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    • 23. 发明申请
    • PATIENT TABLE WITH INTEGRATED X-RAY VOLUMETRIC IMAGER
    • 具有综合X射线体积成像的患者表
    • US20150289828A1
    • 2015-10-15
    • US14682192
    • 2015-04-09
    • L-3 Communications Security and Detection Systems, Inc.
    • Andrew D. FolandMichael H. Schmitt
    • A61B6/00G06T15/08G06T11/00A61B6/04A61B6/10
    • A61B6/4014A61B6/0407A61B6/4233A61B6/4429A61B6/482A61B6/5205
    • Methods and apparatus for integrating a table with at least one X-ray source for medical imaging of patients. The apparatus comprises a table on which a patient may be placed, at least one X-ray source configured to generate X-rays at a plurality of X-ray source locations along a linear direction, wherein the at least one X-ray source is arranged to generate the X-rays such that at least some of the X-rays pass through a portion of the table in addition to passing through a portion of a patient placed on the table, and at least one detector array comprising a plurality of detector elements and arranged to detect the at least some of the X-rays passed through the portion of the patient placed on the table, wherein the at least one detector array comprises detector elements arranged in a two-dimensional configuration. Iterative reconstruction techniques may be used to reconstruct an image from X-ray data detected using the at least one detector.
    • 将表与用于患者的医学成像的至少一个X射线源整合的方法和装置。 所述装置包括可放置患者的台,至少一个X射线源被配置为沿着线性方向在多个X射线源位置处产生X射线,其中所述至少一个X射线源是 布置成产生X射线,使得除了穿过放置在桌子上的患者的一部分之外,至少一些X射线还穿过台的一部分,以及包括多个检测器的至少一个检测器阵列 并且布置成检测穿过放置在桌子上的患者的部分的X射线中的至少一些,其中所述至少一个检测器阵列包括以二维配置布置的检测器元件。 迭代重建技术可以用于使用至少一个检测器检测的X射线数据来重建图像。
    • 27. 发明授权
    • Reducing latency in a detection system
    • 减少检测系统中的延迟
    • US08331675B2
    • 2012-12-11
    • US12184520
    • 2008-08-01
    • Justin KennisonIngo DonaschJames Connelly
    • Justin KennisonIngo DonaschJames Connelly
    • G06K9/00
    • G01V5/0016G06T9/00
    • A first multi-dimensional digital image of a scan region is generated. The scan region is included in a materials-detection apparatus and is configured to receive and move containers through the materials-detection apparatus. A pre-defined background range of values is accessed, the background range of values representing a range of values associated with non-target materials and the background range of values being distinct from values associated with the target materials. A value of a voxel included in the multi-dimensional digital image is compared to the background range of values to determine whether the value of the voxel is within the background range of values. If the value of the voxel is within the background range of values, the voxel is identified as a voxel representing a low-density material. A second multi-dimensional digital image that disregards the identified voxel is generated to compress the first multi-dimensional digital image.
    • 生成扫描区域的第一多维数字图像。 扫描区域包括在材料检测装置中,并且被构造成通过材料检测装置接收和移动容器。 访问值的预定义背景范围,表示与非目标材料相关联的值的范围的值的背景范围以及与目标材料相关联的值的背景范围不同。 将包含在多维数字图像中的体素的值与值的背景范围进行比较,以确定体素的值是否在值的背景范围内。 如果体素的值在值的背景范围内,则体素被识别为表示低密度材料的体素。 生成忽略所识别的体素的第二多维数字图像以压缩第一多维数字图像。