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    • 43. 发明授权
    • Printing method, printing apparatus, and medium
    • 印刷方法,印刷装置和介质
    • US08824001B2
    • 2014-09-02
    • US13551870
    • 2012-07-18
    • Takashi Doi
    • Takashi Doi
    • G06F15/00
    • H04N1/6033G06K15/027H04N1/6055
    • A printing method includes forming on a medium a test pattern including a first patch, a second patch, and a plurality of patches interposed between the first patch and the second patch in such a way that the patches are aligned in a predetermined direction, scanning the test pattern with an optical sensor along the predetermined direction. Widths of the first and second patches in the predetermined direction and widths thereof in an intersectional direction intersecting the predetermined direction are greater than a spot size of the optical sensor. The width of each of the plurality of patches in the intersectional direction is greater than the spot size, and the width of each of the plurality of patches in the predetermined direction is smaller than the spot size.
    • 打印方法包括在介质上形成包括第一贴片,第二贴片和插入在第一贴片和第二贴片之间的多个贴片的测试图案,使得贴片沿预定方向排列,扫描 具有沿着预定方向的光学传感器的测试图案。 第一和第二贴片在预定方向上的宽度和与预定方向交叉的交叉方向上的宽度大于光学传感器的光斑尺寸。 多个贴片中的每一个在相交方向上的宽度大于斑点尺寸,并且多个贴片中的每一个在预定方向上的宽度小于斑点尺寸。
    • 46. 发明授权
    • Charged particle beam trajectory corrector and charged particle beam apparatus
    • 带电粒子束轨迹校正器和带电粒子束装置
    • US07875858B2
    • 2011-01-25
    • US12349708
    • 2009-01-07
    • Hiroyuki ItoYuko SasakiRyoichi IshiiTakashi Doi
    • Hiroyuki ItoYuko SasakiRyoichi IshiiTakashi Doi
    • H01J1/50G21K1/08G21K1/093
    • H01J37/153H01J37/145H01J37/28H01J2237/1534
    • The invention relates to a trajectory correction method for a charged particle beam, and provides a low-cost, high accuracy and high-resolution converging optical system for use with a charged particle beam to solve problems with conventional aberration correction systems. To this end, the present invention uses a configuration which forms electromagnetic field which is concentrated towards a center of a beam trajectory axis, causes oblique of the beam to make use of lens effects and bend the trajectory, and consequently, cancels out large external side non-linear effects such a spherical aberration of the electron lens. Specifically, the configuration generates an electric field concentration in a simple manner by providing electrodes above the axis and applying voltages to the electrodes. Further, the above configuration can be realized trough operations using lenses and deflectors with incident axes and image formation positions that are normal.
    • 本发明涉及一种用于带电粒子束的轨迹校正方法,并且提供了一种用于带电粒子束的低成本,高精度和高分辨率会聚光学系统,以解决常规像差校正系统的问题。 为此,本发明使用形成朝向光束轨迹轴的中心集中的电磁场的结构,使得光束的倾斜利用透镜效果并弯曲轨迹,因此抵消了大的外侧 电子透镜的非线性效应如球面像差。 具体地说,该配置通过在轴上方设置电极并向电极施加电压,以简单的方式产生电场浓度。 此外,可以通过使用具有入射轴和成像位置的透镜和偏转器的槽操作来实现上述配置。
    • 47. 发明授权
    • Automatic priming method
    • 自动启动法
    • US07842001B2
    • 2010-11-30
    • US11794639
    • 2006-01-06
    • Katsunori MasaokaTakashi DoiKaoru Kushiyama
    • Katsunori MasaokaTakashi DoiKaoru Kushiyama
    • A61M37/00B01D24/46B01D29/62B01D33/44B01D35/00B01D41/00A61M1/00
    • A61M1/3643A61M1/3644A61M1/3647
    • An automatic priming method in which an arterial-side chamber is maintained in a normal position during priming, as in a case of dialysis treatment, and in which forward and backward rotations of a blood pump are employed, and a speed of rotation, in particular, backward rotation, is adjusted to be low, so that air or the like is reliably prevented from entering a dialyzer. The priming method for use in a blood purification circuit in which priming is conducted by supplying physiological saline into a circulation circuit formed by connecting an arterial blood circuit with a venous blood circuit includes filling the venous blood circuit with a priming solution (physiological saline), discharging the priming solution for cleaning the arterial blood circuit, conducting a treatment in a direction opposite to the overflow step, which may be followed by a forward direction re-circulation step, and re-circulating in a forward direction.
    • 一种自动起动方法,其中如在渗透处理的情况下,动脉侧腔室在启动期间保持在正常位置,并且其中采用血泵的向前和向后旋转,并且特别是旋转速度 ,向后旋转被调节为低,使得可靠地防止空气等进入透析器。 用于通过将生理盐水供给到通过将动脉血回路与静脉血液回路连接而形成的循环回路进行灌注的血液净化回路中的引发方法包括用引发液(生理盐水)填充静脉血回路, 排出用于清洁动脉血回路的引发溶液,以与溢流步骤相反的方向进行治疗,随后可以是正向再循环步骤,并且向前方向重新循环。