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    • 22. 发明授权
    • X-ray computer tomography apparatus
    • X射线计算机断层摄影装置
    • US07486759B2
    • 2009-02-03
    • US11974049
    • 2007-10-11
    • Masakazu SuzukiTakahiro YoshimuraMakoto Honjo
    • Masakazu SuzukiTakahiro YoshimuraMakoto Honjo
    • A61B6/00A61B6/14
    • A61B6/14
    • There is provided a new X-ray imaging apparatus by the use of which X-ray CT and panoramic imaging can be effectively performed. In an X-ray imaging apparatus which rotates an X-ray generating section and an X-ray detecting section around an imaging object arranged between these X-ray generating section and the X-ray detecting section and also detects in the X-ray detecting section X-rays having been radiated from the X-ray generating section and transmitted through the imaging object to form an X-ray image, a panoramic imaging mode in which the X-ray generating section and the X-ray detecting section are driven to form a panoramic image of the imaging object and an offset scan/CT mode in which the X-ray generating section and the X-ray detecting section are driven to form a tomographic image of the imaging object are set, so as to selectively execute these two imaging modes. Consequently, the panoramic imaging mode and the offset scan/CT mode can be arbitrarily selected, thereby allowing formation of an X-ray imaged image that is optimum for treatment.
    • 通过使用可以有效地执行X射线CT和全景成像的新型X射线成像装置。 在将X射线产生部和X射线检测部围绕配置在这些X射线产生部和X射线检测部之间的摄像对象旋转的X射线摄像装置中,在X射线检测 已经从X射线产生部分辐射并透射通过成像对象的X射线截面X射线图像,X射线产生部分和X射线检测部分被驱动到的全景成像模式 形成成像对象的全景图像,并且设置驱动X射线产生部分和X射线检测部分以形成成像对象的断层图像的偏移扫描/ CT模式,以便选择性地执行这些 两种成像模式。 因此,可以任意选择全景成像模式和偏移扫描/ CT模式,从而形成对于治疗最佳的X射线成像图像。
    • 23. 发明申请
    • X-ray computer tomography apparatus
    • X射线计算机断层摄影装置
    • US20080137802A1
    • 2008-06-12
    • US11974049
    • 2007-10-11
    • Masakazu SuzukiTakahiro YoshimuraMakoto Honjo
    • Masakazu SuzukiTakahiro YoshimuraMakoto Honjo
    • A61B6/00
    • A61B6/14
    • There is provided a new X-ray imaging apparatus by the use of which X-ray CT and panoramic imaging can be effectively performed. In an X-ray imaging apparatus which rotates an X-ray generating section and an X-ray detecting section around an imaging object arranged between these X-ray generating section and the X-ray detecting section and also detects in the X-ray detecting section X-rays having been radiated from the X-ray generating section and transmitted through the imaging object to form an X-ray image, a panoramic imaging mode in which the X-ray generating section and the X-ray detecting section are driven to form a panoramic image of the imaging object and an offset scan/CT mode in which the X-ray generating section and the X-ray detecting section are driven to form a tomographic image of the imaging object are set, so as to selectively execute these two imaging modes. Consequently, the panoramic imaging mode and the offset scan/CT mode can be arbitrarily selected, thereby allowing formation of an X-ray imaged image that is optimum for treatment.
    • 通过使用可以有效地执行X射线CT和全景成像的新型X射线成像装置。 在将X射线产生部和X射线检测部围绕配置在这些X射线产生部和X射线检测部之间的摄像对象旋转的X射线摄像装置中,在X射线检测 已经从X射线产生部分辐射并透射通过成像对象的X射线截面X射线图像,X射线产生部分和X射线检测部分被驱动到的全景成像模式 形成成像对象的全景图像,并且设置驱动X射线产生部分和X射线检测部分以形成成像对象的断层图像的偏移扫描/ CT模式,以便选择性地执行这些 两种成像模式。 因此,可以任意选择全景成像模式和偏移扫描/ CT模式,从而形成对于治疗最佳的X射线成像图像。
    • 26. 发明授权
    • Radio base station and radio communication method
    • 无线电基站和无线电通信方式
    • US08818390B2
    • 2014-08-26
    • US12670396
    • 2008-07-23
    • Makoto Honjo
    • Makoto Honjo
    • H04W72/00
    • H04L5/0007G01S5/0205G01S2205/007H04L1/20H04L5/003H04W64/00H04W72/06
    • A radio base station includes: a communication quality detector (183) configured to detect communication quality in a subcarrier; a positional information acquisition unit (182) configured to acquire positional information indicating a position of a radio communication terminal at a time point when the communication quality is detected by the communication quality detector; subcarrier information table storage (185) configured to store a subcarrier information table including a subcarrier number, the communication quality, and the positional information, in association with one another; current positional information acquisition unit (180) configured to acquire current positional information indicating a current position of the radio communication terminal; and allocator (189) configured to allocate the communication channel to the radio communication terminal on the basis of the subcarrier information table and of the current positional information.
    • 无线基站包括:通信质量检测器(183),被配置为检测子载波中的通信质量; 位置信息获取单元,被配置为在所述通信质量检测器检测到所述通信质量的时间点获取指示无线电通信终端的位置的位置信息; 副载波信息表存储部(185),被配置为相互关联地存储包括副载波号,通信质量和位置信息的副载波信息表; 当前位置信息获取单元,被配置为获取表示无线电通信终端的当前位置的当前位置信息; 和分配器(189),被配置为基于子载波信息表和当前位置信息将通信信道分配给无线电通信终端。
    • 29. 发明申请
    • RADIO BASE STATION AND RADIO COMMUNICATION METHOD
    • 无线基站和无线电通信方法
    • US20100267396A1
    • 2010-10-21
    • US12670396
    • 2008-07-23
    • Makoto Honjo
    • Makoto Honjo
    • H04W72/08
    • H04L5/0007G01S5/0205G01S2205/007H04L1/20H04L5/003H04W64/00H04W72/06
    • A radio base station includes: a communication quality detector (183) configured to detect communication quality in a subcarrier; a positional information acquisition unit (182) configured to acquire positional information indicating a position of a radio communication terminal at a time point when the communication quality is detected by the communication quality detector; subcarrier information table storage (185) configured to store a subcarrier information table including a subcarrier number, the communication quality, and the positional information, in association with one another: current positional information acquisition unit (180) configured to acquire current positional information indicating a current position of the radio communication terminal; and allocator (189) configured to allocate the communication channel to the radio communication terminal on the basis of the subcarrier information table and of the current positional information.
    • 无线基站包括:通信质量检测器(183),被配置为检测子载波中的通信质量; 位置信息获取单元,被配置为在通信质量检测器检测到通信质量的时间点获取表示无线电通信终端的位置的位置信息; 副载波信息表存储部(185),被配置为相互关联地存储包括子载波号,通信质量和位置信息的副载波信息表;当前位置信息获取单元,被配置为获取当前位置信息, 无线电通信终端的当前位置; 和分配器(189),被配置为基于子载波信息表和当前位置信息将通信信道分配给无线电通信终端。
    • 30. 发明申请
    • X-ray CT IMAGING APPARATUS
    • X射线CT成像装置
    • US20100246755A1
    • 2010-09-30
    • US12734656
    • 2008-11-14
    • Masakazu SuzukiTakahiro YoshimuraMakoto Honjo
    • Masakazu SuzukiTakahiro YoshimuraMakoto Honjo
    • A61B6/03
    • A61B6/587A61B6/032A61B6/14A61B6/4441
    • In an X-ray CT imaging, an X-ray generator (11) and a two-dimensional X-ray detector (21) are opposed to each other between an object and are rotated by a rotary shaft (32) around the object. At least one of the rotary shaft supporter (61) and an object holder (40) includes a movement mechanism (42, 65) for moving a supporter (30) for the X-ray generator and the X-ray detector relative to the object. In offset scan CT imaging, the rotation of the supporter by the rotary shaft is performed simultaneously with the relative two-dimensional movement of the rotary shaft by the movement mechanism. In the relative two-dimensional movement, the position of the rotary shaft is moved according to the rotary angle of the supporter along a circular orbit around the center of a CT imaging region in a plane crossing the rotary shaft. Thus, it becomes possible to image a larger region of interest of the object.
    • 在X射线CT成像中,X射线发生器(11)和二维X射线检测器(21)在物体之间彼此相对,并且通过旋转轴(32)围绕物体旋转。 旋转轴支撑件(61)和物体保持器(40)中的至少一个包括用于移动用于X射线发生器的支撑件(30)和相对于物体的X射线检测器的移动机构(42,65) 。 在偏移扫描CT成像中,旋转轴的支撑件的旋转与通过移动机构的旋转轴的相对二维运动同时进行。 在相对的二维运动中,旋转轴的位置沿着与旋转轴相交叉的平面中的CT成像区域的中心周围的圆形轨道的支撑体的旋转角度移动。 因此,可以对较大的对象区域进行成像。