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    • 4. 发明授权
    • Radiographic image capturing apparatus and radiographic image capturing system
    • 射线照相图像拍摄装置和放射线图像拍摄系统
    • US08798236B2
    • 2014-08-05
    • US12929501
    • 2011-01-28
    • Yasunori OhtaNaoyuki NishinoHaruyasu Nakatsugawa
    • Yasunori OhtaNaoyuki NishinoHaruyasu Nakatsugawa
    • H05G1/10H05G1/64
    • H05G1/10A61B6/4494
    • A radiographic image capturing apparatus has a radiation source device including a radiation source, and a detector device including a radiation detector. At least one of the radiation source device and the detector device includes an electric power supply limiting unit for limiting supply of electric power. The electric power supply limiting unit has an activator/deactivator for determining activation or deactivation of supply of electric power between the radiation source device and the detector device, based on a present position of a corresponding one of the radiation source device and the detector device, or based on distance between the radiation source device and the detector device, and an electric power supply activator for enabling supply of electric power between the radiation source device and the detector device, if the activator/deactivator determines activation of supply of electric power between the radiation source device and the detector device.
    • 放射线照相图像捕获装置具有包括辐射源的辐射源装置和包括辐射检测器的检测器装置。 辐射源装置和检测装置中的至少一个包括用于限制电力供应的电源限制单元。 电源限制单元具有激活器/去激活器,用于基于辐射源装置和检测器装置中对应的一个的当前位置来确定在辐射源装置和检测器装置之间的电力供应的激活或去激活, 或者基于辐射源装置和检测器装置之间的距离,以及用于在辐射源装置和检测器装置之间提供电力的电力供应激活器,如果激活器/去激活器确定激光源 辐射源装置和检测装置。
    • 5. 发明授权
    • Radiological image detection apparatus and method of manufacturing the same
    • 放射线图像检测装置及其制造方法
    • US08642967B2
    • 2014-02-04
    • US13402803
    • 2012-02-22
    • Naoto IwakiriHaruyasu Nakatsugawa
    • Naoto IwakiriHaruyasu Nakatsugawa
    • G01T1/20
    • G01T1/202H01L27/14663
    • A method of manufacturing a radiological image detection apparatus having: a scintillator that emits fluorescence upon exposure to radiation; and a photodetecting unit disposed on a radiation entrance side of the scintillator, the method includes: a photodetecting unit production process for layering on a substrate a protective member that exhibits low radiation absorbency than that exhibited by the substrate and forming a thin film portion that detects the fluorescence as an electric signal on the protective member, thereby producing the photodetecting unit; a substrate peel-removal process for peeling and eliminating the substrate from the protective member; and an integration process for integrating the previously-produced scintillator and the photodetecting unit before or after the substrate peel-removal process.
    • 一种制造放射线图像检测装置的方法,具有:闪光体,其在暴露于放射线时发射荧光; 以及设置在所述闪烁体的辐射入射侧的光电检测单元,所述方法包括:光电检测单元的制造方法,其在基板上层叠具有比所述基板所显示的低的辐射吸收性的保护构件,形成检测 作为保护构件上的电信号的荧光,从而产生光检测单元; 用于从保护构件剥离和去除衬底的衬底剥离去除工艺; 以及用于在基板剥离处理之前或之后对先前制造的闪烁体和光电检测单元进行集成的集成处理。
    • 7. 发明授权
    • Radiographic image capturing system
    • 射线照相摄影系统
    • US08532262B2
    • 2013-09-10
    • US12929541
    • 2011-01-31
    • Naoto IwakiriNaoyuki NishinoYasunori OhtaHaruyasu Nakatsugawa
    • Naoto IwakiriNaoyuki NishinoYasunori OhtaHaruyasu Nakatsugawa
    • H05G1/44H05G1/64H01L27/144
    • G01N23/043A61B6/4233A61B6/4405A61B6/4423A61B6/4441A61B6/487A61B6/548A61B6/563
    • A radiographic image capture system includes a radiation detector, a radiation source, a generator, and a controller. The radiation detector includes plural pixels that generate electrical charges upon irradiation with radiation and that accumulate the electrical charges. The radiation source irradiates radiation onto the radiation detector. The generator reads the respective electrical charges accumulated in each of the pixels as electrical signals and generates image data. The controller causes the generator to read the electrical charges accumulated in each of the pixels at a specific frame rate in cases where continuous fluoroscopic imaging is performed, and, in a case in which a specific condition is satisfied, causes the radiation source to reduce the radiation amount being irradiated and causes the generator to perform thinned reading to read out the pixels one section at a time while extending the reading cycle of the electrical charges for each pixel.
    • 射线照相图像捕获系统包括辐射检测器,辐射源,发生器和控制器。 辐射检测器包括在辐射照射时产生电荷并累积电荷的多个像素。 辐射源将辐射照射到辐射检测器上。 发电机将累积在每个像素中的相应电荷作为电信号读取,并生成图像数据。 在执行连续荧光镜成像的情况下,控制器使得发生器以特定帧速率读取在每个像素中积累的电荷,并且在满足特定条件的情况下,使得辐射源减少 辐射量被照射,并且使得发生器执行稀疏读取,以便在延长每个像素的电荷的读取周期的同时一次读出像素。
    • 8. 发明授权
    • Radiation image capturing device, and radiation image capturing system
    • 辐射图像捕获装置和放射线图像捕获系统
    • US08461544B2
    • 2013-06-11
    • US12868755
    • 2010-08-26
    • Naoto IwakiriYasunori OhtaFutoshi YoshidaHaruyasu NakatsugawaNaoyuki Nishino
    • Naoto IwakiriYasunori OhtaFutoshi YoshidaHaruyasu NakatsugawaNaoyuki Nishino
    • G01T1/24
    • G03B42/02G03B42/04
    • A radiation image capturing device has: a radiation image capturing section that is adapted to image capturing in a selected operation mode, an image processing section, a power supply section that supplies electric power for driving to the radiation image capturing section, a connection portion that electrically connects to at least one of a power supply device or an image processing device, and a control section. The control section effects control such that, in a case in which an operation mode that generates a predetermined generated heat amount or more is selected and the power supply device is connected to the connection portion, the power supply device is used instead of the power supply section, and, in a case in which an operation mode that generates a predetermined generated heat amount or more is selected and the image processing device is connected to the connection portion, the image processing device is used instead of the image processing section.
    • 放射线摄像装置具有:适于以所选择的操作模式进行图像拍摄的放射线图像捕获部分,图像处理部分,向辐射图像捕获部分提供用于驱动的​​电力的电源部分,连接部分, 电连接到电源装置或图像处理装置中的至少一个以及控制部。 控制部进行控制,使得在选择产生预定的发生的热量以上的动作模式并且将供电装置连接到连接部的情况下,使用供电装置来代替电源 并且在选择产生预定产生的热量以上的操作模式并且图像处理装置连接到连接部分的情况下,使用图像处理装置来代替图像处理部。
    • 9. 发明授权
    • Portable radiographic image capturing device
    • 便携式放射摄影图像捕获装置
    • US08314396B2
    • 2012-11-20
    • US12890731
    • 2010-09-27
    • Yasunori OhtaNaoyuki NishinoNaoto IwakiriFutoshi YoshidaHaruyasu Nakatsugawa
    • Yasunori OhtaNaoyuki NishinoNaoto IwakiriFutoshi YoshidaHaruyasu Nakatsugawa
    • G01T1/24
    • G03B42/04A61B6/548
    • A portable radiographic image capturing device has: an image capturing unit at which is provided a radiation surface onto which radiation is irradiated at a time of capturing a radiographic image, and that captures a radiographic image expressed by radiation irradiated onto the radiation surface, and that incorporates therein a radiation detector that outputs electric signals expressing a captured radiographic image; and a control unit that is connected to the image capturing unit, and that incorporates therein a controller that controls image capturing operations of the radiation detector, and that can be changed between an expanded state in which the radiation surface is exposed to an exterior and a housed state in which the control unit covers the radiation surface.
    • 便携式放射线照相图像拍摄装置具有:图像拍摄单元,其在拍摄放射线照相图像时提供辐射表面照射辐射的辐射表面,并且捕获由辐射在辐射表面上的辐射表示的放射线图像,并且该图像捕获单元 其中包含一个辐射检测器,其输出表示所捕获的放射照相图像的电信号; 以及控制单元,其连接到所述图像捕获单元,并且其中包括控制器,所述控制器控制所述放射线检测器的图像捕获操作,并且可以在所述辐射表面暴露于外部的扩展状态和 控制单元覆盖辐射表面的收容状态。
    • 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。