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    • 4. 发明授权
    • Apparatus and method for detection of radiation
    • 用于检测辐射的装置和方法
    • US09000386B2
    • 2015-04-07
    • US14026353
    • 2013-09-13
    • Image Insight Inc.
    • Eric P. Rubenstein
    • G01T1/36
    • G01T1/366G01T1/11G01T7/00
    • Digital images or the charge from pixels in light sensitive semiconductor based imagers may be used to detect gamma rays and energetic particles emitted by radioactive materials. Methods may be used to identify pixel-scale artifacts introduced into digital images and video images by high energy gamma rays. Statistical tests and other comparisons on the artifacts in the images or pixels may be used to prevent false-positive detection of gamma rays. The sensitivity of the system may be used to detect radiological material at distances in excess of 50 meters. Advanced processing techniques allow for gradient searches to more accurately determine the source's location, while other acts may be used to identify the specific isotope. Coordination of different imagers and network alerts permit the system to separate non-radioactive objects from radioactive objects.
    • 可以使用数字图像或基于光敏半导体的成像器中的像素的电荷来检测由放射性材料发射的伽马射线和能量粒子。 可以使用方法来识别通过高能γ射线引入到数字图像和视频图像中的像素尺度伪像。 对图像或像素中的伪像的统计测试和其他比较可以用于防止γ射线的假阳性检测。 该系统的灵敏度可用于检测距离超过50米的放射性材料。 高级处理技术允许梯度搜索更准确地确定源的位置,而其他动作可用于识别特定的同位素。 不同成像器和网络警报的协调使系统能够将非放射性物体与放射性物体分开。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR DETECTION OF RADIATION
    • 用于检测辐射的装置和方法
    • US20140203181A1
    • 2014-07-24
    • US14026353
    • 2013-09-13
    • Image Insight Inc.
    • Eric P. Rubenstein
    • G01T1/36
    • G01T1/366G01T1/11G01T7/00
    • Digital images or the charge from pixels in light sensitive semiconductor based imagers may be used to detect gamma rays and energetic particles emitted by radioactive materials. Methods may be used to identify pixel-scale artifacts introduced into digital images and video images by high energy gamma rays. Statistical tests and other comparisons on the artifacts in the images or pixels may be used to prevent false-positive detection of gamma rays. The sensitivity of the system may be used to detect radiological material at distances in excess of 50 meters. Advanced processing techniques allow for gradient searches to more accurately determine the source's location, while other acts may be used to identify the specific isotope. Coordination of different imagers and network alerts permit the system to separate non-radioactive objects from radioactive objects.
    • 可以使用数字图像或基于光敏半导体的成像器中的像素的电荷来检测由放射性材料发射的伽马射线和能量粒子。 可以使用方法来识别通过高能γ射线引入到数字图像和视频图像中的像素尺度伪像。 对图像或像素中的伪像的统计测试和其他比较可以用于防止γ射线的假阳性检测。 该系统的灵敏度可用于检测距离超过50米的放射性材料。 高级处理技术允许梯度搜索更准确地确定源的位置,而其他动作可用于识别特定的同位素。 不同成像器和网络警报的协调使系统能够将非放射性物体与放射性物体分开。