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    • 1. 发明专利
    • Anti-fogging laminate and its manufacturing method
    • 防雾层压板及其制造方法
    • JP2006168033A
    • 2006-06-29
    • JP2004361221
    • 2004-12-14
    • Kawamura Inst Of Chem Res財団法人川村理化学研究所
    • TAKADA TETSUOHARAGUCHI KAZUTOSHI
    • B32B27/18C09D4/02C09K3/18
    • PROBLEM TO BE SOLVED: To provide an anti-fogging laminate having the excellent adhesion with a base material, enhanced in dynamic physical properties and heat resistance, and excellent in transparency, and its manufacturing method capable of forming a homogeneous coating film in an extremely short time.
      SOLUTION: The anti-fogging laminate is constituted by providing a transparent dried gel layer, which is constituted by forming three dimensional meshes from a water-soluble organic polymer and a water-swellable clay mineral and has a thickness of 1-500 μm, on the surface of the base material. A manufacturing method of an organic and inorganic composite hydrogel is constituted by irradiating a water-soluble acrylic monomer with an energy beam in the coexistence of the water-swellable clay mineral in a solution prepared by dispersing a water-insoluble polymerization initiator in an aqueous medium to react the same.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:提供一种具有优异的基材粘合性,增强动力学物理性能和耐热性,透明度优异的防雾层压体及其制造方法,其能够形成均匀的涂膜 极短的时间。 防雾层压板由透明干燥凝胶层构成,该透明干燥凝胶层由水溶性有机聚合物和水溶胀性粘土矿物形成三维网状构成,厚度为1-500 在基材的表面上。 有机和无机复合水凝胶的制造方法通过在将水溶性聚合引发剂分散在水性介质中而制备的溶液中,将水溶性丙烯酸类单体与水溶胀性粘土矿物共存, 反应一样。 版权所有(C)2006,JPO&NCIPI
    • 2. 发明专利
    • Method for detecting polynucleotide or oligonucleotide and micro fluid device
    • 检测多核苷酸或寡核苷酸和微流体装置的方法
    • JP2005224110A
    • 2005-08-25
    • JP2004033301
    • 2004-02-10
    • Kawamura Inst Of Chem Res財団法人川村理化学研究所
    • TAKADA TETSUOANAZAWA TAKANORI
    • G01N33/53C12M1/00C12N15/09C12Q1/68G01N21/78G01N33/58G01N37/00
    • PROBLEM TO BE SOLVED: To provide a method for rapidly detecting the presence or absence or amount of a polynucleotide or an oligonucleotide having a target base sequence in a specimen solution with good accuracy, especially a method for detecting SNP (single nucleotide polymorphism) or single nucleotide mutation. SOLUTION: The method for detecting the polynucleotide or oligonucleotide comprises bringing the specimen solution containing the polynucleotide or oligonucleotide which is the object of detection into contact with each probe-immobilizing part of a micro fluid device having a porous layer where a probe is immobilized on the surface in each capillary-like channel, then washing the probe-immobilizing part, removing components of the specimen solution unbound to the probe and subsequently measuring the fluorescence intensity of the probe-immobilizing part. In the method, the transmittance of light at 670 nm wavelength in a site for measuring the fluorescence intensity of the porous layer where the probe is immobilized is 10-60% and the measurement of the fluorescence intensity is made at ≥650 nm wavelength. COPYRIGHT: (C)2005,JPO&NCIPI
    • 待解决的问题:提供一种用于以高精度快速检测样品溶液中具有靶碱基序列的多核苷酸或寡核苷酸的存在或量的方法,特别是检测SNP(单核苷酸多态性 )或单核苷酸突变。 检测多核苷酸或寡核苷酸的方法包括使含有检测对象的多核苷酸或寡核苷酸的检测体溶液与具有探针的多孔层的微流体装置的每个探针固定部分接触 固定在每个毛细管样通道的表面上,然后洗涤探针固定部分,除去未结合到探针的样品溶液的组分,随后测量探针固定部分的荧光强度。 在该方法中,在测定固定有探针的多孔层的荧光强度的部位的670nm波长的光的透射率为10〜60%,荧光强度的测定为≥650nm以上。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Microplate and producing method thereof
    • 麦芽糖及其制备方法
    • JP2003066033A
    • 2003-03-05
    • JP2001252781
    • 2001-08-23
    • Kawamura Inst Of Chem Res財団法人川村理化学研究所
    • TAKADA TETSUOTERAMAE ATSUSHIANAZAWA TAKANORI
    • G01N33/48C08J7/04G01N1/00
    • PROBLEM TO BE SOLVED: To provide a microplate having various physical properties such as a microplate capable of easily making a well fine and suppressing the adsorption of an organism component low by making the well surface hydrophilic, a microplate having a surface capable of adsorbing or covalent-bonding a target protein such as antigen, or a microplate hardly causing the leakage of an aqueous solution having a hydrophilic well bottom part and a hydrophobic well wall part to the outside; and an easy producing method thereof.
      SOLUTION: This microplate comprises a number of wells as sample housing recessed parts aligned on a base material, at least one of the wall part and bottom part of the well being formed of the hardened matter of an active energy ray-hardenable resin composition A.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供具有各种物理性质的微孔板,例如微孔板,其能够容易地制备出良好的微细孔,并通过使孔表面亲水性来抑制生物体组分的吸附,使微孔板具有能够吸附或共价的表面 使目标蛋白如抗原或微孔板难以将具有亲水性井底部分和疏水性井壁部分的水溶液泄漏到外部; 及其易于制备的方法。 解决方案:该微孔板包括许多孔,作为样品容器,凹入部分对准在基材上,孔的壁部分和底部中的至少一个由活性能量射线可硬化树脂组合物A的硬化物形成。
    • 9. 发明专利
    • Micro fluid device pump and fluid transfer method
    • 微流体装置泵和流体传递方法
    • JP2005163585A
    • 2005-06-23
    • JP2003401503
    • 2003-12-01
    • Kawamura Inst Of Chem Res財団法人川村理化学研究所
    • ANAZAWA TAKANORITAKADA TETSUO
    • B81B3/00F04B43/12
    • PROBLEM TO BE SOLVED: To provide a fluid transfer method in which a pump mechanism which is small and simple in structure can be used, and a complicated control is eliminated, and a micro fluid device pump equipped with the pump mechanism which is simple in structure, can be easily manufactured, is excellent in quantitative determination, and can be also applied to gas transfer. SOLUTION: In the fluid transfer method, there is used the micro fluid device pump comprising a valve which opens by producing a pressure difference with fluid compression midway along a capillary tube passage, a first compression part in which a passage cross section is deformed with compression from outside in the passage, and a second compression part which is deformed with pressure from outside between the valve and the first compression part. (1) After the first compression part is compressed to deform the passage cross section, (2) while the first compression part is kept to compress, the second compression part is compressed from outside to deform the passage cross section, the pressure difference is produced in the valve by fluid compression to open the valve, the fluid is transferred from the first compression part into the valve by passing through the valve, and (3) the compression at the first compression part and the second compression part is released. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种流体传递方法,其中可以使用结构简单且结构简单的泵机构,并且消除了复杂的控制,以及配备有泵机构的微流体装置泵 结构简单,可轻松制造,定量测定性能优异,也可应用于气体输送。 解决方案:在流体转移方法中,使用微流体装置泵,该微流体装置泵包括通过沿着毛细管通道在中途产生压力差而打开的阀,第一压缩部分,其中通道横截面为 在通道内从外部压缩变形,以及第二压缩部,其在阀和第一压缩部之间从外部受压而变形。 (1)在第一压缩部被压缩以使通道横截面变形后,(2)当第一压缩部保持压缩时,第二压缩部从外部被压缩以使通道横截面变形,产生压差 在通过流体压缩的阀门中打开阀门,流体通过阀门从第一压缩部件转移到阀门中,(3)第一压缩部件和第二压缩部件处的压缩被释放。 版权所有(C)2005,JPO&NCIPI
    • 10. 发明专利
    • Temperature conduction device, manufacturing method for block body therefor and temperature conduction method
    • 温度传导装置及其制造方法及其温度传导方法
    • JP2005005434A
    • 2005-01-06
    • JP2003166334
    • 2003-06-11
    • Kawamura Inst Of Chem Res財団法人川村理化学研究所
    • ANAZAWA TAKANORITERAMAE ATSUSHITAKADA TETSUO
    • H05K7/20
    • PROBLEM TO BE SOLVED: To provide a temperature conduction device by which a temperature distribution having a steep temperature gradient, in which a specified temperature difference is set within the minute distance range of a temperature conductive material such as a micro-fluid element, can be formed accurately, a heater and a radiator can be miniaturized and the waste of energy is prevented, and a method for forming the steep temperature gradient in which the specified temperature difference is set to the temperature conductive material.
      SOLUTION: The temperature conduction device has a block body and a temperature control unit, the temperature gradient can be generated on the certain surface of the block body, and the temperature of the certain surface is conducted to the temperature conductive material, a thermal conductivity running parallel with the certain surface and being directed in the direction that the temperature gradient can be generated is lower than that in the vertical direction to the certain surface and is kept within a range of 0.3 to 10 W m
      -1 K
      -1 in the block body. In the conduction device, the inside of a matrix composed of a member (1) is filled with a member (2) having the thermal conductivity different from the member (1) with an anisotropy in the block body.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种温度传导装置,通过该温度传导装置具有陡峭的温度梯度的温度分布,其中将特定的温度差设定在诸如微流体元件的温度导电材料的微小距离范围内 可以精确地形成,加热器和散热器可以小型化,并且可以防止能量的浪费,以及形成其中对温度导电材料设定了规定温度差的陡峭温度梯度的方法。

      解决方案:温度传导装置具有块体和温度控制单元,可以在块体的某个表面上产生温度梯度,并且将某一表面的温度传导到导热材料的温度, 与特定表面平行且沿着可产生温度梯度的方向导向的热导率低于在某一表面的垂直方向上的导热率,并且保持在0.3至10Wm -1的范围内 K -1 。 在导电装置中,由构件(1)构成的基体的内部填充有具有不同于构件(1)的导热性的构件(2),并且在块体中具有各向异性。 版权所有(C)2005,JPO&NCIPI