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仿CT扫描模式扩散荧光层析成像方法
引用本文:王欣,高峰,李娇,赵会娟.仿CT扫描模式扩散荧光层析成像方法[J].天津大学学报(自然科学与工程技术版),2013(12):1106-1113.
作者姓名:王欣  高峰  李娇  赵会娟
作者单位:天津大学精密仪器与光电子工程学院,天津300072
基金项目:国家高技术研究发展计划(863计划)资助项目(2009AA022413)国家自然科学基金资助项目(30870657,30970775,81101106,61108081).
摘    要:为了实现高灵敏度、高空间采样密度的扩散荧光层析成像,提出了一种基于光子计数技术的仿CT扫描模式的成像方法.光源经过准直后入射到仿体上,光电倍增管探测得到光源同一水平面101.25°~258.75°均匀分布的8路探测信号.按照与CT相似的方式,系统旋转仿体以实现对仿体的0°~360°扫描,采用光子计数方式采集多个光源入射角下多个探测位置的光子数信息,获得的大量数据可降低重建过程的病态性,使重建结果更加准确.仿体实验证明,对于荧光剂Cy5.5的探测可以达到2nmol/L左右的浓度和边对边距离5mm的空间分辨率,增加空间采样密度可以提高系统的灵敏度和分辨率.

关 键 词:扩散荧光层析成像  荧光产率  仿CT扫描模式  光子计数  图像重建

Diffuse Fluorescence Tomography Method with CT-Analogous Scanning Mode
Wang Xin,Gao Feng,Li Jiao,Zhao Huijuan.Diffuse Fluorescence Tomography Method with CT-Analogous Scanning Mode[J].Journal of Tianjin University(Science and Technology),2013(12):1106-1113.
Authors:Wang Xin  Gao Feng  Li Jiao  Zhao Huijuan
Institution:(School of Precision Instrument and Opto-Electronics Engineering, Tianjin University, Tianjin 300072, China)
Abstract:A CT-analogous mode of diffuse fluorescence tomography (DFT) based on photon-counting has been pro- posed to achieve high sensitivity and high spatial sampling density. The incidence light on the phantom is a collimated beam and eight detection fibers placed from 101.25° to 258.75° in the same place of the source collecting eight de- tective signals. By rotating the phantom from 0° to 360° as a CT system does, the system acquires the number of photon by photon-cotmting on different sites of the phantom under different incident perspectives. The large data-set reduces the ill-posed problem of the reconstruction and achieves a more accurate imaging. The proposed system can disclose the concentration of Cy5.5 target with a high sensitivity and fidelity as the concentration is above 2 nmol/L and the edge-to-edge spatial resolution is about 5 mm. By increasing the spatial sampling density, a better resolution and sensitivity can be achieved.
Keywords:diffuse fluorescence tomography  fluorescence yield  CT-analogous scanning mode  photon counting  image reconstruction
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