Abstract:
It is intended to provide a kit or a device for the detection of esophageal cancer and a method for detecting esophageal cancer. The present invention provides a kit or a device for the detection of esophageal cancer, comprising nucleic acid(s) capable of specifically binding to miRNA(s) in a sample of a subject, and a method for detecting esophageal cancer, comprising measuring the miRNA in vitro.
Abstract:
This invention provides a kit or a device for the detection of pancreatic cancer, comprising a nucleic acid(s) capable of specifically binding to a miRNA(s) in a sample from a subject, and a method for detecting pancreatic cancer, comprising measuring the miRNA(s) in vitro.
Abstract:
A composition which contains a polynucleotide and an antibody as probes for detecting, determining or presuming the occurrence or metastasis of esophageal cancer; a kit; a DNA chip; and a method of detecting, determining or presuming the occurrence or metastasis of esophageal cancer by using the same.
Abstract:
A substrate for labo-on-a-chip comprising a resin base material and hydrophilic polymer bonded covalently to the surface thereof with a high energy beam, especially a protein treatment chip. A substrate for labo-on-a-chip capable of long time use while exhibiting cleaning resistant effect in which protein is not adsorbed to the surface of the base material can be provided. Since detection noise is reduced, a trace of protein can be analyzed with high accuracy and a polymer chip for protein electrophoresis having a microchannel can be provided.
Abstract:
A substance sensing tool using hollow nanoparticles characterized in that a specified substance recognizing molecule is introduced in a protein capable of incorporating a lipid bilayer to thereby form nanosized particles. Further, there is provided a relevant sensing method.
Abstract:
An optical recording medium for recording information by changing the phase of material from amorphus one to crystalline one and vice versa, including the following types. A type which comprises a transparent substrate, a first dielectric layer, a recording layer, a second dielectric layer, a light absorbing layer, and a light reflecting layer, the thickness of the second dielectric layer being in a range from 1 to 50 nm. A type which comprises a transparent substrate, a first dielectric layer, a recording layer, a second dielectric layer, and a light absorbing layer, the thickness of the second dielectric layer being in a range from 1 to 30 nm. A type which comprises a recording layer, a dielectric layer, a light reflecting layer, the thicknesses of the recording layer and the dielectric layer being in a range from 30 to 60 nm and in a range from 1 to 25 nm, respectively. A type in which the amplitudes of the signals reproduced from recording marks made at intervals longer than lambda /NA in the recording direction are less than five times those at intervals shorter than lambda /NA, where lambda is the wavelength of the recording light, and NA is the numerical aperture of the objective of the optical head. A type in which the C/N ratio of the signals reproduced from the former recording marks is lower than that of the latter. A type in which the areas of the former are smaller than those of the latter. A type in which the amplitudes of the signals reproduced from the latter which are overwritten on the former are more than five times those of the residual former after overwrite. Such a recording medium has good erasure characteristic, jitter characteristic, and durability against repeated overwrite.
Abstract:
PROBLEM TO BE SOLVED: To provide an inexpensive microfluid control member which can deal even with flow passages of a high aspect ratio in a simple manufacturing process step and realizes mass production. SOLUTION: The method of manufacturing the microfluid control member having a layer formed with microflow passages on a substrate comprises obtaining the microfluid control member having the microflow passages formed by applying a photosensitive paste composed of inorganic particulates and organic components containing photosensitive components as essential components on the substrate, then exposing the coating across a photomask and repeating such coating application and exposure one or a plurality of times to laminate the coatings, eluting the unexposed segments by development to form patterns, then removing the organic components by baking. COPYRIGHT: (C)2003,JPO
Abstract:
PROBLEM TO BE SOLVED: To provide a material for display not generating crosstalk and a paste for providing such a material at high yield. SOLUTION: In is a display material with a center-line average roughness (Ra) in length direction of barrier rib to of 0.05 to 0.30 μm or with a center-line average roughness in length direction of the barrier rib to and its side face within the range of 0.05 to 0.30 μm. Further, it is a photosensitive paste either containing a photosensitive organic component and a compound with average molecular weight of 200 to 7,000 at least having one filler with average particle size of 0.003 to 0.1 μm and a carboxyl group, or containing 1 to 15 weight percent of a photosensitive organic compound at least containing urethane compound, inorganic particles, and a coupling agent.
Abstract:
PROBLEM TO BE SOLVED: To provide a plasma display with high brightness and high color purity, and to provide a manufacturing method of the same. SOLUTION: For the manufacturing method of the plasma display comprising a member formed by welding a front panel and a back panel, having phosphor layers formed on the front panel and/or the back panel facing toward inner space, having discharge gas enclosed inside the inner space, the phosphor layer is treated under the condition with the temperature Ts of ranging 300-480 deg.C, and the oxygen partial pressure ratio PDO2 of ranging 0.001-0.1.
Abstract:
PROBLEM TO BE SOLVED: To provide a dielectric substance layer which eliminates infiltration of a bulkhead paste to the unevenness of the surface of a dielectric substance layer. SOLUTION: A plasma display panel according to the invention includes dielectric substance layer whose ten-point mean surface roughness is 0.2-0.8 μm, and a dielectric substance paste used therein contains at least a dispersing agent expressed by R1-R2-R3-R4 and a binder resin, where R1 and R4 are each either of hydrogen and hydroxyl radical, R2 is oligomer consisting of one or more alkylene oxide radical, R3 is either of alkyl radical, aryl radical, aralkyl radical having 1 to 20 carbons, either the same or different.