Shima
Shima Hisato, Tokyo JP
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20130067223 | CONTENT TRANSMISSION DEVICE, CONTENT TRANSMISSION METHOD, AND COMPUTER PROGRAM USED THEREWITH - A content transmission device for transmitting content, whose copying is controlled, includes an authentication section for performing an authentication procedure between the content transmission device and a content receiving device, a first copy-control-information processing section for processing first copy control information describing copy control information concerning the content, a second copy-control-information processing section for processing second copy control information including content information different from the first copy control information, and a content transmission section for generating and transmitting, to the content receiving device, a packet including a header including the first copy control information and the second copy control information, and a payload obtained by encrypting the content with a predetermined content key. | 03-14-2013 |
Shima Nakanishi, Otake-Shi JP
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20150376815 | SPINNING NOZZLE, PROCESS FOR PRODUCING FIBROUS MASS, FIBROUS MASS, AND PAPER - A spinning nozzle which has a perforated part in which ejection holes have been arranged in a density as high as 600-1,200 holes/mm | 12-31-2015 |
Shima Nakanishi, Otake-Shi, Hiroshima JP
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20150378059 | OPTICAL ARTICLE, MOLD USED IN PRODUCTION OF OPTICAL ARTICLE, AND MOLD PRODUCTION METHOD - A fine-concave-convex transfer mold with which defect regions of a molded body having a fine-concave-convex structure can be easily identified, and deformation of the fine-concave-convex structure can be inhibited even if the molded product is wound. A mold for the production of an optical article has, provided to a surface thereof, a plurality of convex portions at a cycle equal to or less than the wavelengths of visible light, and a plurality of concave portions formed between the adjacent convex portions. The mold has a surface provided with a transfer area having concave portions and convex portions that have a size and shape complementing the convex portions and the concave portions of the optical article. The mold can include, in the transfer area, marking portions. The height of the convex portions in the transfer area is less than the height of convex portions in sections other than the transfer area. | 12-31-2015 |
Shima Rayej, Bethesda, MD US
Patent application number | Description | Published |
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20140058563 | Method and system for the directed control of robotic assets - Static multi-registration performs a delayed convoy mission from a recorded path. The data recorded for delayed convoy includes both positions traversed by the vehicle and the obstacles sensed as it drove along the path and generates a new path file in this format that is used by the vehicle to follow the desired route. The data is processed before it is passed to the vehicle to be followed. Paths are processed to determine where they cross each other. These intersection points and the path data are used to create an interconnected graph of path segments. A multi-registration planner uses that information on the length and directionality of the path segments to compute the best route between two intersections. The route generated by the planner guides the merging of position and obstacle data from several recorded paths into a single record used by the vehicle to follow the desired route. | 02-27-2014 |
Shima Tavakol, Tehran IR
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20140356410 | BIODEGRADABLE AND BIOCOMPATIBLE NANO COMPOSITE T-PLATE IMPLANT AND A METHOD OF SYNTHESIZING THE SAME - The embodiments herein provide a biodegradable and biocompatible T-plate nano-composite implant with stem cells for treating and repairing broken bones, damaged tissues and torn ligaments. The implant comprises a polymeric matrix part comprising poly lactic glycolic acids (PLGA), a bioceramic part comprising hydroxyapatite (HAp) nanoparticles and an endometrial stem cell. The PLGA and HAp nanoparticles act as a matrix and reinforcing agents respectively. A method is provided for synthesizing the T-plate implant. The method comprises synthesizing hydroxyapatite (HAp) nanoparticles, poly lactic glycolic acids (PLGA) and HAp nano composite implant. The casting of the poly lactic glycolic acids (PLGA) and HAp nano composite are done in a mold to obtain a T-plate nano composite. An endometrial stem cell from an epithelial cell lining from uterus is isolated and cultured. The endometrial stem cells are implanted on the nano-composite implant. | 12-04-2014 |