Patents Assigned to INSTITUTE
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Publication number: 20160374073Abstract: A wireless terminal transmits stop state information to a base station upon an initial network access and receives resource pool information and transmission unit information for small data transmission in the wireless terminal from the base station. The wireless terminal selects a subframe index and a transmission unit index for data transmission from a resource pool for the small data transmission and transmits data in a transmission unit corresponding to the transmission unit index within a subframe corresponding to the subframe index.Type: ApplicationFiled: June 22, 2016Publication date: December 22, 2016Applicant: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventor: Sung-Min OH
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Publication number: 20160373121Abstract: Provided is a phase locked loop (PLL) that generates an output clock signal corresponding to a reference clock signal. The phase locked loop (PLL) includes a divider configured to divide the output clock signal to generate a divided clock signal, a time-pulse converter configured to generate a time-pulse conversion signal that has a pulse corresponding to a phase difference between the reference clock signal and the divided clock signal, and a digitally controlled oscillator including an LC resonance circuit for generating the output clock signal and configured to control a frequency of the output clock signal that is determined to correspond to a time constant of the LC resonance circuit according to the time-pulse conversion signal, wherein a sustainment time of changed capacitance is continuously controlled according to a change in the phase difference between the reference clock signal and the divided clock signal.Type: ApplicationFiled: June 16, 2016Publication date: December 22, 2016Applicant: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Ja Yol LEE, Minjae LEE, Cheon Soo KIM, Jaehyun KANG, Minuk HEO
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Publication number: 20160369365Abstract: Provided is martensitic steel which is used in structures such as buildings and bridges, and automotive underbody, and mechanical parts such as gears and is more suitably used for steel products such as thick steel sheets, shape steel, a deformed steel bar, steel bars, or steel wires. The martensitic steel has a microstructure of a martensite structure containing a chemical composition, by mass %, of Si: 1.0 to 3.5%, Mn: 4.5 to 5.5%, Al: 0.001 to 0.080%, Nb: 0.045% or less, and C having an amount in which the following regression equation (1) is satisfied and the maximum stress (TS) becomes 1800 to 2160 MPa, a balance being Fe and inevitable impurities of: P: 0.030% or less, S: 0.020% or less, and N: 0.010% or less, the martensitic steel having total elongation of 13 to 15%.Type: ApplicationFiled: July 9, 2014Publication date: December 22, 2016Applicant: NATIONAL INSTITUTE FOR MATERIALS SCIENCEInventors: Toshihiro HANAMURA, Shiro TORIZUKA
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Publication number: 20160374031Abstract: A device for controlling exposure of electromagnetic waves from a base station collects a power value received from at least one base station together with position information using a plurality of terminals in a controlled area; maps the received power value collected from the terminals on a plurality of subareas in the controlled area based on position information collected from the terminals; calculates a power density for respective frequency bandwidths in the respective subareas by using the received power value of the terminals provided in the respective subareas; and calculates a specific absorption rate of electromagnetic waves in a human body in the respective subareas by using a power density value for respective frequency bandwidths in the respective subareas.Type: ApplicationFiled: June 8, 2016Publication date: December 22, 2016Applicant: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Ae Kyoung LEE, Jong Hwa KWON, Hyung Do CHOI
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Publication number: 20160368846Abstract: The invention discloses a new strepsesquitriol A, a preparation method thereof and an application thereof. Strepsesquitriol A, a structure as shown in Formula (I), is a compound having a new skeleton and strongly inhibiting the formation of LPS-induced TNF? but showing no cytotoxic activity, so it can be used for the preparation of anti-inflammatory drug or act as a precursor of anti-inflammatory drugs, for the treatment of multiple inflammations. Therefore, the invention provides a new candidate compound for the development of anti-inflammatory drugs, and is of great significance for developing Chinese marine drug resources.Type: ApplicationFiled: December 30, 2013Publication date: December 22, 2016Applicant: SOUTH CHINA SEA INSTITUTE OF OCEANOLOGY, CHINESE A CADEMY OF SCIENCESInventors: Xianwen Yang, Kun Peng, Sumei Li, Gaiyun Zhang, Jie Li, Xiuping Lin, Yonghong Liu
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Publication number: 20160367561Abstract: The invention provides for the use of radiation sensitizing agents in combination with radiation for the treatment of neoplasia, methods for the identification of genotype-specific radiation sensitizing agents, and methods of identifying patients who could benefit from therapy with a genotype-specific radiation sensitizing agent.Type: ApplicationFiled: August 29, 2016Publication date: December 22, 2016Applicants: THE BROAD INSTITUTE, INC., THE BRIGHAM AND WOMEN'S HOSPITAL, INC., DANA-FARBER CANCER INSTITUTE, INC.Inventors: MOHAMED ABAZEED, MATTHEW MEYERSON, DREW ADAMS
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Publication number: 20160373783Abstract: A method and a device for encoding/decoding images are disclosed. The method for encoding images comprises the steps of: deriving a scan type of a residual signal for a current block according to whether or not the current block is a transform skip block; and applying the scan type to the residual signal for the current block, wherein the transform skip block is a block to which transform for the current block is not applied and is specified on the basis of information indicating whether or not transform for the current block is to be applied.Type: ApplicationFiled: September 1, 2016Publication date: December 22, 2016Applicants: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE, UNIVERSITY-INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITYInventors: Hui Yong KIM, Sung Chang LIM, Jin Ho LEE, Jin Soo CHOI, Jin Woong KIM, Gwang Hoon PARK, Kyung Yong KIM
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Publication number: 20160373747Abstract: A method and a device for encoding/decoding images are disclosed. The method for encoding images comprises the steps of: deriving a scan type of a residual signal for a current block according to whether or not the current block is a transform skip block; and applying the scan type to the residual signal for the current block, wherein the transform skip block is a block to which transform for the current block is not applied and is specified on the basis of information indicating whether or not transform for the current block is to be applied.Type: ApplicationFiled: September 2, 2016Publication date: December 22, 2016Applicants: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE, UNIVERSITY-INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITYInventors: Hui Yong KIM, Sung Chang LIM, Jin Ho LEE, Jin Soo CHOI, Jin Woong KIM, Gwang Hoon PARK, Kyung Yong KIM
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Publication number: 20160368948Abstract: This invention provides peptides, immunogenic compositions and vaccines comprising same, and methods of treating, reducing the incidence of, and inducing immune responses to a WT1-expressing cancer, comprising same.Type: ApplicationFiled: January 14, 2016Publication date: December 22, 2016Applicant: SLOAN KETTERING INSTITUTE FOR CANCER RESEARCHInventors: David A. Scheinberg, Rena May
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Publication number: 20160370372Abstract: Disclosed herein is a personalized method for monitoring a condition or disorder associated with antibody production in a subject. The method can involve treating a biological sample comprising immunoglobulin from the subject to enzymatically cleave a target immunoglobulin associated with the PCD into one or more variable domain peptide fragments of the target immunoglobulin, and then measuring the one or more variable domain peptide fragments in the sample by quantitative mass spectrometry to quantify the amount of the target immunoglobulin in the sample.Type: ApplicationFiled: February 28, 2015Publication date: December 22, 2016Applicant: H. LEE MOFFITT CANCER CENTER AND RESEARCH INSTITUTE INC.Inventor: John Matthew Koomen
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Publication number: 20160370298Abstract: The invention provides a method for chemical signature resolved detection of a concealed object within a system. The method includes irradiating the system at a plurality of positions with aplurality of electromagnetic radiation of specific wavelength; capturing a certain component of the scattered electromagnetic radiation from the object at a plurality of locations along various 3D planes around the system; obtaining a plurality of profiles from the captured component of the scattered electromagnetic radiation; filtering the profiles to obtain a chemical signature specific to the object; and resolving the chemical signatures to detect the concealed object, wherein, the step of detection includes determination of the shape, size and location of the object.Type: ApplicationFiled: February 13, 2015Publication date: December 22, 2016Applicant: INDIAN INSTITUTE OF SCIENCEInventors: Siva UMAPATHY, Sanchita SIL, Gagan DHAL, Freek ARIESE
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Publication number: 20160367541Abstract: The invention relates to methods of treating diseases, particularly cancers, that respond favorably to the inhibition of Nicotinamide phosphoribosyltransferase (Nampt); it also relates to therapeutic methods that utilize Nampt inhibitors in combination with NAD biosynthesis precursors to intentionally kill cancer cells while limiting or minimizing toxicity to normal host cells; and it relates to methods of identifying cancers that will be most responsive to treatment with Nampt inhibitors, particularly when administered in combination with nicotinic acid.Type: ApplicationFiled: November 12, 2014Publication date: December 22, 2016Applicant: ALZHEIMER'S INSTITUTE OF AMERICA, INC.Inventors: Tracey C. Fleischer, Daniel M. Cimbora, Jeffrey S. Flick, Andrew D. Gassman, Vijay R. Baichwal, Damon I. Papac
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Publication number: 20160372215Abstract: A method of a nuclear fuel pellet including a thermal conductive metal and a nuclear fuel pellet prepared thereby. The method includes preparing an oxide nuclear fuel granule having about 30%-45% theoretical density, mixing the fuel granule with thermal conductive metal powder, compacting the fuel granule with which the thermal conductive metal powder is mixed to prepare a green pellet, and sintering the green pellet. In the method, the sintering may be performed under a reducing gas atmosphere that is the same as the commercial pellet preparing process. Thus, compatibility compared to existing commercial preparing processes may be superior. Also, since a liquefied oxide formation process and a reducing process are omitted, the distribution uniformity of the metal material within the pellet may be superior. Therefore, the nuclear fuel pellet in which the metal network and fine microstructure are uniformly distributed within the pellet may be prepared.Type: ApplicationFiled: January 7, 2015Publication date: December 22, 2016Applicant: KOREA ATOMIC ENERGY RESEARCH INSTITUTEInventors: Dong-Joo KIM, Young Woo RHEE, Keon-Sik KIM, Jong-Hun KIM, JangSoo OH, Jae-Ho YANG, Yang-Hyun KOO
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Publication number: 20160367151Abstract: A sensing system includes a sensor including a flexible substrate and a graphene oxide sensing element deposited on the flexible substrate. The graphene oxide sensing element has first and second sides. First and second electrical connectors coupled to the first and second sides of the graphene oxide sensing element, respectively. A power source is coupled to the first and second electrical connectors of the sensor and is adapted to apply a constant voltage to the sensor. The sensing system also includes a measurement element measuring a current in the graphene oxide sensing element due to the constant voltage and a calculation element calculating an electrical resistance of the graphene oxide sensing element based on the electrical current and the constant voltage and calculating a condition at a location of the sensor based on a relationship between the electrical resistance and the condition for the graphene oxide sensing element.Type: ApplicationFiled: June 17, 2016Publication date: December 22, 2016Applicant: THE TRUSTEES OF THE STEVENS INSTITUTE OF TECHNOLOGYInventors: Linh Tung Le, Trung Thanh Dinh-Trong, Woo Young Lee, Eric Peter Boon, Nguyen An Nguyen
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Publication number: 20160373746Abstract: A method and a device for encoding/decoding images are disclosed. The method for encoding images comprises the steps of: deriving a scan type of a residual signal for a current block according to whether or not the current block is a transform skip block; and applying the scan type to the residual signal for the current block, wherein the transform skip block is a block to which transform for the current block is not applied and is specified on the basis of information indicating whether or not transform for the current block is to be applied.Type: ApplicationFiled: September 2, 2016Publication date: December 22, 2016Applicants: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE, UNIVERSITY-INDUSTRY COOPERATION GROUP OF KYUNG HEE UNIVERSITYInventors: Hui Yong KIM, Sung Chang LIM, Jin Ho LEE, Jin Soo CHOI, Jin Woong KIM, Gwang Hoon PARK, Kyung Yong KIM
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Patent number: 9523661Abstract: Provided is a method of locating a damage source of a wind turbine blade for tracking a damage source location of a blade used in a wind power generator, and more particularly, a method of locating a damage source of a wind turbine blade and an apparatus thereof in a large composite material structure capable of accurately locating a damage source even in a large composite material structure by detecting defects using contour maps written based on elastic wave energy value. The method of locating a damage source of the wind turbine blade according to the present invention can accurately locate the damage source even in the large composite material structure using at least two materials unlike the related art and can use a smaller number of AE sensor than the related art.Type: GrantFiled: August 17, 2011Date of Patent: December 20, 2016Assignee: KOREA RESEARCH INSTITUTE OF STANDARDS AND SCIENCEInventors: Dong Jin Yoon, Byeong Hee Han, Young Joo Kim
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Patent number: 9522164Abstract: Compositions and methods for the treatment of cancer are provided.Type: GrantFiled: November 19, 2013Date of Patent: December 20, 2016Assignee: LANKENAU INSTITUTE FOR MEDICAL RESEARCHInventors: Iraimoudi S. Ayene, George C. Prendergast
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Patent number: 9522427Abstract: Provided are a perfluorinated sulfonic acid polymer membrane having a porous surface layer, which includes a surface layer and a bottom layer present at the bottom of the surface layer, wherein the surface layer is a porous layer, and the bottom layer is non-porous dense layer, and a method for preparing the same through a solvent evaporation process.Type: GrantFiled: March 12, 2013Date of Patent: December 20, 2016Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Dirk Henkensmeier, Quoc Khanh Dang, Chang Won Yoon, Eun Ae Cho, Suk Woo Nam, Tae Hoon Lim, Hyoung-Juhn Kim, Jong Hyun Jang
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Patent number: 9524643Abstract: The present invention provides an Advanced Driver Assistant System (ADAS) 10 and an operating method thereof, which work on long time scales, and guide an ego vehicle 20 away from upcoming risks, rather than only reacting to risks to mitigate the consequences of a crash. To this end, information comprising the orientation of other traffic participants 30, 40, 50, 60, a free driving area of the ego vehicle 20, and/or a driving trajectory of the vehicle 20 as intended by the driver is taken into account, in order to determine potential risks.Type: GrantFiled: April 16, 2013Date of Patent: December 20, 2016Assignee: HONDA RESEARCH INSTITUTE EUROPE GMBHInventors: Christian Goerick, Bram Bolder, Benjamin Dittes
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Patent number: 9526082Abstract: Disclosed herein is a method and apparatus for estimating the location of a pedestrian using step length estimation model parameters. In the method of estimating a location of a pedestrian according to the present invention, mobile User Equipment (UE) having sensors generates positioning measurement information. The mobile UE requests positioning assistance information from a positioning server. The positioning server generates the positioning assistance information. The positioning server provides the positioning assistance information to the mobile UE. The mobile UE performs location estimation of the pedestrian using the positioning measurement information and the positioning assistance information.Type: GrantFiled: March 15, 2013Date of Patent: December 20, 2016Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventors: Young-Su Cho, Myung-In Ji