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    • 3. 发明授权
    • Electrophoresis pattern analyzer for genetic material
    • 遗传物质电泳图谱分析仪
    • US5061067A
    • 1991-10-29
    • US330289
    • 1989-03-29
    • Takekazu YamamotoMasakazu NakagawaMasayoshi Momiyama
    • Takekazu YamamotoMasakazu NakagawaMasayoshi Momiyama
    • G01N33/50B01D57/02G01N27/447
    • G01N27/44721
    • An electrophoresis pattern analyzer for genetic material of this invention comprises: an image data generating means for optically reading an electrophoresis specimen and outputting datum image data corresponding to a datum region and sample image data corresponding to at least one sample region; a datum band pattern retrieving means for retrieving datum band patterns concerning position coordinates of the bands of the datum region in the direction of electrophoresis and two-dimensional forms of the bands of the datum region from the datum image data; a sample band pattern retrieving means for retrieving sample band patterns concerning position coordinates of the bands of the sample region in the direction of electrophoresis and two-dimensional forms of the bands of the sample region from the sample image data; and a band pattern comparing means for comparing the datum band patterns with the sample band patterns and determining characteristics of the sample region. The electrophoresis pattern analyzer for genetic material of this invention provides advantages of more precise, less expensive and higher speed analysis and identification than the conventional visual analysis and identification.
    • 本发明的遗传物质电泳图谱分析装置包括:图像数据产生装置,用于光学读取电泳样本并输出对应于基准区域的数据图像数据和对应于至少一个采样区域的采样图像数据; 数据带图案检索装置,用于从基准图像数据中检索关于电泳方向上的基准区域的频带的位置坐标和基准区域的频带的二维形式的数据带图案; 样本带图案检索装置,用于从样本图像数据中检索关于样品区域的电泳方向的位置坐标和样本区域的带的二维形式的样本带图案; 以及频带图案比较装置,用于将数据带图案与样本带图案进行比较并确定样本区域的特征。 本发明的遗传材料的电泳图谱分析仪提供比常规视觉分析和鉴定更精确,更便宜和更高速度的分析和识别的优点。
    • 4. 发明授权
    • Method for working in a specimen and a stage for the method
    • 在样品中工作的方法和该方法的阶段
    • US6111258A
    • 2000-08-29
    • US238154
    • 1999-01-28
    • Takekazu YamamotoMasayoshi MomiyamaNaoto KagiyamaNaritoshi Kanai
    • Takekazu YamamotoMasayoshi MomiyamaNaoto KagiyamaNaritoshi Kanai
    • G01N21/64C12M1/00C12N15/09G01N1/06G01N27/447G01J1/88
    • G01N21/6456
    • A method for working in a specimen includes the steps of (a) putting the specimen on a stage; (b) irradiating radiation to the specimen for excitation; (c) recording detected characteristics of the excited specimen by the radiation; (d) displaying the recorded characteristics on the stage; (e) storing the recorded characteristics of the excited specimen; (f) maintaining display of the stored characteristics on the stage; and (g) working on the specimen on the stage over the displayed characteristics. An operator may easily access to the specimen with a scalpel or a knife since the detected characteristics are displayed on the stage after the detection of the characteristics. Even if the detection requires harmful radiation such as ultraviolet light, the operator may work in the specimen after turning off such harmful radiation. Therefore, the operator does not have to wear any protection against the harmful radiation so as to work in the specimen more easily and efficiently. Further, according to the present invention, a very delicate specimen, such as deoxyribonucleic acid, may be analyzed with less deterioration of the specimen since the excitation radiation is not necessary during the work in the specimen. In fact, a momentary excitation radiation may be sufficient to display the necessary characteristics on the stage.
    • 在试样中加工的方法包括以下步骤:(a)将样品放在台上; (b)向试样照射辐射用于激发; (c)通过辐射记录被激发标本的检测特性; (d)在舞台上显示录制的特征; (e)存储所激发的样本的记录特征; (f)在台上保持存储特性的显示; 和(g)在展示的特征上对舞台上的标本进行工作。 在检测到特征之后,检测到的特征被显示在舞台上,操作者可以用手术刀或刀片容易地接近样本。 即使检测需要紫外线等有害辐射,操作人员也可以在关闭这种有害辐射后在样品中工作。 因此,操作人员不必对有害辐射进行任何防护,从而更容易有效地对样品进行加工。 此外,根据本发明,由于在试样中的工作中不需要激发辐射,因此可以分析样品的劣化较少的脱氧核糖核酸等非常精细的试样。 事实上,瞬时的激发辐射可能足以在舞台上显示必要的特征。
    • 9. 发明申请
    • CHROMATOGRAPHY DEVICE
    • 色谱装置
    • US20090317900A1
    • 2009-12-24
    • US12480940
    • 2009-06-09
    • Atsushi HATTORIMasayoshi MOMIYAMA
    • Atsushi HATTORIMasayoshi MOMIYAMA
    • C12M1/00G01N30/02
    • G01N30/90C12Q1/34G01N33/70G01N2333/978
    • A chromatography device includes a sample introducing portion for introducing a sample in a liquid state and provided at an upstream side of a flow of the sample, a developing means including a creatinine detecting portion, at which a creatinine detection reagent for detecting creatinine in the sample is provided, and a substance-to-be-detected detecting portion, at which a substance-to-be-detected detecting reagent for detecting a substance included in the sample is provided, and a liquid absorbing portion for absorbing liquid included in the sample in order to allow the sample to flow to a down stream side towards the liquid absorbing portion, wherein the sample introducing portion, the developing means and the water absorbing portion are provided on a board in this order from the upstream side to the downstream side in order to quantify the substance, which is included in the sample and which is to be detected.
    • 色谱装置包括用于将液体状态的样品引入并设置在样品流的上游侧的样品导入部,包含肌酸酐检测部的显影装置,在该肌酸酐检测部中检测样品中的肌酸酐的肌酸酐检测试剂 以及被检物检测部,在该物质检测部上设置有用于检测样品中所含物质的被检测物质,以及用于吸收样品中所含的液体的液体吸收部 为了允许样品向下游侧流向液体吸收部分,其中样品引入部分,显影装置和吸水部分从上游侧到下游侧依次设置在板上 为了量化样品中包含的物质,要检测的物质。
    • 10. 发明申请
    • Biological information inspection system
    • 生物信息检查系统
    • US20070111301A1
    • 2007-05-17
    • US10580460
    • 2004-11-25
    • Satoshi FujitaMasayoshi Momiyama
    • Satoshi FujitaMasayoshi Momiyama
    • C12M1/34
    • G01N35/00029G01N2035/00158G01N2035/00851
    • In a biological information inspection system capable of accumulating highly reproducible biological information in a plurality of inspection means and making a multifactorial analysis of related information, simplification and downsizing of the system is achieved. The biological information inspection system 10 of the present invention comprises a sensor chip 20 holding a sample such as genes, a sensor chip holding portion 11 in which the sensor chip 20 is placed, and a data reading portion 13 for acquiring image data of a detection portion 21 and a marker portion 21 of the sensor chip 20. The system further comprises a data calculation unit 16 for executing a plurality of programs for acquiring biological information data from the image data of the detection portion 21. Which of the inspection means the sensor chip 20 corresponds to is identified from the read image data of the marker portion 23. Then the data calculation unit 16 executes a program for the one of the inspection means corresponding to the detection portion 21, thereby detecting biological information peculiar to the sample held on the detection portion 21 from the image data of the detection portion 21. Accordingly, information of the marker portion 23 and information of the detection portion 21 can be acquired by the same mechanism (the data reading portion 13).
    • 在能够在多个检查装置中积累高度可再现的生物信息并对相关信息进行多因素分析的生物信息检查系统中,实现了系统的简化和缩小。 本发明的生物信息检查系统10包括:保存有基因的样本的传感器芯片20,放置有传感器芯片20的传感器芯片保持部11,以及用于获取检测图像数据的数据读取部13 部分21和传感器芯片20的标记部分21.系统还包括数据计算单元16,用于执行用于从检测部分21的图像数据获取生物信息数据的多个程序。检查装置中的哪一个是传感器 芯片20对应于从标记部分23的读取的图像数据识别。然后,数据计算单元16执行与检测部分21相对应的检查装置中的一个的程序,从而检测保持在样本上的样本特有的生物信息 来自检测部分21的图像数据的检测部分21.因此,标记部分23的信息和检测部分21的信息 可以通过相同的机构(数据读取部分13)来获取反射部分21。