolic processes of fluorescent agents in biomedical tissue and provide helpful information for tumor differentiation. In this paper, a dynamic DFT system was developed by employing digital lock-in-photon-counting with square wave modulation, which predominates in ultra-high sensitivity and measurement parallelism. In this system, 16 frequency-encoded laser diodes (LDs) driven by self-designed light source system were distributed evenly in the imaging plane and irradiated simultaneously. Meanwhile, 16 detection fibers collected emission light in parallel by the digital lock-in-photon-counting module. The fundamental performances of the proposed system were assessed with phantom experiments in terms of stability, linearity, anti-crosstalk as well as images reconstruction. The results validated the availability of the proposed dynamic DFT system.
机译:药代动力学弥漫性荧光断层扫描(DFT)可以描述生物医学组织中荧光剂的代谢过程,并提供有用的肿瘤分化信息。在本文中,通过采用具有方波调制的数字锁定光子计数来开发动态DFT系统,其占主导于超高敏感性和测量并行性。在该系统中,由自行设计光源系统驱动的16个频率编码的激光二极管(LDS)均匀地分布在成像平面中并同时照射。同时,16个检测纤维由数字锁定光子计数模块并联收集发射光。在稳定性,线性度,抗串扰和图像重建方面评估了所提出的系统的基本性能。结果验证了所提出的动态DFT系统的可用性。

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