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    • 1. 发明授权
    • Compression and storage of projection data in a rotatable part of a computed tomography system
    • 在计算机断层摄影系统的可旋转部分中压缩和存储投影数据
    • US08151022B2
    • 2012-04-03
    • US12352322
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06F13/12G06F13/38G06K9/36G06K9/46
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A method and apparatus compress projection data and store the compressed projection data in a rotatable part that is mounted for rotation within a stationary part. The data acquisition source, compressor and storage device are connected to the rotatable part. The compressor compresses projection data samples provided by the data acquisition source to form compressed packets. The compressed packets are stored in the storage device, for example one or more solid state drives mounted on the rotatable part. A data access array contains information related to the location of the stored compressed packets. Compressed packets are retrieved and transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed packets to form decompressed samples of the corresponding projection data. This abstract does not limit the scope of the invention as described in the claims.
    • 一种方法和装置压缩投影数据并将压缩的投影数据存储在安装成在静止部分内旋转的可旋转部分中。 数据采集​​源,压缩机和存储设备连接到可旋转部件。 压缩器压缩由数据采集源提供的投影数据样本以形成压缩分组。 压缩的数据包被存储在存储设备中,例如一个或多个安装在可旋转部件上的固态驱动器。 数据访问阵列包含与存储的压缩数据包的位置有关的信息。 压缩的数据包被检索并通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩数据包,形成相应投影数据的解压缩样本。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 2. 发明申请
    • COMPRESSION AND STORAGE OF PROJECTION DATA IN A ROTATABLE PART OF A COMPUTED TOMOGRAPHY SYSTEM
    • 计算机图像系统可旋转部分的投影数据的压缩和存储
    • US20100128998A1
    • 2010-05-27
    • US12352322
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06K9/46
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A method and apparatus compress projection data and store the compressed projection data in a rotatable part that is mounted for rotation within a stationary part. The data acquisition source, compressor and storage device are connected to the rotatable part. The compressor compresses projection data samples provided by the data acquisition source to form compressed packets. The compressed packets are stored in the storage device, for example one or more solid state drives mounted on the rotatable part. A data access array contains information related to the location of the stored compressed packets. Compressed packets are retrieved and transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed packets to form decompressed samples of the corresponding projection data. This abstract does not limit the scope of the invention as described in the claims.
    • 一种方法和装置压缩投影数据并将压缩的投影数据存储在安装成在静止部分内旋转的可旋转部分中。 数据采集​​源,压缩机和存储设备连接到可旋转部件。 压缩器压缩由数据采集源提供的投影数据样本以形成压缩分组。 压缩的数据包被存储在存储设备中,例如一个或多个安装在可旋转部件上的固态驱动器。 数据访问阵列包含与存储的压缩数据包的位置有关的信息。 压缩的数据包被检索并通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩数据包,形成相应投影数据的解压缩样本。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 3. 发明授权
    • Compression and storage of projection data in a computed tomography system
    • 计算机断层摄影系统中投影数据的压缩和存储
    • US08045811B2
    • 2011-10-25
    • US12352116
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06K9/36
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A computed tomography system has a stationary part, a rotatable part mounted for rotation around an object to be examined and an interface between the stationary part and the rotatable part. The rotatable part includes an x-ray source, a sensor array for detecting x-rays passing through the object to produce projection data samples, a compressor that compresses the projection data samples and a storage device that stores the compressed samples. The storage device on the rotatable part can include one or more solid state drives. For image reconstruction, the compressed samples are retrieved from the storage device, transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed samples and provides decompressed samples to the image reconstruction processor. This abstract does not limit the scope of the invention as described in the claims.
    • 计算机断层摄影系统具有静止部分,可旋转部分安装成围绕待检查物体旋转,以及固定部分和可旋转部分之间的界面。 可旋转部分包括X射线源,用于检测通过物体的X射线以产生投影数据样本的传感器阵列,压缩投影数据样本的压缩器和存储压缩样本的存储装置。 可旋转部件上的存储装置可以包括一个或多个固态驱动器。 对于图像重建,从存储设备检索压缩样本,通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩样本,并将解压缩的样本提供给图像重构处理器。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 4. 发明申请
    • COMPRESSION AND STORAGE OF PROJECTION DATA IN A COMPUTED TOMOGRAPHY SYSTEM
    • 计算机图像系统中投影数据的压缩和存储
    • US20100128949A1
    • 2010-05-27
    • US12352116
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06K9/60G06K9/00
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A computed tomography system has a stationary part, a rotatable part mounted for rotation around an object to be examined and an interface between the stationary part and the rotatable part. The rotatable part includes an x-ray source, a sensor array for detecting x-rays passing through the object to produce projection data samples, a compressor that compresses the projection data samples and a storage device that stores the compressed samples. The storage device on the rotatable part can include one or more solid state drives. For image reconstruction, the compressed samples are retrieved from the storage device, transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed samples and provides decompressed samples to the image reconstruction processor. This abstract does not limit the scope of the invention as described in the claims.
    • 计算机断层摄影系统具有静止部分,可旋转部分安装成围绕待检查物体旋转,以及固定部分和可旋转部分之间的界面。 可旋转部分包括X射线源,用于检测通过物体的X射线以产生投影数据样本的传感器阵列,压缩投影数据样本的压缩器和存储压缩样本的存储装置。 可旋转部件上的存储装置可以包括一个或多个固态驱动器。 对于图像重建,从存储设备检索压缩样本,通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩样本,并将解压缩的样本提供给图像重构处理器。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 5. 发明授权
    • Method of and system for classifying objects using local distributions of multi-energy computed tomography images
    • 使用多能计算机断层摄影图像的局部分布对物体进行分类的方法和系统
    • US07801348B2
    • 2010-09-21
    • US11183471
    • 2005-07-18
    • Zhengrong YingRam NaiduSergey SimanovskyMatthew HirschCarl R. Crawford
    • Zhengrong YingRam NaiduSergey SimanovskyMatthew HirschCarl R. Crawford
    • G06K9/00
    • G06K9/00771G01V5/0041G01V5/005
    • A method of and a system for identifying objects using local distribution features from multi-energy CT images are provided. The multi-energy CT images include a CT image, which approximates density measurements of scanned objects, and a Z image, which approximates effective atomic number measurements of scanned objects. The local distribution features are first and second order statistics of the local distributions of the density and atomic number measurements of different portions of a segmented object. The local distributions are the magnitude images of the first order derivative of the CT image and the Z image. Each segmented object is also divided into different portions to provide geometrical information for discrimination. The method comprises preprocessing the CT and Z images, segmenting images into objects, computing local distributions of the CT and Z images, computing local distribution histograms, computing local distribution features from the said local distribution histograms, classifying objects based on the local distribution features.
    • 提供了一种使用多能CT图像的局部分布特征识别物体的方法和系统。 多能CT图像包括近似于扫描对象的密度测量的CT图像和近似有效的扫描对象原子数测量的Z图像。 局部分布特征是分段对象的不同部分的密度和原子序数测量的局部分布的一阶和二阶统计。 局部分布是CT图像和Z图像的一阶导数的幅度图像。 每个分段对象也被分成不同的部分以提供用于辨别的几何信息。 该方法包括预处理CT和Z图像,将图像分割成对象,计算CT和Z图像的局部分布,计算局部分布直方图,从所述局部分布直方图计算局部分布特征,根据局部分布特征对对象进行分类。
    • 9. 发明授权
    • Method of and system for stabilizing high voltage power supply voltages in multi-energy computed tomography
    • 用于在多能计算机断层扫描中稳定高压电源电压的方法和系统
    • US07136451B2
    • 2006-11-14
    • US10958713
    • 2004-10-05
    • Ram NaiduZhengrong YingCarl R. Crawford
    • Ram NaiduZhengrong YingCarl R. Crawford
    • A61B6/03H05G1/32
    • G01V5/0008H05G1/10
    • A method of and a system for stabilizing High Voltage Power Supply (HVPS) DC and AC voltages in multi-energy X-ray computed tomography scanners are provided. The method comprises generating filter ratios, computing DC and AC voltages, and feeding back the computed DC and AC voltages to the commanded voltages. The filtered ratios including an air ratio and a copper ratio are modeled as nonlinear functions of the DC and AC voltages. Computing DC and AC voltages include computing an m-ratio and an n-ratio. The parameters of the nonlinear model comprise an exponent parameter and a set of polynomial coefficients. The parameters are determined by a calibration procedure, which performs scanning at different combination of DC and AC voltages. The optimal parameters are obtained through a nonlinear least square minimization, which is solved through a brute force search over the exponent parameter and a closed form solution of the polynomial coefficients. Feeding back the computed DC and AC voltages include comparing the computed voltages with commanded voltages, integrating the difference between the computed voltages and commanded voltages, and adding the integrated voltage differences to the commanded voltages.
    • 提供了一种用于在多能X射线计算机断层扫描仪中稳定高压电源(HVPS)直流和交流电压的方法和系统。 该方法包括产生滤波比,计算直流和交流电压,以及将计算的直流和交流电压反馈到指令电压。 包括空气比和铜比的滤波比被建模为DC和AC电压的非线性函数。 计算直流和交流电压包括计算m比和n比。 非线性模型的参数包括指数参数和一组多项式系数。 这些参数由校准程序确定,校准程序以不同的直流和交流电压组合进行扫描。 通过非线性最小二乘法最小化获得最优参数,通过对指数参数的强力搜索和多项式系数的闭合形式解决求解。 反馈计算的直流和交流电压包括将计算出的电压与指令电压进行比较,积分计算电压和指令电压之间的差,并将积分电压差加到指令电压上。
    • 10. 发明授权
    • Computed tomography scanning apparatus and method using adaptive reconstruction window
    • 计算机断层扫描装置和方法使用自适应重建窗口
    • US06256404B1
    • 2001-07-03
    • US08949127
    • 1997-10-10
    • Bernard M. GordonEric M. BaileyDavid A. SchaferChristopher C. RuthCarl R. Crawford
    • Bernard M. GordonEric M. BaileyDavid A. SchaferChristopher C. RuthCarl R. Crawford
    • G06K900
    • G01V5/005
    • A method and apparatus for performing CT scans of baggage being carried or loaded onto commercial aircraft are described. The CT baggage scanner of the invention includes numerous features which provide the system with high baggage throughput on the order of seven hundred bags per hour as well as improved image quality and accurate target detection. In one aspect, the scanner includes an adaptive image reconstruction window which identifies data collected from the field of view that are not related to the baggage being scanned. These unrelated data are excluded from the image reconstruction process, resulting in greatly reduced reconstruction time and increased baggage throughput. The invention also includes the capability of performing calibration “air scans” with objects such as the system conveyor in the field of view. Data gathered during the calibration scan are applied to a threshold, and data exceeding the threshold are assumed to be from X-rays that are unobstructed by objects in the field of view and are therefore used to perform the air calibration. The baggage scanner can also analyze scan data to identify shapes of objects, particularly, objects formed in the shape of a sheet. This greatly improves the ability of the system to detect sheet explosives. The system also compensates for detector dark currents and provides dark current offsets which can be dependent upon detector temperature.
    • 描述了用于对携带或加载到商用飞机上的行李进行CT扫描的方法和装置。 本发明的CT行李扫描器包括许多特征,为系统提供每小时七百袋的高行李吞吐量,以及改进的图像质量和精确的目标检测。 在一个方面,扫描器包括自适应图像重建窗口,其识别从视场收集的与正在扫描的行李无关的数据。 这些不相关的数据从图像重建过程中排除,从而大大减少了重建时间和增加了行李吞吐量。 本发明还包括在视场中执行诸如系统输送机之类的物体的校准“空气扫描”的能力。 在校准扫描期间收集的数据被应用于阈值,并且超过阈值的数据被假设为来自视场中的物体不受阻挡的X射线,因此用于执行空气校准。 行李扫描器还可以分析扫描数据以识别物体的形状,特别是形成为片状形状的物体。 这大大提高了系统检测片状炸药的能力。 该系统还补偿检测器暗电流,并提供暗电流偏移,这取决于检测器温度。