Abstract:
PROBLEM TO BE SOLVED: To increase the S/N ratio in the detection of the occurrence of hybridization to increase the detection accuracy. SOLUTION: The hybridization between a probe nucleic acid chain and a target nucleic acid chain is allowed to proceed in a reaction system, and then the temperature of the reaction system where the hybridization proceeds is raised to a temperature higher than a predetermined temperature, thereby increasing the S/N ratio in the detection of the hybridization. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide positional information and displacement information of material utilizing evanescent light illumination technology. SOLUTION: In this method, first a detected material T is fixed on interface S which may generate evanescent light P E by utilizing such a nature that intensity of the evanescent light P E will exponentially and rapidly attenuate with increase in distance Z from the interface S, while acquiring positional information Z and displacement information (Δz) of the above detected material T based on the fluorescence intensity I derived from the above detected material T excited by the above evanescent light P E . By using these positional information Z and displacement information (Δz), structure or variation of the material, its base sequence, presence or status of any interaction between materials, etc. can be acquired. COPYRIGHT: (C)2007,JPO&INPIT
Abstract translation:要解决的问题:提供利用ev逝光照明技术的材料的位置信息和位移信息。 解决方案:在该方法中,首先将检测到的材料T固定在可能产生ev逝光P E SB>的界面S上,利用这种性质,即消逝光P < / SB>将随着从界面S的距离Z的增加而指数地且快速地衰减,同时基于从上述检测到的材料T得到的荧光强度I获取上述检测到的材料T的位置信息Z和位移信息(Δz) 上述消逝光P E SB>。 通过使用这些位置信息Z和位移信息(Δz),可以获得材料的结构或变化,其基本顺序,材料之间任何相互作用的存在或状态等。 版权所有(C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a detection surface suitable for quantifying the interaction between substances, and a control method of the fixing density of a probe substance to the detection surface. SOLUTION: The detection surface is the surface of the solid phase facing a reaction field 3 for advancing the interaction between substances and is constituted by respectively bonding an aminosilane compound 1 having a free amino acid and an aminosilane compound 2, of which the amino group is blocked, to the surface S of the solid phase in a predetermined ratio through silane coupling reaction. A sensor chip constituted by providing the detection surface to a substrate and a control technique of the fixing density of the probe substance 5 to the surface S of the solid phase are also disclosed. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a full-color reversible multicolor thermal recording medium which is free from color fogging and has clear development/extinguishment of color and a clear contrast and which has an image stability excellent for practical use and enables repeated development/extinguishment of an arbitrary color tone. SOLUTION: Recording layers 11-13 containing respectively reversible thermal color-developing compositions different in a developed hue from each other are formed separately/independently in sequence from the side of a support base 1, in the surface direction of a support base 1. The recording layers 11-13 contain respectively photothermal conversion compositions which absorb near-infrared rays of different wavelength regions from each other and emit heat, and structures are specified concretely as to the photothermal conversion compositions in the second recording layers of at least the second layer and after. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a stick-on seat material which contains a reversible multi-color recording layer having clear coloring/decoloring and contrast to enable repetitive recording/clearing of information, and a card. SOLUTION: The reversible multi-color recording layer 10 is formed by separating/laminating recording layers 11-13 containing a plurality of reversible thermal coloring compositions with various coloring tones. These reversible thermal coloring compositions provide the stick-on seat material 20 which should contain photothermal conversion material absorbing respective infrared with different wavelength band and heat-generating, and a card. COPYRIGHT: (C)2004,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a recorder for a reversible multi-color thermal recording medium capable of recording/erasing information repeatedly. SOLUTION: The recorder comprises laser light oscillating means 30, 33 and 36 for irradiating a reversible multi-color recording medium 10(70) with a plurality of laser lights having different wavelengths, a means for scanning the surface of the reversible multi-color recording medium 10(70) with laser light, a means for modulating the output of laser light selectively depending on the scanning position and recording information, and lens systems 51-53 for directing the plurality of laser lights having different wavelengths toward an optical deflector 24 from different directions wherein the reversible multi-color recording medium 10(70) is irradiated, at the same position thereof, with the plurality of laser lights deflected to different directions by the optical deflector 24. COPYRIGHT: (C)2004,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a reversible multi-color thermosensitive recording medium which shows stable color development/discoloration and a sharp image contrast, outstanding image stability and is capable of rapidly printing/erasing an image, and a recording method. SOLUTION: The reversible multi-color recording medium 10 is formed of recording layers 11 to 13 separately laminated in the plane direction of a support substrate 1. The recording layers 11 to 13 contain a plurality of reversible thermosensitive color developing compositions with different developed color tones and the reversible thermosensitive color developing compositions contain a photothermal conversion material which absorbs infrared rays of respectively different wavelength ranges and generates heat. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To reduce jitter in pixel display of an optical element constituting a display or the like. SOLUTION: This optical element is a fiber waveguide type optical element 10 which has a core part 12 in a pipe shaped clad part 11 and has constitution in which a medium 14 having flow property is enclosed in the inside of the core part 12 so as to be movable and the element has a light source 21, a medium pouring means 25, a liquid sending means 22, a light detecting means 30 which detects light to be released from the end face 14f of the medium and makes a position and time where and when the light is released signals, and a control part 24 for controlling the timing of the light to be emitted from the light source 21. The element adjusts a pixel display position by controlling light emission timing from the light source 21 with the control part 24 in accordance with signals from the light detecting means 30. COPYRIGHT: (C)2004,JPO
Abstract:
PROBLEM TO BE SOLVED: To improve abrasion resistance and weatherability of a magnetic disc. SOLUTION: This lubricant applied on the magnetic layer of the magnetic disc contains a compound comprising a perfluoropolyether having terminal carboxylic groups and a primary or a secondary amine. It is essential that a partially fluorinated hydrocarbon group or a fluorinated carbon group is bonded to nitrogen atoms in the molecule.
Abstract:
PROBLEM TO BE SOLVED: To obtain a lubricant avoiding increase of surface energy and decrease of a coating ratio with maintaining strong adhesiveness with the surface of a magnetic recording medium and provide the magnetic recording medium. SOLUTION: This lubricant for magnetic recording medium contains a perfluoropolyether-based compound which is a salt compound of a carboxylic acid with a perfluoropolyether having a terminal amino group and expressed by formula (1) (wherein Rf expresses a perfluoropolyether group; Ra expresses a partially fluorinated hydrocarbon group or a fuluorinated carbon group; R1 and R2 express each H, a hydrocarbon group, a partially fluorinated hydrocarbon group or a fluorinated carbon group) or formula (2) (wherein Rf expresses a perfluoropolyether group; Ra expresses a partially fluorinated hydrocarbon group or a fuluorinated carbon group; R3 , R4 , R5 and R6 express each H, a hydrocarbon, a partially fluorinated hydrocarbon group or a fluorinated carbon group).