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    • 4. 发明申请
    • Manufacturing Method and Apparatus of Optical Material
    • 光学材料的制造方法和装置
    • US20090156781A1
    • 2009-06-18
    • US12336934
    • 2008-12-17
    • Masaki IharaToru SaitoAkinori Yamamoto
    • Masaki IharaToru SaitoAkinori Yamamoto
    • C08G75/04G01N11/00
    • G02B1/04B29C39/006B29D11/00442B29L2011/0016C08G75/08C08K3/06C08K3/30C08L81/02C08L2666/54
    • A manufacturing method of an optical material, the method including: blending an inorganic compound (a) containing at least one of a sulfur atom and a selenium atom and a compound (b) represented by a following formula (1) in a tank, the compound (a) and the compound (b) being blended at a ratio of 1 mass % or more and 50 mass % or less of the compound (a) and 50 mass % or more and 99 mass % or less of the compound (b) relative to a total mass of a mixture of the compound (a) and the compound (b); mixing a compound (c) containing at least one thiol (SH) group; preliminarily polymerizing the compounds; cooling the compounds; and deaerating the compounds, in which a viscosity of the composition stored in the tank is controlled during at least one of the preliminarily polymerizing, the cooling and the deaerating. (m represents an integer of 0 to 4, and n represents an integer of 0 to 2)
    • 光学材料的制造方法,其特征在于,将含有硫原子和硒原子中的至少一种的无机化合物(a)和下述式(1)所示的化合物(b))混合在槽中, 化合物(a)和化合物(b)以化合物(a)的1质量%以上且50质量%以下的比例和50质量%以上且99质量%以下的化合物(b )相对于化合物(a)和化合物(b)的混合物的总质量; 混合含有至少一个硫醇(SH)基团的化合物(c) 预先使化合物聚合; 冷却化合物; 并且在至少一个预聚合,冷却和脱气的过程中控制储存在罐中的组合物的粘度的化合物脱气。 (m表示0〜4的整数,n表示0〜2的整数)
    • 6. 发明授权
    • Manufacturing method and apparatus of optical material
    • 光学材料的制造方法和装置
    • US08013084B2
    • 2011-09-06
    • US12336934
    • 2008-12-17
    • Masaki IharaToru SaitoAkinori Yamamoto
    • Masaki IharaToru SaitoAkinori Yamamoto
    • C08G75/04C08G75/08C08L81/02
    • G02B1/04B29C39/006B29D11/00442B29L2011/0016C08G75/08C08K3/06C08K3/30C08L81/02C08L2666/54
    • A manufacturing method of an optical material, the method including: blending an inorganic compound (a) containing at least one of a sulfur atom and a selenium atom and a compound (b) represented by a following formula (1) in a tank, the compound (a) and the compound (b) being blended at a ratio of 1 mass % or more and 50 mass % or less of the compound (a) and 50 mass % or more and 99 mass % or less of the compound (b) relative to a total mass of a mixture of the compound (a) and the compound (b); mixing a compound (c) containing at least one thiol (SH) group; preliminarily polymerizing the compounds; cooling the compounds; and deaerating the compounds, in which a viscosity of the composition stored in the tank is controlled during at least one of the preliminarily polymerizing, the cooling and the deaerating (m represents an integer of 0 to 4, and n represents an integer of 0 to 2).
    • 光学材料的制造方法,其特征在于,将含有硫原子和硒原子中的至少一种的无机化合物(a)和下述式(1)所示的化合物(b))混合在槽中, 化合物(a)和化合物(b)以化合物(a)的1质量%以上且50质量%以下的比例和50质量%以上且99质量%以下的化合物(b )相对于化合物(a)和化合物(b)的混合物的总质量; 混合含有至少一个硫醇(SH)基团的化合物(c) 预先使化合物聚合; 冷却化合物; 在预聚合,冷却和脱气中的至少一种(m表示0〜4的整数,n表示0〜0的整数)中控制储存在罐中的组合物的粘度的化合物脱气 2)。
    • 7. 发明申请
    • FLUOROIMMUNOASSAY METHOD
    • 荧光分光法
    • US20120270338A1
    • 2012-10-25
    • US13510105
    • 2010-11-19
    • Hiroshi UedaRyoji AbeMasaki IharaHiroaki Takagi
    • Hiroshi UedaRyoji AbeMasaki IharaHiroaki Takagi
    • G01N21/76C07K17/02
    • G01N33/582A61K49/0058C07K16/18C07K16/44C07K2317/56C07K2317/622C07K2317/92G01N21/6428G01N33/6857G01N2021/6439
    • An object is to provide an immunoassay method requiring neither a solid-phase immobilization step nor a washing step, enabling quick and simple quantitative measurement of a target substance in a liquid phase and capable of visualizing an antigen. Such an object is attained by measuring the concentration of a target antigen present in a test substance by sequentially performing a step (a) of bringing an antibody light-chain variable region polypeptide and an antibody heavy-chain variable region polypeptide labeled with a fluorescent dye into contact with an antigen in a test substance in a liquid phase; or bringing an antibody heavy-chain variable region polypeptide and an antibody light-chain variable region polypeptide labeled with a fluorescent dye into contact with an antigen in a test substance in a liquid phase; a step (b) of measuring the fluorescence intensity of the fluorescent dye; and a step (c) of computationally obtaining the level of the antigen contained in the test substance with reference to a positive correlation between the concentration of the antigen in a liquid phase and the fluorescence intensity of the fluorescent dye.
    • 本发明的目的是提供一种不需要固相固定步骤和洗涤步骤的免疫测定方法,能够快速和简单地定量测定液相中的目标物质并能够使抗原呈现。 通过依次进行使荧光染料标记的抗体轻链可变区多肽和抗体重链可变区多肽的步骤(a),测定待测物质中存在的靶抗原的浓度, 与液相中测试物质中的抗原接触; 或使用荧光染料标记的抗体重链可变区多肽和抗体轻链可变区多肽与液相中的测试物质中的抗原接触; 测量荧光染料的荧光强度的步骤(b); 和(c)参考在液相中的抗原浓度与荧光染料的荧光强度之间的正相关性来计算获得测试物质中含有的抗原水平的步骤(c)。
    • 10. 发明申请
    • IMMOBILIZATION SUBSTRATE AND METHOD FOR PRODUCING THE SAME
    • 固定基材及其制造方法
    • US20110237462A1
    • 2011-09-29
    • US13132834
    • 2009-12-04
    • Koichi MinamiHirohiko TsuzukiHiroshi UedaMasaki Ihara
    • Koichi MinamiHirohiko TsuzukiHiroshi UedaMasaki Ihara
    • C40B40/10C40B50/14
    • G01N33/54353
    • An antibody-fragment-immobilizing substrate includes a substrate and at least one set of antibody fragments, wherein antibody fragments of each set include at least two types of separate antibody fragments, the at least two types of separate antibody fragments include at least one type of labeled antibody fragment having a labeled site labeled with a luminescent substance and at least one type of acceptor antibody fragment having an acceptor site for accepting emission from the labeled antibody fragment, and the at least one type of labeled antibody fragment and the at least one type of acceptor antibody fragment are capable of cooperatively recognizing one type of antigen in combination and are independently immobilized on the substrate in a positional relationship that allows each of the antibody fragments in one set to bind to the same antigen.
    • 抗体片段固定的底物包括底物和至少一组抗体片段,其中每组的抗体片段包括至少两种类型的分离的抗体片段,所述至少两种类型的分离的抗体片段包括至少一种类型的 具有用发光物质标记的标记位点的标记抗体片段和至少一种具有用于接受来自标记抗体片段的发射的受体位点的受体抗体片段,以及至少一种类型的标记抗体片段和至少一种类型 的受体抗体片段能够组合地协同识别一种类型的抗原,并以允许一组中的每个抗体片段结合相同抗原的位置关系独立地固定在底物上。