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    • 1. 发明授权
    • Panoramic ion detector
    • 全景离子检测仪
    • US4398090A
    • 1983-08-09
    • US310995
    • 1981-10-13
    • Jean-Francois EloyEberhard Unsold
    • Jean-Francois EloyEberhard Unsold
    • H01J47/02G01T1/20G01T1/28H01J49/02H01J49/06H01J49/40B01D59/44
    • H01J49/025G01T1/28
    • Panoramic detector of ions spatially distributed in different beams, comprising a plane symmetry diaphragm having an opening permitting the passage of the beams and which is brought to earth potential, an electrode for converting ions into electrons having an opening facing the diaphragm opening, the conversion electrode having the same plane of plane symmetry and being brought to a negative potential relative to the earth potential, and a planar electrode facing the conversion electrode and brought to a positive potential relative to the potential of the conversion electrode, the face of the conversion electrode facing the planar electrode having a predetermined shape in such a way that the electron beams formed retain the same spatial distribution as the beams of ion to be detected in the presence of an applied magnetic field.
    • 空间分布在不同光束中的离子的全景检测器,包括具有允许光束通过的开口并被接地的平面对称光阑,用于将离子转换成具有面向光阑开口的开口的电子的电极,转换电极 具有相同的平面对称面并且相对于地电位成为负电位,以及面对转换电极的平面电极,并且相对于转换电极的电位变为正电位,转换电极的面对 平面电极具有预定形状,使得所形成的电子束在存在施加的磁场时保持与要检测的离子束相同的空间分布。
    • 2. 发明授权
    • Mass spectrograph
    • 质谱仪
    • US4322629A
    • 1982-03-30
    • US177775
    • 1980-08-13
    • Jean-Francois EloyEberhard Unsold
    • Jean-Francois EloyEberhard Unsold
    • H01J49/06G01N27/62G01T1/28H01J49/02H01J49/10H01J49/26H01J49/40B01D59/44
    • H01J49/30G01T1/28H01J49/025H01J49/40
    • Mass spectrograph comprising an ion source, means for analyzing the ions emitted by this source and a panoramic ion detector, wherein the analysis means are of the type with magnetic separation and measurement of the time of flight and the ion source is a pulsed source.The panoramic ion detector comprises an ion inlet diaphragm, means facing the diaphragm which permit the conversion of ions into electrons, means facing the means for converting the ions into electrons and permitting the conversion of electrons into photons, a photon detector facing the means for converting the electrons into photons and photon guidance means located between the means for converting electrons into photons and the photon detector whereby the photon guidance means have a monoblock structure.
    • 包括离子源的质谱仪,用于分析由该源发射的离子和全景离子检测器的装置,其中所述分析装置是具有磁分离和测量飞行时间的类型,并且离子源是脉冲源。 全景离子检测器包括离子入口隔膜,面向隔膜的装置,其允许将离子转换成电子,面向用于将离子转换成电子并允许电子转换成光子的装置的装置,面向转换装置的光子检测器 电子进入光子和光子引导装置,位于用于将电子转换成光子的装置和光子检测器之间,由此光子引导装置具有整体结构。
    • 9. 发明授权
    • Device for selective destruction of cells
    • 选择性破坏细胞的装置
    • US5188633A
    • 1993-02-23
    • US736379
    • 1991-07-26
    • Michael KratzerEberhard Unsold
    • Michael KratzerEberhard Unsold
    • A61B18/18A61M1/36
    • A61M1/3681A61B2018/1807
    • Apparatus for selective destruction or inactivation of cells is disclosed wherein cells are arrayed in a plane for successive illumination, by optical X-Y scanning devices, with a first low powered light beam to produce in particular cells certain radiations responsive to the illumination. These response radiations are detected and used to enable a second higher powered light beam directed through substantially the same optical scanning paths, to destroy or inactivate the cells producing the response radiations. The illumination, response, detection, and high power radiation steps are accomplished by devices acting in times short as compared to the X-Y scanning devices so as to make the accurate treatment of each of large numbers of cells highly effective. Alternate embodiments disclose the use of a single laser light source to selectively provide both the low and high powered light beams, various X-Y scanning arrangements, and various devices for correcting the spherical aberration of the scanned beams in variously positioned image planes.
    • 公开了用于细胞的选择性破坏或灭活的装置,其中通过光学X-Y扫描装置将细胞排列在用于连续照明的平面中,其中第一低功率光束特别地产生响应于照明的某些辐射。 这些响应辐射被检测并用于使通过基本上相同的光学扫描路径的第二较高功率的光束能够破坏或失活产生响应辐射的单元。 与X-Y扫描装置相比,照明,响应,检测和高功率辐射步骤由与时间相比短的装置实现,从而使得大量细胞中的每一个的精确处理非常有效。 替代实施例公开了使用单个激光光源来选择性地提供低功率和高功率光束,各种X-Y扫描装置以及用于校正在各种定位的图像平面中的扫描光束的球面像差的各种装置。
    • 10. 发明授权
    • Device for selective destruction of cells
    • 选择性破坏细胞的装置
    • US5035693A
    • 1991-07-30
    • US167211
    • 1988-03-11
    • Michael KratzerEberhard Unsold
    • Michael KratzerEberhard Unsold
    • A61B18/18A61M1/36
    • A61M1/3681A61B2018/1807
    • Apparatus for selective destruction or inactivation of cells is disclosed wherein cells are arrayed in a plane for successive illumination, by optical X-Y scanning devices, with a first low power red light beam to produce in particular cells certain radiations responsive to the illumination. These response radiations are detected and used to enable a second higher powered light beam directed through substantially the same optical scanning paths, to destroy or inactivate the cells producing the response radiations. The illumination, response, detection, and high power radiation steps are accomplished by devices acting in times short as compared to the X-Y scanning devices so as to make the accurate treatment of each of large numbers of cells highly effective. Alternate embodiments disclose the use of a signal laser light source to selectively provide both the low and high powered light beams, various X-Y scanning arrangements, and various devices for correcting the spherical aberration of the scanned beams in variously positioned image planes.
    • 公开了用于细胞的选择性破坏或灭活的装置,其中细胞通过光学X-Y扫描装置排列在用于连续照明的平面中,其中第一低功率红色光束特别地产生响应于照明的某些辐射。 这些响应辐射被检测并用于使通过基本上相同的光学扫描路径的第二较高功率的光束能够破坏或失活产生响应辐射的单元。 与X-Y扫描装置相比,照明,响应,检测和高功率辐射步骤由与时间相比短的装置实现,从而使得大量细胞中的每一个的精确处理非常有效。 替代实施例公开了使用信号激光光源来选择性地提供低功率和高功率光束,各种X-Y扫描装置以及用于校正在各种定位的图像平面中的扫描光束的球面像差的各种装置。