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    • 21. 发明申请
    • METHOD FOR DETECTING CONTROLS FOR NUCLEIC ACID AMPLIFICATION AND USE THEREOF
    • 用于检测核酸扩增控制的方法及其用途
    • US20110244460A1
    • 2011-10-06
    • US13139290
    • 2009-12-16
    • Mitsuharu HiraiSatoshi MajimaShinya NakajimaTatsuo Kamata
    • Mitsuharu HiraiSatoshi MajimaShinya NakajimaTatsuo Kamata
    • C12Q1/68C07H21/00G06G7/58
    • C12Q1/6848C12Q2545/107C12Q2527/107C12Q2545/101
    • The present invention provides a control detection method for easily detecting a positive control and a negative control simultaneously in one reaction system. An amplification reaction is carried out by adding a control template nucleic acid to a reaction system for detecting controls. The template nucleic acid can be amplified by a primer capable of amplifying an objective target sequence. An amplification region of the control template nucleic acid amplified by the primer can be hybridized with a detection probe capable of hybridizing to the target sequence. A Tm value (TmC) of a double-stranded nucleic acid composed of the amplification region of the control template nucleic acid amplified by the primer and the detection probe is set different from a Tm value (TmA) of a double-stranded nucleic acid composed of the target sequence and the detection probe. Thereby, it can be determined whether or not amplification occurs in a reaction system on the basis of the presence or absence of a peak at the TmC and it can be determined whether or not a reaction system is contaminated with undesired nucleic acid on the basis of the presence or absence of a peak at a temperature other than TmC.
    • 本发明提供一种用于在一个反应​​系统中同时容易地检测阳性对照和阴性对照的控制检测方法。 通过将对照模板核酸加入到用于检测对照的反应系统中进行扩增反应。 模板核酸可以通过能够扩增目的靶序列的引物扩增。 由引物扩增的对照模板核酸的扩增区可以与能够与靶序列杂交的检测探针杂交。 将由引物扩增的对照模板核酸的扩增区和检测用探针构成的双链核酸的Tm值(TmC)设定为与构成的双链核酸的Tm值(TmA)不同 的目标序列和检测探针。 因此,可以基于在TmC的峰的存在或不存在来确定反应体系中是否发生扩增,并且可以基于以下方式确定反应体系是否被不期望的核酸污染 在TmC以外的温度下存在或不存在峰。
    • 22. 发明申请
    • RADIO-ON-FIBER UNIT AND RADIO-ON-FIBER SYSTEM
    • 射频光纤单元和光纤光纤系统
    • US20110103800A1
    • 2011-05-05
    • US13001883
    • 2008-07-03
    • Satoshi ShinadaTetsuya KawanishiShinya Nakajima
    • Satoshi ShinadaTetsuya KawanishiShinya Nakajima
    • H04B10/00H01Q21/08
    • H01Q21/061H01Q21/0006H04B10/25756
    • An object of the present invention is to provide a radio-on-fiber unit and a radio-on-fiber system which can transmit/receive signals at adequate rates especially, to/from a mobile device. A first aspect of the present invention relates to a radio-on-fiber unit (3) which includes an antenna array (1) and a light modulator array (2). The light modulator array (2) comprises antenna elements (5) and light modulators (7) that are connected with the respective antenna elements via electric circuits. The optical waveguide (13) is composed of linear optical waveguides (13) that are arranged along the light modulators (7) included in certain lines among the light modulators (7). The light modulator array (2) comprises reflection units (17) for connecting two adjacent linear optical waveguides with each other. Consequently, a signal light inputted to a light input unit (11) is outputted from a light output unit (15) via each linear optical waveguide (13).
    • 本发明的一个目的是提供一种无线光纤单元和光纤无线电系统,其可以以适当的速率发送/接收来自移动设备的信号。 本发明的第一方面涉及一种包括天线阵列(1)和光调制器阵列(2)的光纤上单元(3)。 光调制器阵列(2)包括经由电路与各个天线元件连接的天线元件(5)和光调制器(7)。 光波导(13)由沿光调制器(7)中的某些线路中包括的光调制器(7)布置的线性光波导(13)组成。 光调制器阵列(2)包括用于将两个相邻的线性光波导彼此连接的反射单元(17)。 因此,输入到光输入单元(11)的信号光经由每个线性光波导(13)从光输出单元(15)输出。
    • 23. 发明授权
    • Measuring instrument and fluorometric method
    • 测量仪器和荧光测定法
    • US07256892B2
    • 2007-08-14
    • US10534182
    • 2003-11-13
    • Shinya Nakajima
    • Shinya Nakajima
    • G01N21/25F21V9/16B32B5/02
    • G01N21/6428G01N21/645G01N2021/6441G01N2021/6463G01N2021/6471G01N2021/6482
    • A measuring instrument that comprises a light source unit 1 capable of emitting light having different wavelengths, a light receiving unit 2 that outputs an electrical signal corresponding to an intensity of transmitted light or radiated light from a sample 6 mixed with a plurality of coloring matters, and a calculation section 3, is used. The calculation section 3 uses a previously calculated correction coefficient to calculate the fluorescence intensity of transmitted light or radiated light for each coloring matter. The correction coefficient is calculated based on an electrical signal output by the light receiving unit 2 when a plurality of correction samples are irradiated with light having different wavelengths, each correction sample being mixed with any one of the coloring matters and the respective mixed coloring matters being different from one another.
    • 一种测量仪器,包括能够发射具有不同波长的光的光源单元1,光接收单元2,其输出与来自与多种着色物质混合的样品6的透射光或辐射光的强度对应的电信号, 并使用计算部3。 计算部分3使用先前计算的校正系数来计算每种色素的透射光或辐射光的荧光强度。 当使用不同波长的光照射多个校正样本时,基于由光接收单元2输出的电信号来计算校正系数,每个校正样品与任何一个着色剂和各个混合着色剂混合为 彼此不同
    • 26. 发明申请
    • Data output method in analysis of sample, analytical device, and analytical system
    • 分析样品,分析装置和分析系统的数据输出方法
    • US20110204139A1
    • 2011-08-25
    • US12929676
    • 2011-02-08
    • Shinya Nakajima
    • Shinya Nakajima
    • G06Q50/00
    • G01N35/00732G01N2035/00831
    • An analytical device is provided that can easily determine whether analysis results are affected by drug administration for the test subject when a sample such as urine or blood is analyzed. The analytical device includes reading means capable of reading test subject identification information recorded on an information recording portion of a sample container, and data output means capable of outputting data on analysis results of a sample contained in the sample container, the analytical device further having: information acquiring means capable of acquiring, from a source external to the analytical device, drug administration information on the test subject corresponding to the test subject identification information read by the reading means, wherein when the data on analysis results of a sample are outputted by the data output means, data on the drug administration information on the test subject corresponding thereto are also outputted.
    • 提供了一种分析装置,其可以容易地确定分析结果是否在分析诸如尿液或血液的样品时受试者的药物施用影响。 分析装置包括能够读取记录在样本容器的信息记录部分上的测试对象识别信息的读取装置和能够输出包含在样本容器中的样本的分析结果的数据的数据输出装置,该分析装置还具有: 信息获取装置,其能够从分析装置外部的来源获取与由读取装置读取的测试对象识别信息相对应的测试对象的药物管理信息,其中当样本的分析结果的数据由 数据输出装置也输出与其对应的与被检者对应的药物管理信息的数据。
    • 28. 发明申请
    • Measuring instrument and fluoremetric method
    • 测量仪和荧光法
    • US20060108540A1
    • 2006-05-25
    • US10534182
    • 2003-11-13
    • Shinya Nakajima
    • Shinya Nakajima
    • G01N21/64
    • G01N21/6428G01N21/645G01N2021/6441G01N2021/6463G01N2021/6471G01N2021/6482
    • A measuring instrument that comprises a light source unit 1 capable of emitting light having different wavelengths, a light receiving unit 2 that outputs an electrical signal corresponding to an intensity of transmitted light or radiated light from a sample 6 mixed with a plurality of coloring matters, and a calculation section 3, is used. The calculation section 3 uses a previously calculated correction coefficient to calculate the fluorescence intensity of transmitted light or radiated light for each coloring matter. The correction coefficient is calculated based on an electrical signal output by the light receiving unit 2 when a plurality of correction samples are irradiated with light having different wavelengths, each correction sample being mixed with any one of the coloring matters and the respective mixed coloring matters being different from one another.
    • 一种测量仪器,包括能够发射具有不同波长的光的光源单元1,光接收单元2,其输出与来自与多种着色物质混合的样品6的透射光或辐射光的强度对应的电信号, 并使用计算部3。 计算部分3使用先前计算的校正系数来计算每种色素的透射光或辐射光的荧光强度。 当使用不同波长的光照射多个校正样本时,基于由光接收单元2输出的电信号来计算校正系数,每个校正样品与任何一个着色剂和各个混合着色剂混合为 彼此不同