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    • 42. 发明授权
    • Flow cytometer and flow cell for the same
    • 流式细胞仪和流通池相同
    • US08248604B2
    • 2012-08-21
    • US12566417
    • 2009-09-24
    • Kazuo Takeda
    • Kazuo Takeda
    • G01N21/00
    • G01N15/14
    • An apparatus for measuring a particle in a liquid, the apparatus having a function that, using a flow channel into which a sample liquid containing a particle is introduced, a pair of flow channels into which a sheath liquid is introduced, the pair of the flow channels being arranged on the opposite sides of the flow channel and joined, and a flow channel in which these flow channels are joined and the sample liquid and the sheath liquid on the opposite sides of the sample liquid flow, applies laser light to a particle flowing in a flow channel in the flow cell, detects scattered light or fluorescence generated from the particle and analyzes the particle.
    • 一种用于测量液体中的颗粒的装置,该装置具有使用其中引入含有颗粒的样品液体的流动通道,引入鞘液的一对流路,一对流 通道布置在流动通道的相对侧上并连接,并且流动通道,其中这些流动通道接合,并且样品液体和样品液体的相对侧上的鞘液体向流动的颗粒施加激光 在流动池中的流动通道中,检测从颗粒产生的散射光或荧光,并分析颗粒。
    • 43. 发明申请
    • DISPOSABLE CHIP-TYPE FLOW CELL AND FLOW CYTOMETER USING SAME
    • 可使用的芯片型流动池和流量计使用相同
    • US20110294139A1
    • 2011-12-01
    • US13148271
    • 2010-02-05
    • Kazuo Takeda
    • Kazuo Takeda
    • G01N21/64C12N13/00C12M1/34
    • G01N15/1404G01N15/1427G01N15/1459G01N15/1484G01N21/53G01N21/6486G01N33/4833G01N33/5005G01N2015/1409G01N2015/149Y10T436/101666
    • The present invention provides an apparatus for analyzing particles in a solution including a unit configured to place a flow cell having a flow path for flowing a sample solution containing the particles; a unit configured to illuminate the sample solution flowing through the flow path of the flow cell; a photodetector that detects a scattered light and/or fluorescence generated from the particles in the sample solution; and a unit configured to analyze the particles based on their signal intensities detected by the photodetector, wherein the flow cell has the flow path formed in a substrate, a reflection plane is formed on the side surface of the flow path, the reflection plane leads the lights generated in the flow path of the flow cell and advancing in the substrate in-plane direction to a specified region of the surface of the flow cell, and the photodetector detects the light exiting from the specified region to the outside.
    • 本发明提供了一种用于分析溶液中的颗粒的装置,包括:单元,被配置为放置具有用于流动含有颗粒的样品溶液的流动路径的流通池; 被配置为照亮流过所述流动池的流路的样品溶液的单元; 检测从样品溶液中的颗粒产生的散射光和/或荧光的光电检测器; 以及基于由所述光检测器检测出的信号强度来分析所述粒子的单元,其中所述流通池具有形成在基板中的流路,在所述流路的侧面形成有反射面,所述反射面将所述 在流动池的流路中产生的光并且在基板的面内方向前进到流动池的表面的特定区域,并且光电检测器检测从指定区域向外部出射的光。
    • 50. 发明申请
    • Liquid crystal display apparatus
    • 液晶显示装置
    • US20070229737A1
    • 2007-10-04
    • US11656479
    • 2007-01-23
    • Kazuo Takeda
    • Kazuo Takeda
    • G02F1/1335
    • G02F1/133606G02F1/133526
    • A phase shift element formed on the outer surface of a glass substrate is formed of an organic PAS film, with a refractive index of approximately 1.5. There is atmospheric air (with a refractive index of 1.0) between the phase shift elements. A thickness of the phase shift element is set at 550 nm, a value obtained by substituting 550 nm for a center wavelength and 0.5 for Δn in D1 Δn=center wavelength/2. A phase shift element formed on the inner surface of the glass substrate is an SiN layer (with a refractive index of approximately 2.0). A substance between the phase shift elements is a flattened film which has a heatproof temperature of 600 degrees centigrade or above, a low refractive index, and flattened effect. A thickness of the flattened film may be equal to or larger than a thickness of the phase shift element and thus is set at 550 nm. Through installation of the phase shift elements having a lens effect, light of a back light is efficiently condensed on an aperture part of a pixel, thereby improving the condensation efficiency at the aperture part and increasing an amount of light transmitted through a liquid crystal display panel.
    • 形成在玻璃基板的外表面上的相移元件由有机PAS膜形成,折射率约为1.5。 相移元件之间有大气(折射率为1.0)。 相位偏移元件的厚度设定为550nm,通过以D 1 Deltan =中心波长/ 2代替550nm的中心波长和0.5为Deltan而获得的值。 形成在玻璃基板的内表面上的相移元件是SiN层(折射率约为2.0)。 相移元件之间的物质是具有600℃以上的耐热温度,低折射率和扁平化效果的扁平膜。 平坦化膜的厚度可以等于或大于相移元件的厚度,因此设定为550nm。 通过安装具有透镜效应的相移元件,背光的光被有效地冷凝在像素的开口部上,从而提高了开口部的缩合效率,并且增加透过液晶显示面板的光量 。