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Yasukochi

Hiroyuki Yasukochi, Kanagawa JP

Patent application numberDescriptionPublished
20100196526OPTICAL SHAPING APPARATUS AND SHAPING BASE - An optical shaping apparatus includes a light transmissive member, a shaping base, and a movement mechanism. The light transmissive member includes a regulation surface to regulate a liquid level of a photo-curable resin, and causes light used for curing the photo-curable resin to pass therethrough. The shaping base includes a support surface, a first end portion, and a second end portion, the support surface being opposed to the regulation surface and supporting a three-dimensionally shaped object that is formed by laminating the photo-curable resins cured by the light in a stepwise manner, the second end portion being on an opposite side of the first end portion. The movement mechanism moves the shaping base in a direction away from the light transmissive member so that the support surface is gradually moved away from the regulation surface from the first end portion side to the second end portion side.08-05-2010
20100214333THREE-DIMENSIONAL MODELING APPARATUS, CONTROL APPARATUS, CONTROL METHOD, AND THREE-DIMENSIONAL OBJECT - A three-dimensional modeling apparatus includes a stage, a head, an adjustment mechanism, an ejection command means, and a control means. On the stage, a powder material is accumulated. The head ejects ink to the powder material on the stage. The adjustment mechanism adjusts a relative height of the stage and the head for each predetermined layer thickness so that a three-dimensional object is formed on the stage by the predetermined layer thickness. The ejection command means causes the ink to be ejected from the head so that the powder material is colored a plurality of colors corresponding to multilevel luminance information items in a multivalued image obtained by performing a multivalued processing of luminance with respect to a two-dimensional cross-sectional image data of a modeling target object. The control means controls the adjustment mechanism and the ejection command means so that the multivalued image is drawn for each layer thickness.08-26-2010
20100228381THREE-DIMENSIONAL MODELING APPARATUS AND THREE-DIMENSIONAL OBJECT - A three-dimensional modeling apparatus includes a stage, a supply mechanism, a head, a movement mechanism, and a lifting and lowering mechanism. On the stage, a powder material is accumulated. The supply mechanism supplies the powder material on the stage for each predetermined layer thickness. The head ejects a liquid for forming a three-dimensional object to the powder material on the stage. The liquid is capable of binding the powder material. The movement mechanism moves the stage so that the liquid is supplied from the head to the powder material by the predetermined layer thickness. The lifting and lowering mechanism lowers the stage for each predetermined layer thickness.09-09-2010
20110101569THREE-DIMENSIONAL STEREOLITHOGRAPHY APPARATUS, THREE-DIMENSIONAL STEREOLITHOGRAPHY METHOD, AND THREE-DIMENSIONAL OBJECT - A three-dimensional stereolithography apparatus includes a stage, a support mechanism to support a film so that the film is opposed to the stage, a pressing mechanism, a supply mechanism, an irradiation unit, a movement mechanism, and a control mechanism. The pressing mechanism presses at least a linear area of the film so that the linear area closest to the stage is formed in the film. The supply mechanism supplies a light-curing material into a slit area formed between the stage and the linear area. The irradiation unit irradiates the light-curing material supplied into the slit area with laser light through the pressing mechanism and the film. The movement mechanism moves the stage and the pressing mechanism relatively to the film, to form one cured layer of the light-curing material. The control mechanism controls a distance between the stage and the linear area of the film, to stack the cured layer.05-05-2011
20110190446Three-dimensional modeling apparatus, method of manufacturing a three-dimensional object, and three-dimensional object - Provided is a three-dimensional modeling apparatus including a supply mechanism, a deposition area, a variable mechanism, a discharge mechanism, and a control means. The supply mechanism supplies a powder material. In the deposition area,, the supplied powder material is deposited. The variable mechanism varies a volume of the deposition area per a predetermined layer thickness, and thus the powder material is deposited per the predetermined layer thickness in the deposition area. The discharge mechanism discharges liquid for forming a three-dimensional object to the deposited powder material, the liquid being capable of hardening the powder material. The control means causes the discharge mechanism to discharge the liquid to the powder material, to thereby form a main body being an object being as a target to be modeled and a frame body being an object to be formed in a periphery of the main body, of the three-dimensional object.08-04-2011
20110190923Three-dimensional modeling apparatus, method of manufacturing a three-dimensional object, and three-dimensional object - A three-dimensional modeling apparatus includes a stage, a movement mechanism, first and second supply mechanisms, and a head. To the stage, a modeling material is supplied. The movement mechanism moves the stage in a predetermined direction. The first supply mechanism and the second supply mechanism are disposed along the predetermined direction. The first and second supply mechanisms supply the modeling material onto the stage that is moved by the movement mechanism. The head discharges a liquid to the modeling material on the stage. The liquid is capable of hardening the modeling material supplied from at least one of the first supply mechanism and the second supply mechanism.08-04-2011
20120045617THREE-DIMENSIONAL MODELING APPARATUS, OBJECT, AND METHOD OF MANUFACTURING AN OBJECT - Provided is a three-dimensional modeling apparatus including a stage, a constraining body, a supply nozzle, an irradiation unit, and a movement mechanism. The constraining body includes a surface including a linear region along a first direction, and is opposed to the stage so that the linear region is the closest to the stage. The supply nozzle supplies a material curable by energy of an energy ray into a slit region between the stage and the linear region. The irradiation unit irradiates the supplied material with the energy ray through the constraining body. The movement mechanism moves the stage relative to the constraining body along a second direction for forming a cured layer of the material for one layer, and moves the constraining body and the stage relative to each other along a stacking direction for stacking the cured layers.02-23-2012
201201305303D MODELING APPARATUS, 3D MODELING METHOD, AND MODELED OBJECT - A 3D modeling apparatus includes: a support body which supports a modeled object formed by laminating a resin material that is cured by energy of an energy ray; an illumination mechanism which illuminates the resin material with the energy ray, on the basis of image data of laminated cross-sections which constitutes 3D data of an object to be modeled which is an object of modeling, in order to form the modeled object; and a supply mechanism which supplies a material that constitutes a part of the modeled object and is different from the resin material, to the resin material that is cured as being illuminated by the illumination mechanism, on the basis of the cross-section image data.05-24-2012
20120156516THREE-DIMENSIONAL MODELING DEVICE, THREE-DIMENSIONAL MODELING METHOD, AND MODEL FORMED BY THE METHOD - A three-dimensional modeling device, including: a stage having a powder material deposited thereon for lamination; a supply mechanism supplying the powder material for each one layer on the stage; a plurality of heads having a plurality of nozzles ejecting a liquid for formation of a model, respectively, and capable of ejecting the liquid to the powder material supplied onto the stage by the supply mechanism; and a moving mechanism moving the plurality of heads in different directions relative to the stage, respectively.06-21-2012

Patent applications by Hiroyuki Yasukochi, Kanagawa JP

Makoto Yasukochi, Kanagawa JP

Patent application numberDescriptionPublished
20120242879IMAGE PROCESSING DEVICE AND IMAGE PROCESSING METHOD - An image processing device includes: a first storage unit storing electric charges outputted from a photodiode; a reset unit resetting a voltage stored in the first storage unit; a transfer unit transferring electric charges outputted from the photodiode to the first storage unit; a switching unit switching a DC voltage supplied from a supply line of a pixel power source; an output unit outputting the voltage stored in the first storage unit to a signal output line; a second storage unit storing the DC voltage supplied through the switching unit; and a drive unit driving the output unit by receiving the DC voltage stored by the second storage unit as a power source.09-27-2012

Takanori Yasukochi, Tokyo JP

Patent application numberDescriptionPublished
20120165278Pyrroloquinolinyl-Pyrrolidine-2,5-Dione Compositions And Methods For Preparing And Using Same - The present invention relates to pyrroloquinolinyl-pyrrolidine-2,5-dione compounds and methods of synthesizing these compounds. The present invention also relates to pharmaceutical compositions containing pyrroloquinolinyl-pyrrolidine-2,5-dione compounds and methods of treating cell proliferative disorders, such as cancer, by administering these compounds or pharmaceutical compositions to subjects in need thereof.06-28-2012

Takashi Yasukochi, Ibaraki JP

Patent application numberDescriptionPublished
20090274747Pressure-Sensitive Adhesive Base and Medical Adhesive Patch Including the Pressure-Sensitive Adhesive Base - A pressure-sensitive adhesive base which contains the liquid organic ingredient and which, despite this, has moderate pressure-sensitive adhesion properties (tackiness and cohesive force) and causes no bleeding. It hardly injures the keratin of the skin and is inhibited from irritating the skin. The pressure-sensitive adhesive base comprises the following ingredients (A) to (C): (A) a copolymer comprising units of a monomer containing a carboxy group and units of a (meth) acrylic ester; (B) one or more, liquid or semisolid organic compounds which are compatible with the copolymer of the ingredient (A); and (C) at least one member selected among polyvalent-metal oxides and polyvalent-metal hydroxides, the total content of the ingredient (C) being 0.001-5 mass % based on the whole pressure-sensitive adhesive base. The adhesive base contains substantially no water.11-05-2009
20110008398MEDICATED PATCH - Provided is a medicated patch containing a medicinal agent and an adhesive base material and having an acid value of no greater than 28, where the medicinal agent is varenicline or a pharmaceutically acceptable salt of varenicline.01-13-2011

Patent applications by Takashi Yasukochi, Ibaraki JP

Takashi Yasukochi, Tsukuba-Shi JP

Patent application numberDescriptionPublished
20090285877Percutaneous absorption preparation containing palonosetron - There is provided a percutaneous absorption preparation that has a simple laminated structure and a long shelf life, while maintaining excellent percutaneous absorption for palonosetron. The percutaneous absorption preparation comprises a support and a drug-containing pressure-sensitive adhesive layer formed on at least one side of the support, wherein the drug-containing pressure-sensitive adhesive layer comprises, as essential constituent components, an adhesive base, palonosetron or a pharmaceutically acceptable acid addition salt thereof, and at least one type of fatty alcohol selected from the group consisting of C6-12 straight-chain saturated alcohols, C10-22 straight-chain unsaturated alcohols, C10-22 branched alcohols and C10-15 cyclic alcohols, and the constituent components other than palonosetron or its pharmaceutically acceptable acid addition salt are carboxyl group-free components.11-19-2009

Patent applications by Takashi Yasukochi, Tsukuba-Shi JP