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    • 1. 发明专利
    • Target unit, electromagnetic wave generating device, and method therefor
    • 目标单元,电磁波发生装置及其方法
    • JP2008298492A
    • 2008-12-11
    • JP2007142743
    • 2007-05-30
    • Photon Production Laboratory LtdHiroshige Yamada山田廣成株式会社光子発生技術研究所
    • YAMADA HIROSHIGETOYOSUGI NORIO
    • G21K5/08H05G2/00H05H13/04
    • PROBLEM TO BE SOLVED: To provide a target unit, an electromagnetic wave generating device, and a method therefor, capable of acquiring an X-ray or EUV light having the same intensity as that of the theoretical value or an intensity similar thereto, and which is radiated in a conical form.
      SOLUTION: This target unit generating transition radiation or parametric radiation, by being irradiated with an electron beam having a curved orbit is equipped with a planar target T, having a material that tends to generate transition radiation or parametric radiation by the interaction with the electron beam, and a first holding part M1 and a second holding part M2 for holding respectively both ends of the target T. At least either the first holding part M1 or the second holding part M2 generates a second magnetic field H1 that cancels a first magnetic field H for forming a curved orbit in a region A which is to be irradiated with the electron beam in the target T.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供能够获取具有与理论值相同的强度的X射线或EUV光的目标单元,电磁波产生装置及其方法,或与其类似的强度 ,并以锥形的形式辐射。 解决方案:通过用具有弯曲轨道的电子束照射产生过渡辐射或参数辐射的目标单元配备有平面靶T,其具有倾向于通过与...的相互作用产生过渡辐射或参数辐射的材料 电子束,以及分别保持目标T的两端的第一保持部M1和第二保持部M2。第一保持部M1或第二保持部M2中的至少一个产生第二磁场H1,该第二磁场H1抵消 磁场H用于在要被靶T中的电子束照射的区域A中形成弯曲轨道。版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Monochromatic x-ray generation device and its method
    • 单色X射线发生装置及其方法
    • JP2008098010A
    • 2008-04-24
    • JP2006279199
    • 2006-10-12
    • Photon Production Laboratory LtdHiroshige Yamada山田廣成株式会社光子発生技術研究所
    • YAMADA HIROSHIGE
    • H05G2/00G21K5/08
    • PROBLEM TO BE SOLVED: To provide a monochromatic X-ray generation device and its method, which generates large-strength monochromatic X rays and changes wavelengths of the monochromatic X rays generated with the use of low-energy relativistic electron beams.
      SOLUTION: The monochromatic X-ray generation device is provided with: a radiator (R1) generating X rays with electron beams (7) incident; and a crystalline body (C1) diffracting X rays generated from the radiator (R1). The radiator (R1), different from the crystalline body (C1), is formed of a matter with a high generation efficiency of X rays of a given wavelength, the radiator (R1) and the crystalline body (C1) are arranged in adjacency to each other, so that the X rays are outputted in two directions (Xr, Xt) by the crystalline body (C1) to be taken out of a first and a second ports (5, 6), reflected by crystalline bodies (C2, C3) and outputted as monochromatic X rays (Xr', Xt').
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种单色X射线产生装置及其方法,其产生大强度单色X射线并改变使用低能量相对论电子束产生的单色X射线的波长。 解决方案:单色X射线产生装置设置有:产生具有入射的电子束(7)的X射线的辐射器(R1) 以及衍射从散热器(R1)产生的X射线的晶体(C1)。 与晶体(C1)不同的散热器(R1)由具有给定波长的X射线的高发电效率的物质形成,散热器(R1)和晶体体(C1)以 使得X射线通过晶体(C1)沿两个方向(Xr,Xt)输出,从第一和第二端口(5,6)中取出,被晶体(C2,C3)反射 )并作为单色X射线(Xr',Xt')输出。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Stereographic image acquisition method, and device therefor
    • 立体图像获取方法及其装置
    • JP2006029886A
    • 2006-02-02
    • JP2004206731
    • 2004-07-14
    • Photon Production Laboratory LtdHiroshige Yamada山田廣成株式会社光子発生技術研究所
    • YAMADA HIROSHIGE
    • G01N23/04A61B6/02
    • A61B6/022
    • PROBLEM TO BE SOLVED: To provide a method and a device capable of reducing exposure in diagnosis and capable of acquiring stereoscopic images, by taking out information about the depth from a plurality of simple two-dimensional images, and by extracting an X-ray image of high resolution.
      SOLUTION: In this stereographic image acquiring method, the plurality of simple two-dimensional images A1, B1 and A2, B2 different in radiation generation points 1, 2 are imaged by a radiation from a radiation generator, having the plurality of radiation generation points 1, 2 with a prescribed space therebetween, using one fixed image pick-up device 4, one (for example, A1, B1) of the images thereof is moved, in parallel sequentially to be overlapped with the other (A2, B2), and a portion generating an intensified image is selected to extract a stereoscopic image. Since constitution hereinbefore is used as requirement for the method, the imaging time is shortened because the stereoscopic image is constituted of the at least two sheets of two-dimensional images, the radiation exposure to a subject 3 is reduced to enhance safety, and an effect for enhancing a contrast is generated in the image.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够通过从多个简单的二维图像中取出关于深度的信息并且通过提取X的信息来减少诊断中的曝光并且能够获取立体图像的方法和装置 高分辨率的高分辨率图像。 解决方案:在这种立体图像获取方法中,辐射发生点1,2不同的多个简单二维图像A1,B1和A2,B2通过具有多个辐射的辐射发生器的辐射成像 生成点1,2,其间具有规定的间隔,使用一个固定图像拾取装置4,将其图像中的一个(例如,A1,B1)顺序地并行移动以与另一个(A2,B2 ),并且选择产生增强图像的部分来提取立体图像。 由于以上的结构被用作该方法的要求,因为立体图像由至少两张二维图像构成,所以成像时间缩短,减少对被摄体3的辐射照射以提高安全性 用于增强对比度在图像中产生。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Desktop type radiation therapy/diagnosis apparatus and method of using the same
    • 桌面型放射治疗/诊断装置及其使用方法
    • JP2005237730A
    • 2005-09-08
    • JP2004052994
    • 2004-02-27
    • Hiroshige Yamada山田廣成
    • YAMADA HIROSHIGE
    • G21K5/02A61B6/00A61N5/10G21K5/08H05H13/04
    • PROBLEM TO BE SOLVED: To provide a desktop type radiation therapy/diagnosis apparatus capable of simultaneously performing the X-ray diagnosis and the therapy by generating about 6 MeV high-energy electrons, rotating the electrons and hitting the electrons at a target to generate X rays.
      SOLUTION: The desktop type radiation therapy/diagnosis apparatus consists of a device of generating about 6 MeV high-energy electrons, a conversion device with the target whose section size is not more than 100 microns for converting the electronic energy to X rays, a device of rotating electrons so that the electrons having penetrated the target hit at the target again, and a device of shielding regions other than the treated region. The apparatus can make the size of an X-ray generating point extremely small with an extremely small target, and X rays with great intensity can be generated by rotating electrons having penetrated again. As a result, a very minute X-ray diagnosis is possible, and a pinpoint treatment of a lesion is possible.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供能够通过产生大约6MeV高能电子同时执行X射线诊断和治疗的台式放射治疗/诊断装置,旋转电子并在目标处撞击电子 产生X射线。 解决方案:桌面式放射治疗/诊断装置由一个产生大约6 MeV高能电子的装置组成,一个转换装置,目标的截面尺寸不超过100微米,用于将电子能量转换成X射线 旋转电子的装置,使得已经穿透目标的电子再次在目标处撞击,以及除了被处理区域之外的屏蔽区域的装置。 该装置可以通过极小的目标使X射线产生点的尺寸非常小,并且可以通过旋转再次穿透的电子来产生具有强度的X射线。 结果,可以进行非常小的X射线诊断,并且可以精确地对病变进行治疗。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • X-ray analyzer
    • X射线分析仪
    • JP2010032341A
    • 2010-02-12
    • JP2008194363
    • 2008-07-29
    • Photon Production Laboratory LtdHiroshige Yamada山田廣成株式会社光子発生技術研究所
    • YAMADA HIROSHIGEMORITA MASAKI
    • G01N23/08G01N23/201G21K1/06H05G2/00H05H13/04
    • PROBLEM TO BE SOLVED: To provide an analyzer, especially an XAFS analyzer or a small angle scattering X-ray analyzer having a short beam line and high resolving power and capable of measuring a two-dimensional region in a short time.
      SOLUTION: The X-ray analyzer is equipped with a charged particle turning means (1) for turning the charged particles produced by a charged particle producing means to the inside, a spectral means (2) for spectrally separating X rays generated by colliding the turned charged particles against the oblong target (14) arranged on the turning track (13) of the turned charged particles to generate monochromatic X ray, and a measuring means (3) for irradiating a measuring target sample (4) with the monochromatic X rays outputted from the spectral means (2) and measuring the X rays outputted from the sample (4).
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种具有短束线和高分辨能力并且能够在短时间内测量二维区域的分析仪,特别是XAFS分析仪或小角度散射X射线分析仪。 解决方案:X射线分析仪装备有用于将由带电粒子产生装置产生的带电粒子转向内部的带电粒子转动装置(1),用于将由X射线产生的X射线进行光谱分离的光谱装置(2) 将转动的带电粒子碰到布置在转向带电粒子的转向轨道(13)上的长圆形靶(14)上以产生单色X射线;以及测量装置(3),用于将测量目标样品(4)与单色 从光谱装置(2)输出的X射线并测量从样品(4)输出的X射线。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • Magnetic circuit device and synchrotron device using it
    • 使用它的磁电路装置和同步装置
    • JP2007035495A
    • 2007-02-08
    • JP2005218617
    • 2005-07-28
    • Nec Tokin CorpNecトーキン株式会社Photon Production Laboratory LtdTokin Machinery:KkHiroshige Yamada山田廣成株式会社トーキンマシナリー株式会社光子発生技術研究所
    • YAMADA HIROSHIGETOYOSUGI NORIOMATSUMOTO NORIYUKI
    • H05H13/04H01F7/02
    • PROBLEM TO BE SOLVED: To provide a magnetic circuit device efficiently accumulating electron beams by easily removing a fringe magnetic field without disturbing a controlled field distribution area even in a limited space. SOLUTION: In this compact synchrotron device, a coil 2 inside a yoke 1, and a coil (a schematic drawing) inside a pole piece 3 make up a bipolar electromagnet as well as a magnetic circuit device for removing a fringe magnetic field generated by a controlled magnetic field in the vicinity of the controlled magnetic field distribution area E B satisfying conditions of a stable revolution trajectory for accumulating electron beams. A magnetic field generator (generating a magnetic field for removing the fringe magnetic field) is arranged, which is made by combining and arranging magnet blocks (made by combining the given number of permanent magnets with different magnifying directions) 6 to 12 along a magnetic flux line of the controlled magnetic field distribution area E B in a circular shape so as to be extended in the vicinity of incident and irradiating routes of electron beams along the stable revolution trajectory. Gaps to be light paths for accepting and irradiating the electron beams are provided at the magnetic block 6, 11. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:即使在有限的空间中,也可以通过容易地去除边缘磁场而不扰乱受控的场分布区域来提供有效地积聚电子束的磁路装置。 解决方案:在该紧凑型同步加速装置中,磁轭1内的线圈2和极靴3内部的线圈(示意图)构成双极型电磁铁以及用于去除边缘磁场的磁路装置 通过满足用于积聚电子束的稳定旋转轨迹的条件的受控磁场分布区域E B 附近的受控磁场产生。 布置磁场发生器(产生用于去除边缘磁场的磁场),其通过沿着磁通量组合和布置磁体块(通过组合给定数量的具有不同放大方向的永久磁铁制成)6-12 该受控磁场分布区域E B 的圆弧形状沿着稳定的旋转轨迹在电子束的入射和照射路线附近延伸。 作为用于接收和照射电子束的光路的间隙设置在磁块6,11处。(C)2007,JPO&INPIT