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    • 3. 发明申请
    • Data processing system using base sequence-relating data
    • 数据处理系统采用基本序列相关数据
    • US20060041389A1
    • 2006-02-23
    • US10535407
    • 2003-11-19
    • Takamasa KatoTakeo MorimotoHitoshi MatsuoHideyuki BanToru HisamitsuTakuya Kamiyama
    • Takamasa KatoTakeo MorimotoHitoshi MatsuoHideyuki BanToru HisamitsuTakuya Kamiyama
    • G06F19/00
    • G16B20/00G16B30/00
    • A system for processing information for providing semantic information and/or information associated with the semantic information useful for each individual organism through effective utilization of differences in nucleotide sequence-related information among individual organisms is constructed. This system comprises steps of (a) receiving nucleotide sequence-related information concerning a predetermined individual and (b) identifying, from a memory comprising a nucleotide sequence-related information group for each individual including a plurality of sets to which positional information representing a position in a nucleotide sequence and nucleotide sequence-related information corresponding to the positional information are mutually related, a nucleotide sequence-related information group including nucleotide sequence-related information that has consistency of the received nucleotide sequence-related information.
    • 构建用于处理信息的系统,用于通过有效利用个体生物体中的核苷酸序列相关信息的差异来提供与用于每个单独生物体的语义信息相关联的语义信息和/或信息。 该系统包括以下步骤:(a)接收关于预定个体的核苷酸序列相关信息,以及(b)从存储器中识别包括与每个个体相关的核苷酸序列相关信息组,所述核苷酸序列相关信息组包括多个组,位置信息表示位置 与位置信息对应的核苷酸序列和核苷酸序列相关信息是相互关联的,核苷酸序列相关信息组包括与所接受的核苷酸序列相关信息一致的核苷酸序列相关信息。
    • 8. 发明申请
    • Method for producing borazine compound
    • 环硼氮烷化合物的制备方法
    • US20060178535A1
    • 2006-08-10
    • US11346545
    • 2006-02-02
    • Tetsuya YamamotoTakuya Kamiyama
    • Tetsuya YamamotoTakuya Kamiyama
    • C07F5/02C07F9/02
    • C07F5/022
    • In a synthesis of a borazine compound by a reaction of an alkali boron hydride represented by ABH4 (A represents lithium atom, sodium atom or potassium atom) and an amine salt represented by (RNH3)nX (R represents a hydrogen atom or an alkyl group, X represents a sulfate group or a halogen atom, and n is 1 or 2), or b) diborane (B2H6) and an amine represented by RNH2 (R represents a hydrogen atom or an alkyl group), a water content of raw material is controlled below a prescribed value; mixed solvents containing solvents each having a prescribed boiling point are used as a solvent for reaction; or a raw material is gradually fed to a reactor in a reaction. Or, a borazine compound is subjected to distillation purification treatment and filtration treatment. By such a method, a high purity of borazine compound can be produced safely and in a high yield.
    • 在由ABH 4(A表示锂原子,钠原子或钾原子)表示的碱金属硼氢化物与(RNH 3)表示的胺盐的反应合成环硼氮烷化合物时, X(R表示氢原子或烷基,X表示硫酸基或卤素原子,n为1或2),或b)乙硼烷(B < (R 2表示氢原子或烷基)表示的胺,原料的水分含量为 控制在规定值以下; 使用含有各自具有规定沸点的溶剂的混合溶剂作为反应用溶剂; 或者原料在反应中逐渐进料到反应器中。 或者,将环硼氮烷化合物进行蒸馏纯化处理和过滤处理。 通过这种方法,可以安全地且高产率地制备高纯度的环硼氮烷化合物。
    • 9. 发明申请
    • Information processing system using base sequence relevant information
    • 信息处理系统使用基本序列相关信息
    • US20060149502A1
    • 2006-07-06
    • US10543759
    • 2004-02-25
    • Takamasa KatoTakeo MorimotoHitoshi MatsuoHideyuki BanToru HisamitsuTakuya Kamiyama
    • Takamasa KatoTakeo MorimotoHitoshi MatsuoHideyuki BanToru HisamitsuTakuya Kamiyama
    • G06F15/00
    • G16B20/00G16B30/00
    • This invention provides a method for processing information that allows the discovery of a correlation between predetermined individual-related information and nucleotide sequence-related information concerning an individual. This method comprises: step (a) of calculating a percentage for each piece of nucleotide sequence-related information using a first occurrence frequency and a second occurrence frequency, wherein the first occurrence frequency is calculated for each possible piece of nucleotide sequence-related information in a given position in a nucleotide sequence based on a predetermined population and the second occurrence frequency is calculated for each possible piece of nucleotide sequence-related information in the aforementioned position based on the population gathered for predetermined individual-related information concerning an individual; and step (b) of associating the percentage calculated in step (a) with positional information representing the aforementioned position and with the nucleotide sequence-related information for each the predetermined piece of individual-related information.
    • 本发明提供一种用于处理信息的方法,其允许发现预定的个体相关信息与关于个体的核苷酸序列相关信息之间的相关性。 该方法包括:(a)使用第一次出现频率和第二次出现频率计算每个核苷酸序列相关信息的百分比,其中针对每个可能的核苷酸序列相关信息片段计算第一次出现频率 基于针对与个人相关的预定个人相关信息收集的群体,在基于预定群体的核苷酸序列中的给定位置和针对上述位置中的每个可能的核苷酸序列相关信息片段计算第二出现频率; 以及将步骤(a)中计算的百分比与表示上述位置的位置信息和每个预定个体相关信息的核苷酸序列相关信息相关联的步骤(b)。
    • 10. 发明授权
    • Method for producing borazine compound
    • 环硼氮烷化合物的制备方法
    • US07786324B2
    • 2010-08-31
    • US11845322
    • 2007-08-27
    • Tetsuya YamamotoTakuya Kamiyama
    • Tetsuya YamamotoTakuya Kamiyama
    • C07F5/02
    • C07F5/022
    • In a synthesis of a borazine compound by a reaction of an alkali boron hydride represented by ABH4 (A represents lithium atom, sodium atom or potassium atom) and an amine salt represented by (RNH3)nX (R represents a hydrogen atom or an alkyl group, X represents a sulfate group or a halogen atom, and n is 1 or 2), or b) diborane (B2H6) and an amine represented by RNH2 (R represents a hydrogen atom or an alkyl group), a water content of raw material is controlled below a prescribed value; mixed solvents containing solvents each having a prescribed boiling point are used as a solvent for reaction; or a raw material is gradually fed to a reactor in a reaction. Or, a borazine compound is subjected to distillation purification treatment and filtration treatment. By such a method, a high purity of borazine compound can be produced safely and in a high yield.
    • 在由ABH4(A表示锂原子,钠原子或钾原子)和由(RNH3)nX表示的胺盐(R表示氢原子或烷基)表示的碱金属硼氢化物的反应中合成环硼氮烷化合物 ,X表示硫酸基或卤素原子,n为1或2),或b)乙硼烷(B2H6)和由RNH2(R表示氢原子或烷基)表示的胺,原料的水分 被控制在规定值以下; 使用含有各自具有规定沸点的溶剂的混合溶剂作为反应用溶剂; 或者原料在反应中逐渐进料到反应器中。 或者,将环硼氮烷化合物进行蒸馏纯化处理和过滤处理。 通过这种方法,可以安全地且高产率地制备高纯度的环硼氮烷化合物。