Nagino
Goshu Nagino, Kawasaki-Shi JP
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20090138263 | Data Process unit and data process unit control program - To provide a data process unit and data process unit control program which are suitable for generating acoustic models for unspecified speakers taking distribution of diversifying feature parameters into consideration under such specific conditions as the type of speaker, speech lexicons, speech styles, and speech environment and which are suitable for providing acoustic models intended for unspecified speakers and adapted to speech of a specific person. | 05-28-2009 |
Hideki Nagino, Fukuoka JP
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20150134786 | SYSTEM, METHOD, AND MEDIUM - A system includes first and second apparatuses configured to communicate with a server apparatus; and a third apparatus configured to transmit data to the first apparatus and record number of transfer of the data in the system, the data including information on a destination of the data and the number of transfer, wherein the first apparatus is configured to set the destination to the second apparatus and update the number of transfer, when receiving the data and not being allowed to communicate with the server apparatus, and transmit an updated data including information on the set destination and the updated number of transfer, to the third apparatus, and the third apparatus is configured to transmit the updated data to the second apparatus based on the set destination when the updated number of transfer is equal to or smaller than the recorded number of transfer when receiving the updated data. | 05-14-2015 |
Hiroyuki Nagino, Nishio-City JP
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20160052392 | VEHICLE DISPLAY DEVICE - A vehicle display device includes an indicator that luminously displays a display image on its screen by lighting and stops the luminous display of the display image by extinction, and a display panel that includes a light shielding part on a rear surface of the display panel. The light shielding part light-shields a surrounding part of a transmitting window, through which an image light of the display image is transmitted to be capable of being visually recognized from a front side. A transmission region of a front surface of the display panel that is located at least on the front side of the transmitting window is occupied by a planar part that is formed in a flat surface shape along the screen, and a plurality of projecting surface parts that project from the planar part into a curved projecting surface shape. An area occupancy of the planar part at the transmission region is adjusted to be equal to or larger than an area occupancy of all the plurality of projecting surface parts at the transmission region. | 02-25-2016 |
Kunihisa Nagino, Kamakura JP
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20110015097 | SUPPORT CARRYING AN IMMOBILIZED SELECTIVE BINDING SUBSTANCE - A support carrying an immobilized selective binding substance, that the support surface has a polymer containing the structural unit represented by the following General Formula (1) in an amount of 10% or more with respect all monomer units, and a selective binding substance is immobilized on the support surface by binding to the carboxyl group formed thereon via a covalent bond: | 01-20-2011 |
20110028347 | SUPPORT CARRYING AN IMMOBILIZED SELECTIVE BINDING SUBSTANCE - A support carrying an immobilized selective binding substance, that the support surface has a polymer containing the structural unit represented by the following General Formula (1) in an amount of 10% or more with respect all monomer units, and a selective binding substance is immobilized on the support surface by binding to the carboxyl group formed thereon via a covalent bond: | 02-03-2011 |
20150276604 | DETECTING METHOD, MICROARRAY ANALYZING METHOD, AND FLUORESCENCE READING DEVICE - A detecting method includes irradiating a substrate having a concave and convex shape, with laser light collected by a lens; and detecting a height difference of the concave and convex shape by acquiring light intensity of reflected light and/or scattered light from the substrate as image data, and a light irradiation surface of the substrate is arranged at a position closer to the lens than a focal position of the lens is, reflected light and/or scattered light from the light irradiation surface is received as detected light, and a height difference of the substrate is detected based on a change in intensity of the received light. | 10-01-2015 |
Kunihisa Nagino, Kamakura-Shi JP
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20130303403 | MICROARRAY ANALYSIS METHOD AND MICROARRAY READING DEVICE - A microarray analysis method, in which a microarray obtained by arranging probes on a substrate surface having an irregular shape is irradiated with excitation light and fluorescence amounts of the probes excited by the excitation light are obtained as numerical data, includes a step (a) of measuring the fluorescence amounts of the probes to acquire fluorescence image data, a step (b) of receiving reflected light and/or scattered light from the substrate surface to acquire the irregular shape of the substrate surface of the microarray as alignment image data based on the light receiving intensities of the light, and a step (c) of determining positions of the probes on the fluorescence image data based on the alignment image data. | 11-14-2013 |
20150098611 | DETERMINATION METHOD, DETERMINATION DEVICE, DETERMINATION SYSTEM, AND COMPUTER PROGRAM - A determination method for determining reliability of a selective binding amount of a substance to be examined obtained as detection intensity of a label when a labeled substance to be examined binds to a selective binding substance fixed as a spot on a carrier includes: determining a position of the spot in image data obtained by imaging the detection intensity in the carrier and extracting a pixel group corresponding to the spot; calculating a ratio or a difference between a median value of the detection intensity of the pixel group extracted at the determining and a median value of the detection intensity of the pixel group excluding a certain top proportion of and/or a certain bottom proportion of pixels; and determining quality of the reliability based on the ratio or the difference calculated at the calculating and a certain reference value. | 04-09-2015 |
Shinsuke Nagino, Tokyo-To JP
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20120138916 | DEVICE COMPRISING POSITIVE HOLE INJECTION TRANSPORT LAYER, METHOD FOR PRODUCING THE SAME AND INK FOR FORMING POSITIVE HOLE INJECTION TRANSPORT LAYER - A device including a substrate, two or more electrodes facing each other disposed on the substrate and a positive hole injection transport layer disposed between two electrodes among the two or more electrodes, wherein the positive hole injection transport layer contains a reaction product of a transition metal complex or complexes, and wherein at least one or more kinds of transition metals selected from the group consisting of vanadium, rhenium and platinum, or a mixture of molybdenum and one or more kinds of transition metals selected from the group consisting of vanadium, rhenium and platinum is contained in a central metal or metals of the transition metal complex or complexes. | 06-07-2012 |
20150252157 | METAL PARTICLE DISPERSION, ARTICLE AND SINTERED FILM USING METAL PARTICLE DISPERSION, AND METHOD FOR PRODUCING SINTERED FILM - The present invention is to provide a metal particle dispersion which has low viscosity and excellent dispersibility and dispersion stability, and in which the precipitation of the metal particles is inhibited. Disclosed is a metal particle dispersion comprising metal particles, a dispersant and a solvent, wherein the metal particles contain one or more selected from the group consisting of gold, silver, copper, nickel, platinum, palladium, molybdenum, aluminum, antimony, tin, chromium, lanthanum, indium, gallium and germanium, and wherein the dispersant is a graft copolymer having at least one constitutional unit represented by the following general formula (I) and at least one constitutional unit represented by the following general formula (II), and in which at least part of nitrogen sites of the constitutional units represented by the general formula (I) each form a salt with at least one selected from the group consisting of a halogenated hydrocarbon, an acidic phosphorus compound represented by the following general formula (V), and a sulfonic acid compound represented by the following general formula (VI): | 09-10-2015 |
Toshifumi Nagino, Osaka JP
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20090051288 | PLASMA DISPLAY PANEL - A plasma display panel includes a front panel and a rear panel. The front panel includes a front substrate and a display electrode. The rear panel includes a rear substrate, a barrier rib, a data electrode, and a phosphor layer. The rear substrate is arranged while facing the front substrate to form a discharge space between the front panel and the rear substrate. The barrier rib is formed at the rear substrate to partition the discharge space, the data electrode is formed while intersecting the display electrode, and the phosphor layer is formed between the barrier ribs. The barrier rib is formed at the divided areas separately in a direction parallel to the data electrode, and the barrier ribs formed at the divided areas separately have different properties among the plurality of areas. A large-screen plasma display panel having a high-resolution display quality is easily realized by the above configuration. | 02-26-2009 |
20090212703 | PLASMA DISPLAY PANEL - The plasma display panel includes: a front panel having a front substrate and display electrodes; and a rear panel having a rear substrate, a barrier rib, a data electrode and a phosphor layer. The rear substrate faces the front substrate to form a discharge space therebetween. The barrier rib is disposed on the rear substrate to divide the discharge space. The data electrode intersects the display electrodes. The phosphor layer is disposed between the barrier ribs. Further, the display electrodes are formed at a plurality of divided areas separately. The plurality of divided areas is the areas that the front substrate is divided into by a boundary intersecting the display electrodes. The display electrodes formed in the plurality of divided areas have unevenesses in profiles thereof at the boundary between the plurality of divided areas. This configuration easily provides a plasma display panel having a large screen and high resolution as display quality. | 08-27-2009 |
20150072212 | SEPARATOR FOR NONAQUEOUS ELECTROLYTE SECONDARY BATTERY, NONAQUEOUS ELECTROLYTE SECONDARY BATTERY UTILIZING SAME, AND MANUFACTURING METHODS OF SAME - The separator of a nonaqueous electrolyte secondary battery is characterized by having a composite nanofiber fiber which is a nanosize fiber that contains two or more kinds of aqueous resins whose melting points are different. | 03-12-2015 |
20150207167 | THIN BATTERY AND PRODUCTION METHOD THEREOF - Provided is a thin battery including: an electrode assembly; and a flexible housing configured to house the electrode assembly. The electrode assembly includes: a positive electrode in sheet form; a negative electrode in sheet form; and an electrolyte layer interposed therebetween. The electrolyte layer includes: a non-aqueous electrolyte; and a non-woven fabric sheet configured to retain the non-aqueous electrolyte. The non-woven fabric sheet includes a conjugated fiber including at least two kinds of macromolecules conjugated together. The at least two kinds of macromolecules include: a first macromolecule without a cross-linked structure; and a second macromolecule with a cross-linked structure. | 07-23-2015 |
20150249243 | SEPARATOR-INTEGRATED ELECTRODE AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY - Provided are a separator-integrated electrode and a nonaqueous electrolyte secondary battery with a reduced risk of a short circuit between electrodes due to precipitation of metallic lithium on a surface of an electrode mixture layer. A positive electrode ( | 09-03-2015 |
Toshifumi Nagino, Kadoma-Shi JP
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20080272684 | PLASMA DISPLAY PANEL AND METHOD FOR PRODUCING THE SAME - A method for producing a plasma display panel wherein the projection of the end portions of electrode in the widthwise direction are suppressed so that failure in insulation and pressure proof is not caused upon forming an electrode pattern by collectively exposing and developing a bus electrode having a two-layered structure. When the electrode pattern having two-layered structure by a photolithography method using a mask, exposure is made by applying light, while a part of a surface of portion of a paste film of an electrode material which portion to be formed into the electrode pattern is shield from the light, so that a dent is formed in the electrode surface after developing and the thermal shrinkage of the center portion and the thermal shrinkage of the end portions of the electrode in the widthwise direction are controlled separately by the dent. | 11-06-2008 |