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Image Reconstruction in Near-Infrared Time-Resolved Optical Tompgraphy Using Analogous Parallel Beam Scanning Mode

机译:使用类似的并行波束扫描模式在近红外时间分辨光学截图中的图像重建

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An experimental system for time-resolved optical tomography has been constructed from Ti:Sapphire laser and synchroscan streak camera. With a 3-dimentional step-motor driving translation-rotation stage, the system can scan the object to be imaged in a parallel-beam mode analogous to X-ray CT, by which the time-resolved projections at a variety of incident angles can be obtained automatically. By applying a nonlinear image reconstruction algorithm, the promising images have been produced from the time-resolved measurements for three kinds of tissue-like phantoms that represent the differnet combinations of the absorption and scattering properties of the embedded single inclusion. Our results have demonstrated this system as a reliable and idal platform for the research of time-resolved tomographic imaging.
机译:时间分辨光学断层扫描的实验系统已由TI:蓝宝石激光和同步横向连杆相机构建。利用三维步进电机驱动平移转换阶段,系统可以在不同于X射线CT的平行波线模式下扫描待成像的物体,通过该射线CT,各种入射角可以在其上分辨的突起自动获得。通过应用非线性图像重建算法,已经从时间分辨的测量到三种组织样模块的时间分辨测量来制造,其代表嵌入的单个包含的吸收和散射特性的不同组合组合。我们的结果证明了该系统作为对时间解决断层成像的研究的可靠和惰性平台。

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