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    • 71. 发明申请
    • SYSTEMS AND METHODS FOR PROCESSING DATA
    • 用于处理数据的系统和方法
    • WO2005029248A2
    • 2005-03-31
    • PCT/US2004/030157
    • 2004-09-15
    • VARIAN MEDICAL SYSTEMS TECHNOLOGIES, INC.MORF, Daniel
    • MORF, Daniel
    • G06F
    • A61B6/032A61B6/482A61B6/488A61N5/1048A61N2005/1074Y10S378/901
    • A method for processing data in a radiation procedure includes obtaining operation data, and formatting the operation data into a set of image data, wherein the operation data comprises one or a combination of a gantry angle, a patient position, a patient orientation, radiation dose rate, radiation dose fraction, beam pulse rate, beam energy, time when beam was activated, time when beam was deactivated, and beam variation (if any) during an image readout. Also machine axis information, machine status info and operation data from other systems like for instance the RPM system may be included. A method of processing data in a radiation procedure includes obtaining operation data, obtaining an image data, and combining the operation data with the image data in substantially real time.
    • 一种用于在辐射程序中处理数据的方法包括获取操作数据,并将操作数据格式化成一组图像数据,其中操作数据包括机架角度,患者位置,患者方位,辐射剂量 速率,辐射剂量分数,光束脉冲速率,光束能量,光束激活时间,光束停用时间,以及图像读出期间的光束变化(如果有的话)。 此外,还可以包括机器轴信息,机器状态信息和来自其他系统的操作数据,例如RPM系统。 一种在辐射程序中处理数据的方法包括获取操作数据,获得图像数据,以及基本上实时地将操作数据与图像数据组合。
    • 72. 发明申请
    • VEHICLE MOUNTED INSPECTION SYSTEMS AND METHODS
    • 车辆安装检查系统和方法
    • WO2004111625A1
    • 2004-12-23
    • PCT/US2004/017532
    • 2004-06-03
    • VARIAN MEDICAL SYSTEMS TECHNOLOGIES, INC.JOHNSON, James, H.BJORKHOLM, Paul
    • JOHNSON, James, H.BJORKHOLM, Paul
    • G01N23/04
    • G01V5/0016G01N23/04
    • Radiation scanning systems to inspect objects are disclosed comprising a first vehicle supporting a radiation source. A second vehicle supports a detector. The source and the detector may be moved to scan an object, such as a cargo conveyance, between the vehicles. The first and second vehicles may having an expandable length and the source and detector may be moved across the expandable length, to scan long objects. The radiation source may be adapted to emit a vertically diverging beam of radiation, such as a fan beam. The radiation may be X-ray radiation, for example. The vehicle may comprise a truck and an expandable trailer releasably coupled to the truck. The trailer may comprise telescoping rails. The first and second vehicles may be driven to an inspection site, where they may be rapidly deployed. Methods of inspecting objects are disclosed, as well.
    • 公开了用于检查物体的辐射扫描系统,其包括支撑辐射源的第一车辆。 第二车辆支持检测器。 源和检测器可以被移动以在车辆之间扫描诸如货物运输工具之类的物体。 第一和第二车辆可以具有可扩展的长度,并且源和检测器可以在可扩展的长度上移动,以扫描长的物体。 辐射源可以适于发射垂直发散的辐射束,例如扇形光束。 辐射可以是例如X射线辐射。 车辆可以包括卡车和可释放地联接到卡车的可膨胀拖车。 拖车可以包括伸缩轨道。 第一和第二车辆可以被驱动到检查现场,在那里它们可以被快速部署。 还公开了检查对象的方法。
    • 73. 发明申请
    • IMAGING APPARATUS AND METHOD WITH EVENT SENSITIVE PHOTON DETECTION
    • 成像装置和方法与事件敏感性光子检测
    • WO2004038365A2
    • 2004-05-06
    • PCT/US2003/031501
    • 2003-10-03
    • VARIAN MEDICAL SYSTEMS TECHNOLOGIES, INC.
    • SEPPI, Edward, J.
    • G01N
    • G01V5/005A61B6/037A61B6/4258G01T1/2985G01V5/0069
    • An imaging apparatus (10) includes a photon detector (20) and an accessing circuit (44) coupled thereto. The photon detector (20) detects photons and generates signals in response thereto. The accessing circuit (44) reads out the signals from the photon detector (20) at a sufficiently high rate so that it operates in an event sensitive mode. The apparatus (10) also includes a signal processing mdoule (15) for process the signals and generating data regarding the images of the object. In accordance with various embodiments of the present invention, the signal processing module (15) may include a spatial resolution circuit (56), a photon energy resolution circuit (57), a temporal resolution circuit (58), or any combination thereof.
    • 成像装置(10)包括光子检测器(20)和与其耦合的存取电路(44)。 光子检测器(20)检测光子并响应于此产生信号。 访问电路(44)以足够高的速率读出来自光子检测器(20)的信号,使其在事件敏感模式下操作。 装置(10)还包括用于处理信号并产生关于对象的图像的数据的信号处理mdoule(15)。 根据本发明的各种实施例,信号处理模块(15)可以包括空间分辨率电路(56),光子能量分辨率电路(57),时间分辨率电路(58)或其任何组合。
    • 76. 发明申请
    • REMOTE BLADDER VENTING AND CONTAINMENT SYSTEM
    • 远程叶片曝气和容纳系统
    • WO2007127939A2
    • 2007-11-08
    • PCT/US2007/067669
    • 2007-04-27
    • VARIAN MEDICAL SYSTEMS TECHNOLOGIES, INC.HANSEN, Wayne, RollinsSMITH, Ricky
    • HANSEN, Wayne, RollinsSMITH, Ricky
    • H01J35/12H01J35/10
    • H01J35/16H01J2235/1216H01J2235/1291H05G1/02H05G1/025
    • A system for remotely venting an expansion bladder employed in a liquid-filled container, such as an outer housing of an x-ray tube. The remote venting configuration provides the expansion bladder with access to atmospheric pressure existing about the x- ray tube so as to enable it to compensate for pressure changes within the liquid-filled container that occur as a result of liquid heating. Further, the remote nature of the bladder venting system enables the expansion bladder to be positioned within a portion of the outer housing that is radiation shielded, while the remote venting portion of the system is positioned in an unshielded portion of the housing. This eliminates the need to perforate the radiation shielding of the outer housing in order to provide atmospheric pressure to the bladder. Further, the remote vent is semi-permeable so as to prevent liquid escape from the system in the event of bladder rupture.
    • 一种用于远程排放在液体填充容器中使用的膨胀囊的系统,例如x射线管的外壳。 远程排气构造使得扩张囊能够接近存在于x射线管周围的大气压力,以使其能够补偿由于液体加热而发生的充满液体的容器内的压力变化。 此外,气囊排气系统的远程特性使得膨胀气囊能够定位在外壳体的被辐射屏蔽的部分内,而系统的远程排气部分位于壳体的非屏蔽部分中。 这消除了对外壳的辐射屏蔽穿孔的需要,以便为气囊提供大气压力。 此外,远程排气口是半渗透的,以便在膀胱破裂的情况下防止液体从系统逸出。