Surface plasmon-field enhanced fluorescence spectroscopic measurement method and surface plasmon-field enhanced fluorescence spectroscopic measurement device
    3.
    发明授权
    Surface plasmon-field enhanced fluorescence spectroscopic measurement method and surface plasmon-field enhanced fluorescence spectroscopic measurement device 有权
    表面等离子体场增强荧光光谱测量方法和表面等离子体场增强荧光光谱测量装置

    公开(公告)号:US09068945B2

    公开(公告)日:2015-06-30

    申请号:US14126752

    申请日:2012-05-31

    摘要: To provide a surface plasmon-field enhanced fluorescence spectroscopic measurement method and a surface plasmon-field enhanced fluorescence spectroscopic measurement device which are capable of accurately measuring a fluorescent signal regardless of the type of a light detection means even when the concentration of an analyte is high by adjusting the dynamic range of the SPFS device. A surface plasmon-field enhanced fluorescence stereoscopic measurement method wherein an analyte labeled with a fluorescent substance is excited by surface plasmon light generated by applying excitation light to a metallic thin film, and generated fluorescence is received by a light detection means to thereby detect the analyte. The dynamic range is expanded by adjusting the amount of the fluorescence received by the light detection means.

    摘要翻译: 提供表面等离子体场增强荧光光谱测量方法和表面等离子体激元增强荧光光谱测量装置,即使当分析物的浓度高时,也能够精确地测量荧光信号而不管光检测装置的类型 通过调整SPFS设备的动态范围。 一种表面等离子体场增强荧光立体测定方法,其中用荧光物质标记的分析物通过将激发光施加到金属薄膜而产生的表面等离子体激元激发,并且由光检测装置接收产生的荧光,从而检测分析物 。 通过调节由光检测装置接收的荧光的量来扩大动态范围。

    SURFACE PLASMON-FIELD ENHANCED FLUORESCENCE SPECTROSCOPIC MEASUREMENT METHOD AND SURFACE PLASMON-FIELD ENHANCED FLUORESCENCE SPECTROSCOPIC MEASUREMENT DEVICE
    4.
    发明申请
    SURFACE PLASMON-FIELD ENHANCED FLUORESCENCE SPECTROSCOPIC MEASUREMENT METHOD AND SURFACE PLASMON-FIELD ENHANCED FLUORESCENCE SPECTROSCOPIC MEASUREMENT DEVICE 有权
    表面等离子体增强荧光光谱测量方法和表面等离子体增强荧光光谱测量装置

    公开(公告)号:US20140117255A1

    公开(公告)日:2014-05-01

    申请号:US14126752

    申请日:2012-05-31

    IPC分类号: G01N21/64

    摘要: To provide a surface plasmon-field enhanced fluorescence spectroscopic measurement method and a surface plasmon-field enhanced fluorescence spectroscopic measurement device which are capable of accurately measuring a fluorescent signal regardless of the type of a light detection means even when the concentration of an analyte is high by adjusting the dynamic range of the SPFS device. A surface plasmon-field enhanced fluorescence stereoscopic measurement method wherein an analyte labeled with a fluorescent substance is excited by surface plasmon light generated by applying excitation light to a metallic thin film, and generated fluorescence is received by a light detection means to thereby detect the analyte. The dynamic range is expanded by adjusting the amount of the fluorescence received by the light detection means.

    摘要翻译: 提供表面等离子体场增强荧光光谱测量方法和表面等离子体激元增强荧光光谱测量装置,即使当分析物的浓度高时,也能够精确地测量荧光信号而不管光检测装置的类型 通过调整SPFS设备的动态范围。 一种表面等离子体场增强荧光立体测定方法,其中用荧光物质标记的分析物通过将激发光施加到金属薄膜而产生的表面等离子体激元激发,并且由光检测装置接收产生的荧光,从而检测分析物 。 通过调节由光检测装置接收的荧光的量来扩大动态范围。

    Refractory flame-gunning apparatus
    5.
    发明授权
    Refractory flame-gunning apparatus 失效
    耐火火焰装置

    公开(公告)号:US4678120A

    公开(公告)日:1987-07-07

    申请号:US912176

    申请日:1986-09-22

    申请人: Masataka Matsuo

    发明人: Masataka Matsuo

    摘要: A refractory flame-gunning apparatus has a feeder, a controller and a flame-gunning burner. The feeder has a refractory-powder feeding section, an inflammable-gas feeding section and a combustion-assisting-gas feeding section. The controller controls the supply of refractory powder, inflammable and combustion-assisting gases. The flame-gunning burner has a plurality of refractory powder and flame ejecting nozzles disposed at its tip. The flame-gunning burner has a gas mixer and a combustion-assisting-gas cutoff valve. The gas mixer has an inflammable-gas passage leading to the inflammable-gas feeding section, a combustion-assisting-gas passage leading to the combustion-assisting-gas feeding section, a gas mixing chamber communicating with the inflammable and combustion-assisting gas passages, and a mixed-gas passage the upstream side of which communicates with the gas mixing chamber and the downstream side of which communicates with the flame ejecting nozzles. The gas mixer is provided for each individual flame nozzle. The combustion-assisting-gas cutoff valve is provided in the gas mixer and is actuated by the gas pressure built up in the mixed-gas passage. When backfire occurs, the pressure in the mixed-gas passage rises to close the combustion-assisting-gas cutoff valve, whereby the backfire is put out instantaneously.

    摘要翻译: 耐火火焰喷射装置具有进料器,控制器和火焰喷枪。 进料器具有耐火材料粉末供给部,易燃气体供给部和燃烧辅助气体供给部。 控制器控制耐火粉末,易燃和助燃气体的供应。 火焰喷射式燃烧器具有设置在其顶端的多个耐火粉末和火焰喷射喷嘴。 火焰喷射燃烧器具有气体混合器和助燃气体截止阀。 气体混合器具有通向易燃气体供给部的可燃气体通路,通向燃烧辅助气体供给部的燃烧辅助气体通路,与可燃性燃烧辅助气体通路连通的气体混合室 以及混合气体通路,其上游侧与气体混合室连通,下游侧与火焰喷射喷嘴连通。 为每个单独的火焰喷嘴设置气体混合器。 燃气辅助气体截止阀设置在气体混合器中,并由混合气体通道中积聚的气体压力致动。 当发生回火时,混合气体通道中的压力升高以关闭燃烧辅助气体截止阀,由此立即熄灭反作用力。

    SURFACE PLASMON RESONANCE FLUORESCENCE ANALYSIS DEVICE AND SURFACE PLASMON RESONANCE FLUORESCENCE ANALYSIS METHOD
    9.
    发明申请
    SURFACE PLASMON RESONANCE FLUORESCENCE ANALYSIS DEVICE AND SURFACE PLASMON RESONANCE FLUORESCENCE ANALYSIS METHOD 有权
    表面等离子体共振荧光分析装置和表面等离子体共振荧光分析方法

    公开(公告)号:US20130078146A1

    公开(公告)日:2013-03-28

    申请号:US13701695

    申请日:2011-06-02

    IPC分类号: G01N21/64

    摘要: A surface plasmon resonance fluorescence analysis device emits a light beam to a prism in which a metal film is formed on a prescribed surface while changing an angle of incidence relative to the metal film in a state in which the light beam is totally reflected, measures light generated on a surface of the metal film, determines an angle at which the light beam enters the metal film based on a change in intensity of the measured light, adjusts the emitting direction of the light beam so that the light beam enters the metal film at the determined angle of incidence, and measures fluorescence generated on the surface of the metal film in a state in which the light beam is emitted the adjusted direction.

    摘要翻译: 表面等离子体共振荧光分析装置在光束被全反射的状态下改变相对于金属膜的入射角度的同时,将规定的表面上形成有金属膜的棱镜发光,测量光 在金属膜的表面上产生的光束基于测量光的强度的变化确定光束进入金属膜的角度,调整光束的发射方向,使得光束进入金属膜, 确定的入射角,并且测量在光束在调节方向上发射的状态下在金属膜的表面上产生的荧光。