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    • 1. 发明授权
    • Multiphoton-excitation observation apparatus
    • 多光子激发观测装置
    • US07488955B2
    • 2009-02-10
    • US11726577
    • 2007-03-22
    • Junichi OkadaMakio UenoYasunari Matsukawa
    • Junichi OkadaMakio UenoYasunari Matsukawa
    • G02B21/06
    • G01N21/6458
    • The invention provides a multiphoton-excitation observation apparatus comprising a light-source unit for emitting pulsed laser light; an observation apparatus main unit for irradiating a specimen with laser light emitted from the light-source unit and observing fluorescence emitted from the specimen; an incidence adjusting device, disposed between the light-source unit and the observation apparatus main unit, for adjusting the beam diameter of the laser light emitted from the light-source unit; and a control apparatus for controlling the incidence-adjusting unit according to the depth of an observation plane in the specimen.
    • 本发明提供了一种多光子激发观测装置,包括用于发射脉冲激光的光源单元; 观察装置主单元,用于从从所述光源单元发射的激光照射样本并观察从所述样本发射的荧光; 入射调节装置,设置在所述光源单元和所述观察装置主单元之间,用于调节从所述光源单元发射的所述激光的光束直径; 以及控制装置,用于根据样本中观察平面的深度来控制入射调节单元。
    • 3. 发明授权
    • Scanning optical device which sets hardware in association with a depth of a focus position based on hardware set values stored in association with depths of focus positions
    • 扫描光学装置,其基于与聚焦位置的深度相关联地存储的硬件设置值来设置与焦点位置的深度相关联的硬件
    • US07709773B2
    • 2010-05-04
    • US12060432
    • 2008-04-01
    • Yusuke YamashitaJunichi OkadaMakio Ueno
    • Yusuke YamashitaJunichi OkadaMakio Ueno
    • G02B7/04G02B27/40G02B27/64
    • G01N21/6456G02B2207/113
    • A clear fluorescence image is easily obtained irrespective of variation of scattering due to variation of the depth of a focus position in a specimen. A scanning optical device includes a laser light source for emitting laser light, a scanning unit for scanning the laser light emitted from the laser light source on the specimen, a focus depth adjusting unit for adjusting the depth of the focus position in the specimen of the laser light to be scanned, a fluorescence detector for detecting fluorescence generated from the focus position of the laser light in the specimen, a reference depth information storage unit for storing the absolute height of a predetermined reference depth of the focus position of the laser light in the specimen by the focus depth adjusting unit, and a hardware setting storage unit for storing the relative height to the absolute height of the reference depth at each focus position of the laser light and at least one set value of the laser light source, the scanning unit, and the fluorescence detector in association with each other.
    • 不管由于样品中的焦点位置的深度的变化而导致的散射变化,容易获得清晰的荧光图像。 扫描光学装置包括用于发射激光的激光源,用于扫描从激光光源发射的激光的扫描单元,用于调整样本中的焦点位置的深度的焦点深度调节单元, 要扫描的激光,用于检测从样本中的激光的聚焦位置产生的荧光的荧光检测器,用于存储激光的聚焦位置的预定参考深度的绝对高度的参考深度信息存储单元, 通过焦点深度调整单元的样本,以及硬件设置存储单元,用于存储与激光的每个聚焦位置处的参考深度的绝对高度相关的相对高度和激光源的至少一个设定值,扫描 单位和荧光检测器相互关联。
    • 4. 发明申请
    • SCANNING OPTICAL DEVICE AND OBSERVATION METHOD
    • 扫描光学器件和观察方法
    • US20080251689A1
    • 2008-10-16
    • US12060432
    • 2008-04-01
    • Yusuke YAMASHITAJunichi OkadaMakio Ueno
    • Yusuke YAMASHITAJunichi OkadaMakio Ueno
    • G02B27/40
    • G01N21/6456G02B2207/113
    • A clear fluorescence image is easily obtained irrespective of variation of scattering due to variation of the depth of a focus position in a specimen. A scanning optical device includes a laser light source for emitting laser light, a scanning unit for scanning the laser light emitted from the laser light source on the specimen, a focus depth adjusting unit for adjusting the depth of the focus position in the specimen of the laser light to be scanned, a fluorescence detector for detecting fluorescence generated from the focus position of the laser light in the specimen, a reference depth information storage unit for storing the absolute height of a predetermined reference depth of the focus position of the laser light in the specimen by the focus depth adjusting unit, and a hardware setting storage unit for storing the relative height to the absolute height of the reference depth at each focus position of the laser light and at least one set value of the laser light source, the scanning unit, and the fluorescence detector in association with each other.
    • 不管由于样品中的焦点位置的深度的变化而导致的散射变化,容易获得清晰的荧光图像。 扫描光学装置包括用于发射激光的激光源,用于扫描从激光光源发射的激光的扫描单元,用于调整样本中的焦点位置的深度的焦点深度调节单元, 要扫描的激光,用于检测从样本中的激光的聚焦位置产生的荧光的荧光检测器,用于存储激光的聚焦位置的预定参考深度的绝对高度的参考深度信息存储单元, 通过焦点深度调整单元的样本,以及硬件设置存储单元,用于存储与激光的每个聚焦位置处的参考深度的绝对高度相关的相对高度和激光源的至少一个设定值,扫描 单位和荧光检测器相互关联。
    • 5. 发明授权
    • Method for measuring carbon concentration in polycrystalline silicon
    • 多晶硅碳浓度测定方法
    • US08963070B2
    • 2015-02-24
    • US14110013
    • 2012-04-03
    • Junichi OkadaKouichi KobayashiFumitaka Kume
    • Junichi OkadaKouichi KobayashiFumitaka Kume
    • G01D18/00G12B13/00G01J3/42G01N21/3563G01N21/27
    • G01J3/42G01N21/274G01N21/3563
    • The present invention provides a method for making it possible to easily and simply measure approximate concentration of substitutional carbon impurities in a desired position in a polycrystalline silicon rod. A polycrystalline silicon plate is sliced out from a polycrystalline silicon rod and both surfaces of the polycrystalline silicon plate are mirror-polished to reduce the polycrystalline silicon plate to thickness of 2.12±0.01 mm. A calibration curve is created according to an infrared absorption spectroscopy and on the basis of a standard measurement method using a single crystal silicon standard sample having known substitutional carbon concentration and thickness of 2.00±0.01 mm, an infrared absorption spectrum in a frequency domain including an absorption zone peak of substitutional carbon of the polycrystalline silicon plate after the mirror polishing is calculated under conditions same as conditions during the calibration curve creation, and substitutional carbon concentration is calculated without performing thickness correction.
    • 本发明提供了一种使得可以容易且简单地测量多晶硅棒中期望位置中的取代碳杂质的近似浓度的方法。 将多晶硅板从多晶硅棒切出,并将多晶硅板的两个表面进行镜面抛光以将多晶硅板的厚度减小到2.12±0.01mm。 根据红外吸收光谱法和基于使用具有已知的取代碳浓度和厚度为2.00±0.01mm的单晶硅标准样品的标准测量方法产生校准曲线,在频域中的红外吸收光谱包括 在与校准曲线生成期间的条件相同的条件下计算镜面抛光后的多晶硅板的取代碳的吸收峰的峰值,并且计算替代碳浓度而不进行厚度校正。
    • 9. 发明授权
    • Examination method of buffer capacity of saliva and examination instrument of buffer capacity of saliva
    • 唾液缓冲能力检查方法和唾液缓冲能力检查仪器
    • US07160731B2
    • 2007-01-09
    • US10241645
    • 2002-09-12
    • Kazuhiro TakagiJunichi Okada
    • Kazuhiro TakagiJunichi Okada
    • G01N31/16
    • G01N33/84
    • To provide a simple examination method of buffer capacity of saliva without influence by examiner's subjectivity and an examination instrument to carry out suitably the examination method, an examination instrument, in which two to ten kinds of chemical liquids each containing a pH indicator having a transition interval within a pH range of 3.0 to 7.0 and capable of easily discriminating its indicated color at two or more stages and an acid in an amount so as to exhibit a different pH value within a pH range of 1.5 or more but lower than 3.0 when water in the same amount as that of saliva to be examined is added at a temperature of 25° C. and a humidity of 50% are each immersed in a water-absorptive material, or are in a liquid or gel state and are accommodated within a constant-volume container, is prepared; saliva of a subject in a volume to be examined is added to each of the chemical liquids; after lapsing a predetermined time, the color of each chemical liquid is measured as a readily discriminable indicated color; and the buffer capacity of saliva is determined by overall evaluation from the readily discriminable indicated color as exhibited by the chemical liquid.
    • 为了提供唾液的缓冲能力的检查方法,不受检查者的主观性的影响,检查仪器适当地进行检查方法,检查仪器,其中两至十种各自含有具有过渡间隔的pH指示剂的化学液体 在3.0至7.0的pH范围内,并且能够容易地在两个或多个阶段区分其指示的颜色,并且酸的量可以在1.5以上且低于3.0的pH范围内显示不同的pH值 在25℃的温度和50%的湿度下加入与待检查的唾液相同的量浸渍在吸水材料中,或者处于液体或凝胶状态,并且容纳在恒定的 体积容器,准备; 将待检体积的受检者的唾液加入到每种化学液体中; 在经过预定时间之后,每个化学液体的颜色被测量为容易识别的指示颜色; 唾液的缓冲能力由化学液体显示的容易辨别的指示颜色的总体评价来确定。