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    • 1. 发明授权
    • X-ray CT apparatus
    • X射线CT装置
    • US07269242B2
    • 2007-09-11
    • US10498063
    • 2002-12-09
    • Kazuhiro TanakaAtsushi HibinoKuniyoshi OkabeMasahiro Kanou
    • Kazuhiro TanakaAtsushi HibinoKuniyoshi OkabeMasahiro Kanou
    • G21K1/02
    • A61B6/4441A61B6/0478A61B6/06A61B6/14A61B6/469
    • An X-ray CT apparatus is capable of obtaining an image of arbitrary size for an arbitrary part of an object to be examined. The X-ray CT apparatus prepares two-dimensional data and three-dimensional data from a plurality of X-ray information obtained by driving an X-ray tube and an X-ray information detector through one rotation around a patient in a range between a lower jaw and the eyes of the patient, and it displays a tomographic image based thereon on a display unit. A rotational mechanism is fitted to a support, a U-shaped arm is mounted on the support with the X-ray tube and the X-ray information inputting means facing each other and fitted, and the image of an arbitrary size of an arbitrary part of the patient is collected and displayed as the patient is supported in a chair which is capable of being electrically-driven in the vertical direction.
    • X射线CT装置能够获得待检查对象的任意部分的任意大小的图像。 X射线CT装置从通过在患者身体周围旋转一周旋转X射线管和X射线信息检测器而获得的多个X射线信息中准备二维数据和三维数据, 下颌和患者的眼睛,并且其在显示单元上基于其显示断层图像。 旋转机构安装在支撑体上,U形臂与X射线管和X射线信息输入装置相互面对并安装在支撑体上,任意尺寸的任意部分的图像 当患者被支撑在能够在垂直方向上被电驱动的椅子时收集和显示患者。
    • 2. 发明授权
    • Mobile X-ray apparatus
    • 移动式X光装置
    • US08804908B2
    • 2014-08-12
    • US13977812
    • 2012-01-10
    • Atsushi HibinoToshikazu KitaTetsuji Sairaiji
    • Atsushi HibinoToshikazu KitaTetsuji Sairaiji
    • H05G1/64A61B6/00
    • A61B6/587A61B6/4405A61B6/4441A61B6/4452A61B6/548
    • A mobile X-ray apparatus is provided with an X-ray source, an X-ray planar detector being arranged in such a manner as opposed to the X-ray source, a support (C-shaped arm) for linking and supporting the X-ray source and the X-ray planar detector, an angle input part for inputting a rotation angle at which the X-ray planar detector is rotated within a plane including the X-ray incidence plane, a rotation controller and a rotation mechanism for rotating the X-ray planar detector according to the rotation angle being inputted, an image generator for generating an image of the test subject based on the transmitted X-rays being detected, displays for displaying the image, and an image rotor for subjecting the image being displayed on the displays to a rotation process according to an amount of the rotation of the X-ray planar detector.
    • 移动X射线装置设置有X射线源,与X射线源相对的方式配置的X射线平面检测器,用于连接并支撑X的支撑体(C形臂) 射线源和X射线平面检测器,用于输入X射线平面检测器在包括X射线入射平面的平面内旋转的旋转角度的角度输入部,旋转控制器和用于旋转的旋转机构 根据输入的旋转角度的X射线平面检测器,用于基于被检测的透射X射线产生被检测者的图像的图像生成器,用于显示图像的显示,以及用于使图像经受图像的图像转子 根据X射线平面检测器的旋转量显示在显示器上的旋转处理。
    • 3. 发明申请
    • MOBILE X-RAY APPARATUS
    • 移动X射线设备
    • US20130287171A1
    • 2013-10-31
    • US13977812
    • 2012-01-10
    • Atsushi HibinoToshikazu KitaTetsuji Sairaiji
    • Atsushi HibinoToshikazu KitaTetsuji Sairaiji
    • A61B6/00
    • A61B6/587A61B6/4405A61B6/4441A61B6/4452A61B6/548
    • A mobile X-ray apparatus is provided with an X-ray source, an X-ray planar detector being arranged in such a manner as opposed to the X-ray source, a support (C-shaped arm) for linking and supporting the X-ray source and the X-ray planar detector, an angle input part for inputting a rotation angle at which the X-ray planar detector is rotated within a plane including the X-ray incidence plane, a rotation controller and a rotation mechanism for rotating the X-ray planar detector according to the rotation angle being inputted, an image generator for generating an image of the test subject based on the transmitted X-rays being detected, displays for displaying the image, and an image rotor for subjecting the image being displayed on the displays to a rotation process according to an amount of the rotation of the X-ray planar detector.
    • 移动X射线装置设置有X射线源,与X射线源相对的方式配置的X射线平面检测器,用于连接并支撑X的支撑体(C形臂) 射线源和X射线平面检测器,用于输入X射线平面检测器在包括X射线入射平面的平面内旋转的旋转角度的角度输入部,旋转控制器和用于旋转的旋转机构 根据输入的旋转角度的X射线平面检测器,用于基于被检测的透射X射线产生被检测者的图像的图像生成器,用于显示图像的显示,以及用于使图像经受图像的图像转子 根据X射线平面检测器的旋转量显示在显示器上的旋转处理。
    • 5. 发明授权
    • X-ray fluoroscope table and X-ray fluoroscope system
    • X光透视镜和X光荧光镜系统
    • US08052325B2
    • 2011-11-08
    • US12517824
    • 2007-11-27
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • G01N23/223
    • A61B6/4441A61B6/04A61B6/0457A61B6/50A61B6/548A61B6/587
    • An X-ray fluoroscope table and an X-ray fluoroscope system using this fluoroscope table with simple structure and easily ensuring an area where a person stands near the top board.An X-ray fluoroscope table (1) comprises a stand unit (10), a support arm unit (20), a support frame (30), a top board (40), an X-ray generator (60), a column unit (50), and an X-ray detector (FPD 70).The end of the column unit (50) on the support frame side (30) and the end on the X-ray generator (60) side are displaced from each other in the length direction of the support frame (30).With this constitution, the area where an operator (OP3) stands can be ensured near the column unit (50).An X-ray fluoroscope system is constituted of this fluoroscope table (1), a high-voltage generator for supplying electric power to the fluoroscope table (1), and a remote control console for integrally controlling them.
    • 使用这种荧光镜的X射线透视镜和X射线荧光镜系统,结构简单,容易确保人们靠近顶板的位置。 X射线透视台(1)包括支架单元(10),支撑臂单元(20),支撑框架(30),顶板(40),X射线发生器(60),柱 单元(50)和X射线检测器(FPD 70)。 支撑框架侧(30)上的列单元(50)的端部和X射线发生器(60)侧的端部在支撑框架(30)的长度方向上彼此偏移。 利用这种构造,可以在列单元(50)附近确保操作者(OP3)站立的区域。 X射线荧光镜系统由这种荧光透镜台(1),用于向荧光透镜台(1)供电的高压发生器和用于一体地控制它们的遥控台构成。
    • 6. 发明申请
    • Method of producing aluminum alloy sheet for lithographic printing plate
    • 平版印刷版铝合金板的制造方法
    • US20080289731A1
    • 2008-11-27
    • US12152145
    • 2008-05-13
    • Akio UesugiAtsushi MatsuuraAtsushi HibinoHiroshi Ougi
    • Akio UesugiAtsushi MatsuuraAtsushi HibinoHiroshi Ougi
    • C22F1/04
    • C22C21/06B21B2003/001C22C21/00
    • A method of producing an aluminum alloy sheet for a lithographic printing plate includes homogenizing an ingot of an aluminum alloy at 500 to 610° C. for one hour or more, the aluminum alloy containing 0.05 to 1.5% of Mg, 0.1 to 0.7% of Fe, 0.03 to 0.15% of Si, 0.0001 to 0.10% of Cu, and 0.0001 to 0.1% of Ti, with the balance being aluminum and unavoidable impurities, subjecting the homogenized product to rough hot rolling, a start temperature of the rough hot rolling being 430 to 500° C. and a finish temperature of the rough hot rolling being 400° C. or more, holding the product subjected to the rough hot rolling for 60 to 300 seconds after completion of the rough hot rolling to recrystallize the surface of the product, subjecting the resulting product to finish hot rolling that is finished at 320 to 370° C., and winding up the resulting product in the shape of a coil to obtain a hot-rolled product having a surface with an average recrystallized grain size in a direction perpendicular to a rolling direction of 50 μm or less. The aluminum alloy may contain 2 to 30 ppm of Pb.
    • 制造平版印刷版铝合金板的方法包括在500〜610℃下均匀化铝合金锭1小时以上,含有0.05〜1.5%的Mg的铝合金,0.1〜0.7%的Mg Fe,0.03〜0.15%的Si,0.0001〜0.10%的Cu和0.0001〜0.1%的Ti,余量为铝和不可避免的杂质,对均质化物进行粗加热,粗轧的开始温度 为430〜500℃,粗加热后的终轧温度为400℃以上,在粗加工热轧结束后,使粗轧后的产品保持60〜300秒,使表面再结晶 该产品对所得产品进行在320-370℃下精加工的热轧,并将所得产品卷绕成线圈形状,得到具有平均再结晶晶粒度的表面的热轧产品 在一个方向上 滚动方向为50mum以下。 铝合金可含有2〜30ppm的Pb。
    • 10. 发明申请
    • X-RAY FLUOROSCOPE TABLE AND X-RAY FLUOROSCOPE SYSTEM
    • X射线荧光表和X射线荧光光谱系统
    • US20100296626A1
    • 2010-11-25
    • US12517824
    • 2007-11-27
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • Atsushi HibinoTetsuji SairaijiAkio Hara
    • G01N23/223A61B6/04
    • A61B6/4441A61B6/04A61B6/0457A61B6/50A61B6/548A61B6/587
    • An X-ray fluoroscope table and an X-ray fluoroscope system using this fluoroscope table with simple structure and easily ensuring an area where a person stands near the top board.An X-ray fluoroscope table (1) comprises a stand unit (10), a support arm unit (20), a support frame (30), a top board (40), an X-ray generator (60), a column unit (50), and an X-ray detector (FPD 70).The end of the column unit (50) on the support frame side (30) and the end on the X-ray generator (60) side are displaced from each other in the length direction of the support frame (30).With this constitution, the area where an operator (OP3) stands can be ensured near the column unit (50).An X-ray fluoroscope system is constituted of this fluoroscope table (1), a high-voltage generator for supplying electric power to the fluoroscope table (1), and a remote control console for integrally controlling them.
    • 使用这种荧光镜的X射线透视镜和X射线荧光镜系统,结构简单,容易确保人们靠近顶板的位置。 X射线透视台(1)包括支架单元(10),支撑臂单元(20),支撑框架(30),顶板(40),X射线发生器(60),柱 单元(50)和X射线检测器(FPD 70)。 支撑框架侧(30)上的列单元(50)的端部和X射线发生器(60)侧的端部在支撑框架(30)的长度方向上彼此偏移。 利用这种构造,可以在列单元(50)附近确保操作者(OP3)站立的区域。 X射线荧光镜系统由这种荧光透镜台(1),用于向荧光透镜台(1)供电的高压发生器和用于一体地控制它们的遥控台构成。