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    • 1. 发明授权
    • Radiography system and radiation source controller
    • 射线照相系统和辐射源控制器
    • US09351699B2
    • 2016-05-31
    • US13561919
    • 2012-07-30
    • Takeshi KuwabaraTakeshi KamiyaYusuke KitagawaTakashi Tajima
    • Takeshi KuwabaraTakeshi KamiyaYusuke KitagawaTakashi Tajima
    • H05G1/44G01N23/04A61B6/00H04N5/32H04N5/235
    • A61B6/542H04N5/2351H04N5/32H05G1/44
    • A source controller unit for controlling an x-ray source is provided with a detection signal interface for receiving detection signals from detective pixels of an electronic cassette or an integrated value of the detection signals only, or an interface for receiving a radiation stopping signal only. The source controller unit receives other radiation signals than the radiation stopping signal, such as a radiation admitting signal, through a radiation signal interface. The source controller unit uses the detection signals, the integrated value thereof, or the radiation stopping signal as exposure control signals for stopping radiation from the x-ray source. Since the exposure control signals are received on the specific interface therefor, the source controller unit does not need signal sorting operation nor receive different kinds of signals at the same time, improving the speed of radiation stopping procedure.
    • 用于控制X射线源的源控制器单元设置有用于接收来自电子盒的检测像素的检测信号或仅检测信号的积分值的检测信号接口,或仅用于接收辐射停止信号的接口。 源极控制器单元通过辐射信号接口接收比放射线停止信号(例如辐射允许信号)的其它辐射信号。 源控制器单元使用检测信号,其积分值或辐射停止信号作为用于停止来自x射线源的辐射的曝光控制信号。 由于在特定接口上接收到曝光控制信号,源控制器单元不需要信号分类操作,也不会同时接收不同种类的信号,从而提高了辐射停止过程的速度。
    • 3. 发明授权
    • Radiographic system, automatic exposure control method of radiographic system, and radiological image detector
    • 射线照相系统,射线照相系统的自动曝光控制方法和放射图像检测器
    • US09060738B2
    • 2015-06-23
    • US13603099
    • 2012-09-04
    • Takeshi KuwabaraTakeshi KamiyaYusuke Kitagawa
    • Takeshi KuwabaraTakeshi KamiyaYusuke Kitagawa
    • A61B6/06A61B6/00
    • A61B6/542A61B6/4233A61B6/4494A61B6/548
    • A storage and search unit of a console acquires a source ID of an X-ray source and searches for and extracts a type corresponding to the acquired source ID from source information of a storage device. In the case of an installation convenience preference type in which convenience in connection between a source controller and an electronic cassette is preferred, a detection signal from a detection pixel of an FPD of the electronic cassette is output from a detection signal I/F of the electronic cassette to a detection signal I/F of the source controller. In the case of an installation convenience non-preference type, an irradiation stop signal based on the comparison result of the integrated value of the detection signal from the detection pixel with an irradiation-stop threshold is output from an irradiation signal I/F of the electronic cassette to an irradiation signal I/F of the source controller.
    • 控制台的存储和搜索单元获取X射线源的源ID,并从存储设备的源信息中搜索并提取与获取的源ID相对应的类型。 在优选类似于源控制器和电子盒之间的连接方便的安装方式优先选择的情况下,来自电子盒的FPD的检测像素的检测信号从该电子盒的检测信号I / F输出 电子盒带到源控制器的检测信号I / F。 在安装方便非偏好型的情况下,基于来自具有照射停止阈值的检测像素的检测信号的积分值的比较结果的照射停止信号从照相停止阈值的照射信号I / F输出 电子盒带到源控制器的照射信号I / F。
    • 6. 发明授权
    • Radiographic imaging device and communication mode setting device
    • 射线成像设备和通讯模式设定装置
    • US08855691B2
    • 2014-10-07
    • US13347332
    • 2012-01-10
    • Takeshi KamiyaYusuke Kitagawa
    • Takeshi KamiyaYusuke Kitagawa
    • G05B19/18G05B23/00A61B6/00
    • A61B6/4283A61B6/4233A61B6/4291A61B6/4411A61B6/4423A61B6/4494A61B6/548A61B6/566
    • A radiographic imaging device has: a generating unit that generates image data expressing a radiographic image formed by irradiated radiation; a first communicating unit at which wireless communication is possible selectively in either of a direct communication mode or an indirect communication mode; a storing unit that stores a setting of a communication mode; and a control unit that, if a setting to carry out communication in the direct communication mode has been made, controls the first communicating unit to carry out wireless communication in the direct communication mode, and, if a setting to carry out communication in the indirect communication mode has been made, controls the first communicating unit to attempt wireless communication in the indirect communication mode with a control device that controls the radiographic imaging device, and, if communication is impossible, controls the first communicating unit to carry out wireless communication in the direct communication mode.
    • 射线照相成像装置具有:生成单元,其生成表示由照射的辐射形成的射线照相图像的图像数据; 第一通信单元,可以在直接通信模式或间接通信模式中选择性地进行无线通信; 存储单元,存储通信模式的设置; 以及控制单元,如果已经进行了以直接通信模式进行通信的设置,则控制第一通信单元以直接通信模式进行无线通信,并且如果进行间接通信的设置 进行通信模式,控制第一通信单元以控制放射线照相成像装置的控制装置进行间接通信模式的无线通信,并且如果不能进行通信,则控制第一通信单元进行无线通信 直接通信模式。
    • 7. 发明申请
    • Diagnostic device system
    • 诊断设备系统
    • US20110291610A1
    • 2011-12-01
    • US13067362
    • 2011-05-26
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • H02J7/00
    • A61B6/56A61B6/44
    • A diagnostic device system has a weight-reduced rechargeable battery. When a portable radiographic apparatus and a portable X-ray source are carried to and used for imaging at a private home or a care home, the portable radiographic apparatus and the portable X-ray source are loaded on an automobile. When the charge amount of rechargeable batteries for operation housed in the portable radiographic apparatus or the portable X-ray source loaded on the automobile is low, or when there are plural destinations and the charge amount of the rechargeable batteries becomes low, a rechargeable battery for charging mounted on the automobile is used to charge the rechargeable batteries for operation while traveling. Because the rechargeable batteries for operation are charged while traveling, a large number of rechargeable batteries for operation does not need to be charged in advance, whereby the weight of the rechargeable batteries for operation can be reduced.
    • 诊断装置系统具有减重充电电池。 当便携式放射线照相设备和便携式X射线源被携带到私人住宅或照料室进行成像并且用于便携式X射线照相设备和便携式X射线源时,将便携式放射照相设备和便携式X射线源装载在汽车上。 当容纳在便携式放射线照相设备中的操作的可充电电池的充电量或装载在汽车上的便携式X射线源的电量低时,或者当存在多个目的地并且充电电池的充电量变低时,可充电电池 汽车上的充电用于对可充电电池进行充电以在行驶时进行操作。 由于用于操作的可再充电电池在行驶时被充电,所以大量用于操作的可再充电电池不需要事先充电,从而可以减少用于操作的可再充电电池的重量。
    • 8. 发明授权
    • Diagnostic device system
    • 诊断设备系统
    • US08787528B2
    • 2014-07-22
    • US13067362
    • 2011-05-26
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • H05G1/06H05G1/10H05G1/64H01L27/146
    • A61B6/56A61B6/44
    • A diagnostic device system has a weight-reduced rechargeable battery. When a portable radiographic apparatus and a portable X-ray source are carried to and used for imaging at a private home or a care home, the portable radiographic apparatus and the portable X-ray source are loaded on an automobile. When the charge amount of rechargeable batteries for operation housed in the portable radiographic apparatus or the portable X-ray source loaded on the automobile is low, or when there are plural destinations and the charge amount of the rechargeable batteries becomes low, a rechargeable battery for charging mounted on the automobile is used to charge the rechargeable batteries for operation while traveling. Because the rechargeable batteries for operation are charged while traveling, a large number of rechargeable batteries for operation does not need to be charged in advance, whereby the weight of the rechargeable batteries for operation can be reduced.
    • 诊断装置系统具有减重充电电池。 当便携式放射线照相设备和便携式X射线源被携带到私人住宅或照料室进行成像并且用于便携式X射线照相设备和便携式X射线源时,将便携式放射照相设备和便携式X射线源装载在汽车上。 当容纳在便携式放射线照相设备中的操作的可充电电池的充电量或装载在汽车上的便携式X射线源的电量低时,或者当存在多个目的地并且充电电池的充电量变低时,可充电电池 汽车上的充电用于对可充电电池进行充电以在行驶时进行操作。 由于用于操作的可再充电电池在行驶时被充电,所以大量用于操作的可再充电电池不需要事先充电,从而可以减少用于操作的可再充电电池的重量。
    • 10. 发明申请
    • Portable radiographic apparatus system
    • 便携式射线照相设备系统
    • US20110293070A1
    • 2011-12-01
    • US13067361
    • 2011-05-26
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • Takeshi KamiyaYusuke KitagawaYasunori OhtaHaruyasu Nakatsugawa
    • H05G1/10
    • A61B6/4405A61B6/4283A61B6/4411A61B6/4452A61B6/56H05G1/10
    • A portable radiographic apparatus system reduces the number of types of spare rechargeable battery. A first rechargeable battery for operation of a portable radiographic apparatus has the same shape and characteristics as a second rechargeable battery for operation of a portable X-ray source. The first rechargeable battery and the second rechargeable battery are interchangeable. When, in order capture images during a visit to an individual's home or a visit to a nursing facility, the portable radiographic apparatus and the portable X-ray source are taken to the visit destination, spare rechargeable batteries must be taken in case of trouble with the rechargeable batteries. Because the first rechargeable battery and the second rechargeable battery are interchangeable, by bringing either the first rechargeable battery or the second rechargeable battery, trouble can be addressed if it arises. In this way, the number of types of spare rechargeable battery can be reduced.
    • 便携式放射照相设备系统减少备用可再充电电池的类型数量。 用于便携式放射线照相设备的操作的第一可充电电池具有与用于便携式X射线源的操作的第二可再充电电池相同的形状和特性。 第一个可充电电池和第二个可充电电池是可互换的。 当为了在访问个人的家中或者访问护理设施期间拍摄图像时,便携式放射线照相设备和便携式X射线源被带到访问目的地,在遇到麻烦的情况下必须使用备用可再充电电池 可充电电池。 因为第一个可再充电电池和第二个可再充电电池是可互换的,所以通过使第一个可再充电电池或第二个可再充电电池发生故障,可以解决问题。 以这种方式,可以减少备用可再充电电池的类型数量。