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    • 1. 发明申请
    • CT SYSTEMS AND METHODS THEREOF
    • CT系统及其方法
    • US20150185355A1
    • 2015-07-02
    • US14576737
    • 2014-12-19
    • Tsinghua UniversityNuctech Company Limited
    • Li ZHANGZhiqiang CHENQingping HUANGXin JINYunda SUNLe SHENJi ZHAO
    • G01V5/00G01T7/08G01N23/04G06T11/00
    • G01V5/005G01N23/046G01T7/08G06T11/003G06T2207/10072G06T2211/40
    • A CT system and method thereof are discloses. The system includes: a conveyor mechanism; a first scanning stage configured to scan the object and generate a first digital signal; a second scanning stage spaced from the first scanning stage at a preset distance in a direction of the object's movement; a processing device configured to reconstruct a CT image of the object at a first image quality based on the first digital signal, and analyze the CT image; and a control device configured to adjust a scanning parameter of the second scanning stage based on an analysis result of the processing device to cause the second scanning stage to output a second digital signal. The processing device reconstructs a CT image of the object at a second image quality higher than the first image quality at least based on the second digital signal. The system takes full advantage of the distributed ray sources which replace the normal slip ring technology.
    • 公开了一种CT系统及其方法。 该系统包括:输送机构; 第一扫描台,被配置为扫描所述物体并产生第一数字信号; 第二扫描台,在所述物体运动的方向上以预定的距离与所述第一扫描台隔开; 处理装置,被配置为基于所述第一数字信号以第一图像质量重建所述对象的CT图像,并分析所述CT图像; 以及控制装置,其被配置为基于所述处理装置的分析结果来调整所述第二扫描级的扫描参数,以使所述第二扫描级输出第二数字信号。 处理装置至少基于第二数字信号,以比第一图像质量高的第二图像质量重构对象的CT图像。 该系统充分利用了代替普通滑环技术的分布式射线源。
    • 2. 发明申请
    • CT SYSTEMS AND METHODS THEREOF
    • CT系统及其方法
    • US20150199804A1
    • 2015-07-16
    • US14576705
    • 2014-12-19
    • Tsinghua UniversityNuctech Company Limited
    • Zhiqiang CHENLi ZHANGJi ZHAOQingping HUANGXin JIN
    • G06T7/00
    • G06T7/0002G01V5/005G06T2207/30112
    • A CT system and method thereof are discloses. The system includes: a fixed multi-plane multi-source X-ray generation device and a control system thereof that provide X-ray source used in luggage inspection; a single-energy, pseudo-dual-energy or spectral detector system and data transfer system that receive perspective data of X ray penetrating the luggage, and transfer the data to a computer for processing; a conveyor and a control system thereof that control a speed for moving the luggage forth and back, and perform tomogram scanning; and a host computer system that performs tomogram reconstruction and provides man-machine interaction. The system takes full advantage of characteristics, such as high speed and stability, brought by the distributed ray sources which replace the normal slip ring technology. The system also adopts the idea of inverse-geometry CT, and reduces detector area and cost by increasing the number of ray sources. With the reduction of detector area, cone-beam artifacts and cup-shape artifacts caused by scattering are also reduced, and influence of the oblique effect on registration of dual-energy data is suppressed.
    • 公开了一种CT系统及其方法。 该系统包括:提供行李检查中使用的X射线源的固定多平面多源X射线产生装置及其控制系统; 单能量,伪双能量或光谱检测器系统和数据传输系统,其接收穿透行李的X射线的透视数据,并将数据传送到计算机进行处理; 输送机及其控制系统,其控制行李前后移动的速度,并执行断层图像扫描; 以及执行断层图像重建并提供人机交互的主计算机系统。 系统充分利用了代替普通滑环技术的分布式射线源带来的高速度,稳定性等特点。 该系统还采用反几何CT的思想,通过增加射线源数量,减少探测器面积和成本。 随着检测器面积的减小,散射引起的锥束伪影和杯形伪影也减少,并且斜率对双能数据配准的影响受到抑制。