蛍光画像生成装置及び蛍光画像生成方法
    72.
    发明申请
    蛍光画像生成装置及び蛍光画像生成方法 审中-公开
    用于产生荧光图像的装置和用于产生荧光图像的方法

    公开(公告)号:WO2016147315A1

    公开(公告)日:2016-09-22

    申请号:PCT/JP2015/057891

    申请日:2015-03-17

    Abstract:  本発明の一形態に係る蛍光画像取得システム1は、観察対象物Pから発せられた蛍光を撮像することによって蛍光画像を生成するシステムであって、オン期間において観察対象物Pに対して励起光を出力し、オフ期間において励起光の出力を停止することにより、励起光の出力と停止とを繰り返す光照射装置5と、2次元的に配列された複数の画素を含む受光部4aと、受光部4aの露光を制御する露光制御部4bとを有し、オン期間及びオフ期間のそれぞれにおいて観察対象物Pを撮像することによってオン画像データ及びオフ画像データを出力する撮像装置3と、オン画像データ及びオフ画像データに基づいて、蛍光画像データを生成するとともに受光部4aの露光時間を設定するカメラコントローラ15とを備える。

    Abstract translation: 根据本发明的一个实施方案的荧光图像获取系统1捕获从被观察物质P产生的荧光的图像,从而产生荧光图像,其中荧光图像获取系统1设置有:光辐射 装置5,用于在接通期间向待观察物质P输出激发光,并且在关闭期间停止激发光的输出,由此激发光反复地输出和停止; 具有包括多个二维阵列像素的光接收单元4a的图像捕获装置3和用于控制受光单元4a的曝光的曝光控制单元4b,拍摄图像的图像捕获装置3 在每个接通周期和关闭时段中的待观察物质P,从而输出图像数据和关闭图像数据; 以及照相机控制器15,用于根据接通图像数据和关闭图像数据产生荧光图像数据并设置光接收单元4a的曝光时间。

    OPTICAL MEASUREMENT ARRANGEMENT
    73.
    发明申请
    OPTICAL MEASUREMENT ARRANGEMENT 审中-公开
    光学测量装置

    公开(公告)号:WO2010089749A1

    公开(公告)日:2010-08-12

    申请号:PCT/IL2010/000108

    申请日:2010-02-07

    Inventor: INGBER, Gal

    Abstract: A method and device for enhancing the power correction of optical measurements in an optical measurement arrangement, the steps including: providing a light source for producing a light beam; splitting the light beam into two beams; directing a first split light beam through an interrogation area and into an optics separation device; directing the light beams from the optics separation device and a second split light beam representing the intensity of the illumination of the main light beam of the light source into cells of a detector array; measuring and assessing the information obtained in the cells; and using this information to calculate the corrected value for the cells receiving the light beams from the optics separation device in order to adjust the power for the intensity of the light beam of the light source and/or to correct the intensity of the light beams from the interrogation area.

    Abstract translation: 一种用于增强光学测量装置中的光学测量的功率校正的方法和装置,所述步骤包括:提供用于产生光束的光源; 将光束分成两束; 将第一分裂光束引导通过询问区并进入光学分离装置; 引导来自光学分离装置的光束和将光源的主光束的照明强度表示为检测器阵列的单元的第二分裂光束; 测量和评估细胞中获得的信息; 并且使用该信息来计算接收来自光学分离装置的光束的单元的校正值,以便调整光源的光束强度的功率和/或校正来自光源的光束的强度 询问区。

    SCATTERING CENTRE DETECTOR ASSEMBLY AND METHOD
    75.
    发明申请
    SCATTERING CENTRE DETECTOR ASSEMBLY AND METHOD 审中-公开
    散射中心检测器组件和方法

    公开(公告)号:WO2007034148A1

    公开(公告)日:2007-03-29

    申请号:PCT/GB2006/003428

    申请日:2006-09-15

    Abstract: An assembly which comprises (a) a duct (22) for transmission of fluids, said duct having longitudinal axis, (b) at least one emitter (301) capable of exciting a beam of radiation (21) in the form of a cone having root angles β ex and β ey , which may be the same or different, into a cross section area of a duct to be analysed in a direction downstream of fluid flow in the duct at an angle λ e from the plane perpendicular to the longitudinal axis of the duct, the angle λ e being between 5° to 45°, (c) a detector (23, 304) sensitive to radiation radiated by scattering centres in the fluid over at least 1% of the cross sectional area of the duct, the direction of the central axis of the emitter cone being at an angle α to the direction of the central axis of the detector cone, the detector cone having root angles β dx and β dy , which may be the same or different and the detector cone having angle λ d perpendicular to the longitudinal axis of the duct, the direction of the detector being downstream of fluid flow in the duct, the angle α being in the range 0° to 180° and angle λ d being between 5° to 45°, the detector collecting scattered radiation and the detector being coupled to (d) a collator (310) for collecting data from the detector.

    Abstract translation: 一种组件,其包括(a)用于传输流体的管道(22),所述管道具有纵向轴线,(b)至少一个发射器(301),其能够激发具有锥体形式的辐射束(21) 根角度可以相同或不同,可以在流体流动方向下游的管道的横截面积中 管道与垂直于管道的纵向轴线的平面成角度θ1,角度θE在5°至45°之间,(c)检测器( 23,304)对于在流体中的散射中心在管道的横截面积的至少1%上辐射的辐射敏感,发射锥体的中心轴线的方向与中心轴线的方向成一定角度 检测器锥体具有根角βψ和ßdy dy dy dy dy dy dy dy dy dy dy and and and?<<<<<<<<<<<<<<<<<<<<<<<<<<<<<< / SUB>垂直 在管道的纵向轴线上,检测器的方向在管道中的流体流动的下游,角度α在0°至180°的范围内,并且角度θ1在5°至 收集散射辐射的检测器和检测器耦合到(d)用于从检测器收集数据的对准器(310)。

    INFRARED SOURCE MODULATION AND SYSTEM USING SAME
    76.
    发明申请
    INFRARED SOURCE MODULATION AND SYSTEM USING SAME 审中-公开
    使用相同的红外光源调制和系统

    公开(公告)号:WO2006091218A2

    公开(公告)日:2006-08-31

    申请号:PCT/US2005022953

    申请日:2005-06-27

    CPC classification number: G01N21/274 G01J3/10 G01N21/3504 G01N2201/0692

    Abstract: A method of modulating an infrared radiation (IR) source that includes applying a time-varying, periodic voltage signal to the IR source, measuring a parameter of the voltage signal, and adjusting the voltage signal to maintain a substantially constant delivered power to the IR source. Adjusting the voltage signal is done based on the measured parameter and a predetermined relationship between the measured parameter of the voltage pulse and a resistance of such an infrared radiation source. Alternatively, the method includes applying a the voltage pulse, measuring a first parameter of the voltage pulse and a second parameter of a current passing through the infrared radiation source resulting from the applying step, and adjusting the voltage pulse to maintain a substantially constant delivered power to the infrared radiation source based on the first parameter and the second parameter.

    Abstract translation: 一种调制红外辐射源(IR)源的方法,包括向IR源施加时变周期性电压信号,测量电压信号的参数,以及调整电压信号以维持基本上恒定的输送功率到IR 资源。 基于测量的参数和电压脉冲的测量参数与这种红外辐射源的电阻之间的预定关系来调节电压信号。 或者,该方法包括施加电压脉冲,测量电压脉冲的第一参数和通过施加步骤产生的通过红外辐射源的电流的第二参数,以及调整电压脉冲以保持基本上恒定的输送功率 基于第一参数和第二参数对红外线辐射源。

    OPTICAL MEASUREMENT ARRANGEMENT
    79.
    发明公开
    OPTICAL MEASUREMENT ARRANGEMENT 审中-公开
    光学测量装置

    公开(公告)号:EP2394147A1

    公开(公告)日:2011-12-14

    申请号:EP10738280.6

    申请日:2010-02-07

    Inventor: INGBER, Gal

    Abstract: A method and device for enhancing the power correction of optical measurements in an optical measurement arrangement, the steps including: providing a light source for producing a light beam; splitting the light beam into two beams; directing a first split light beam through an interrogation area and into an optics separation device; directing the light beams from the optics separation device and a second split light beam representing the intensity of the illumination of the main light beam of the light source into cells of a detector array; measuring and assessing the information obtained in the cells; and using this information to calculate the corrected value for the cells receiving the light beams from the optics separation device in order to adjust the power for the intensity of the light beam of the light source and/or to correct the intensity of the light beams from the interrogation area.

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