Abstract: The present disclosure features compositions and methods related to the detection and molecular profiling of extracellular vesicles using fluorescent probes. These compositions and methods leverage the unique optoelectrical properties of quantum dots and fluorescently labeled nanoparticles, which allows reliable, real-time detection of extracellular vesicles and vesicle surface bound or lumenal molecules.
Type:
Application
Filed:
December 18, 2019
Publication date:
June 18, 2020
Applicant:
THE UNIVERSITY OF MEMPHIS RESEARCH FOUNDATION
Abstract: A method for transmitting and receiving scheduling information in a communication system is disclosed. A method for operating a UE comprises the steps of: receiving, from a base station, a control channel including scheduling information of first data in slot #n; receiving, from the base station, a data channel including the first data and second data in the slot #n; receiving, from the base station, a control channel in slot #n+k, the control channel including PI indicating a transmission position of the second data in the slot #n; and demodulating the data channel on the basis of the scheduling information and the PI. Therefore, the performance of a communication system can be improved.
Type:
Application
Filed:
July 5, 2018
Publication date:
June 18, 2020
Applicant:
ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
Inventors:
Hoi Yoon JUNG, Sung Ik PARK, Heung Mook KIM, Nam Ho HUR
Abstract: Provided is a method of measuring a magnitude of magnetization of a perpendicular magnetic thin film, including: forming a stripe pattern in which a first magnetic domain that extends in a y direction and is magnetized in a z direction and a second magnetic domain that extends in the y direction and is magnetized in a direction opposite to the z direction are arranged alternately in an x direction, in a perpendicular magnetic thin film that extends in an xy plane; changing widths in the x direction, of the first and second magnetic domains by applying a magnetic field having a predetermined magnitude, in the z direction, to the perpendicular magnetic thin film; and calculating an absolute value of the magnetization of the perpendicular magnetic thin film on the basis of a ratio between the widths in the x direction, of the first magnetic domain and the second magnetic domain.
Type:
Application
Filed:
November 18, 2019
Publication date:
June 18, 2020
Applicants:
KOREA RESEARCH INSTITUTE OF STANDARDS AND SCIENCE, KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY, KOREA BASIC SCIENCE INSTITUTE
Inventors:
Kyoung-Woong Moon, Chan Yong Hwang, Byoung-Chul Min, Seung-young Park
Abstract: The present invention relates to: A schizophrenia animal model wherein the model is a mouse in which an anoctamin 1 (ANO1) gene is knocked out in cholinergic neurons of a medial habenula; and a preparation method therefor and the like. The schizophrenia animal model according to the present invention targets the medial habenula which is brain tissue playing a major role in the pathogenesis of schizophrenia, and it has been confirmed that when the ANO1 gene is specifically knocked out in the cholinergic neurons of the medial habenula, positive, negative and cognitive symptoms of schizophrenia are observed, thereby confirming that schizophrenia has been induced. Therefore, the animal model of the present invention is expected to be effectively useful in schizophrenia pathogenesis research and therapeutic agent development and screening.
Type:
Application
Filed:
July 20, 2018
Publication date:
June 18, 2020
Applicant:
Korea University Research and Business Foundation
Inventors:
Jae-Young PARK, Eun Mi HWANG, Heh-In IM, Chang-Hoon CHO, Sangjoon LEE
Abstract: Systems and methods are disclosed that enable distributed execution of prediction models by disparate, remote systems. Prediction model code is transmitted to the disparate, distributed systems for execution by the disparate, remote systems. Default model input data may be independently modified by a given system, and the modified input data may be used when the given system executes the model. Model predictions and associated model parameters are received from the disparate, distributed systems. The accuracy of the received model predictions from the disparate, distributed systems are analyzed. Based on the analyzed accuracy of the received model predictions, a determination is made as to which model predictions satisfy at least a first criterion. Computer-based resources are allocated using the determination as to which model predictions satisfy at least the first criterion.
Type:
Grant
Filed:
June 6, 2019
Date of Patent:
June 16, 2020
Assignee:
Finiti Research Limited
Inventors:
Jesse David Adelaar, Werner Janjic, Christoph Giess
Abstract: Provided are a hardmask composition, a method of forming a pattern using the hardmask composition, and a hardmask formed using the hardmask composition. The hardmask composition includes a polar nonaqueous organic solvent and one of: i) a mixture of graphene quantum dots and at least one selected from a diene and a dienophile, ii) a Diels-Alder reaction product of the graphene quantum dots and the at least one selected from a diene and a dienophile, iii) a thermal treatment product of the Diels-Alder reaction product of graphene quantum dots and the at least one selected from a diene and a dienophile, or iv) a combination thereof.
Type:
Grant
Filed:
July 16, 2018
Date of Patent:
June 16, 2020
Assignees:
Samsung Electronics Co., Ltd., Research & Business Foundation, Sungkyunkwan University
Inventors:
Sangwon Kim, Changsik Song, Dongcheol Jeong, Minsu Seol, Hyeonjin Shin, Dongwook Lee, Taewoo Kim, Juhyen Lee, Hyejin Cho
Abstract: A photonic-crystal-fiber-delivered laser-triggered high-voltage gas switch can deliver a peak irradiance of greater than 5.1×1011 W/cm2 to the AK gap for a laser having a wavelength of 1064 nm. The switch is capable of operating at pressures up to 2200 psi; voltages across the gap of greater than 200 kV; operation at less than 70% self-break voltage; shot-to-shot jitter of less than 3 ns; AK gap distances of 3 mm or smaller; and triggering via a fiber-delivered laser pulse energy of as low as 500 ?J.
Type:
Grant
Filed:
September 9, 2019
Date of Patent:
June 16, 2020
Assignees:
National Technology & Engineering Solutions of Sandia, LLC, Colorado State University Research Foundation
Inventors:
Sean Simpson, Owen Johns, Charles E. Rose, Azer Yalin, Ciprian Dumitrache
Abstract: The present invention relates to isomerizing hydroformylation of plant oils to feedstock chemicals and monomers. More particularly, the present invention relates to compound of formula (I) and process for preparation thereof using isomerizing functionalization of cashew nut shell liquid (CNSL).
Type:
Grant
Filed:
October 6, 2017
Date of Patent:
June 16, 2020
Assignee:
Council of Scientific & Industrial Research
Abstract: A flow rule virtualization method is disclosed. The flow rule virtualization method may include: (a) generating a virtualization type table, (b) selecting a virtualization type, which represents the degree of mapping between a virtual flow rule and a physical flow rule executed on a physical network, for a virtual flow rule generated from a tenant controller by using the virtualization type table, (c) virtualizing the virtual flow rule into the physical flow rule according to the selected virtualization type, (d) virtualizing the physical rule by using a rule map, and (e) installing the virtualized physical flow rule on the physical switch.
Type:
Grant
Filed:
December 20, 2018
Date of Patent:
June 16, 2020
Assignee:
KOREA UNIVERSITY RESEARCH AND BUSINESS FOUNDATION
Abstract: A process for the remediation of contaminated particulate materials by the addition of an environmentally benign, carbonaceous fuel source in low concentration to enable or enhance smoldering combustion. The process may be applied to both in situ and ex situ treatments. In an ex situ smoldering process for the remediation of contaminated particulate materials in a continuous manner, contaminated feed is introduced near the top of a treatment unit and treated product emerges near the bottom. A smoldering front is maintained in the unit, fed by the fuel in the contaminated particulate material and a supply of combustion-supporting gas, such as air.
Type:
Grant
Filed:
June 7, 2018
Date of Patent:
June 16, 2020
Assignee:
ExxonMobil Research and Engineering Company
Inventors:
Gregory Paul Rockwell, Randall Stephen Lachine, Babak Adam Jajuee, Bradley Scott Barnes, Rainer Detlef Mai
Abstract: An optical coherence tomography system for ophthalmic use identifies tissue by selected laser heating of that tissue at reduced power levels decreasing background noise to boost signal-to-noise ratio allowing detection of minute changes in thermal expansion caused by that heating at clinically acceptable levels.
Type:
Grant
Filed:
March 29, 2018
Date of Patent:
June 16, 2020
Assignees:
Wisonsin Alumni Research Foundation, Vanderbilt University
Inventors:
Maryse Lapierre-Landry, Melissa Skala, Yuankai Tao
Abstract: Disclosed is an anilox laser cleaning machine that includes: a multi-laser head with laser modules on a horizontal guide of a first movable support associated with the horizontal sliding carriage with the intermediation of brackets coupled to vertical micrometric axes associated with the horizontal sliding carriage controlled by servomotors. Each laser module includes: a laser resonator emitting a laser beam with a focal point in the vertical plane equidistant to the axes of rotation of the traction rollers of the anilox roller; and a vertical tube terminated in a nozzle oriented towards the focal point of the laser beam, connected to a suction source. The machine also includes a rotation detector with a palpate wheel contacting the surface of the anilox roller and associated with an encoder device connected to the electronic system of the machine that, in the absence of movement detection or irregular movement, activates the emergency stop.
Type:
Grant
Filed:
May 21, 2018
Date of Patent:
June 16, 2020
Assignee:
TEG Technologies Research and Development, S.L.
Inventors:
Lluis Guixeras Nogue, Rafael Guixeras Llora
Abstract: A method for forming a molded proximity sensor with an optical resin lens and the structure formed thereby. A light sensor chip is placed on a substrate, such as a printed circuit board, and a diode, such as a laser diode, is positioned on top of the light sensor chip and electrically connected to a bonding pad on the light sensor chip. Transparent, optical resin in liquid form is applied as a drop over the light sensor array on the light sensor chip as well as over the light-emitting diode. After the optical resin is cured, a molding compound is applied to an entire assembly, after which the assembly is polished to expose the lenses and have a top surface flush with the top surface of the molding compound.
Abstract: The invention generally relates to systems and methods for producing metal clusters; functionalized surfaces; and droplets including solvated metal ions. In certain aspects, the invention provides methods that involve providing a metal and a solvent. The methods additionally involve applying voltage to the solvated metal to thereby produce solvent droplets including ions of the metal containing compound, and directing the solvent droplets including the metal ions to a target. In certain embodiments, once at the target, the metal ions can react directly or catalyze reactions.
Type:
Grant
Filed:
May 17, 2019
Date of Patent:
June 16, 2020
Assignee:
Purdue Research Foundation
Inventors:
Robert Graham Cooks, Anyin Li, Thalappil Pradeep, Zane Baird
Abstract: A current detection device applied to a multi-core conducting wire comprises a carrier, magnetic sensors and a processor wherein the processor is connected to the magnetic sensors. The carrier has an accommodating channel for accommodating the multi-core conducting wire. The magnetic sensors are disposed at the carrier, surround the accommodating channel, equally share 360 degree of the peripheral of the accommodating channel, and are configured to measure an alternating magnetic field of the multi-core conducting wire to respectively obtain magnetic field measured values, wherein each of the magnetic sensors corresponds to a respective one of the magnetic field measured values. The processor stores a current decoupling model, and is configured to obtain the magnetic field measured values from the magnetic sensors and to calculate a current value of each core wire of the multi-core conducting wire according to the current decoupling model and the magnetic field measured values.
Type:
Grant
Filed:
December 26, 2017
Date of Patent:
June 16, 2020
Assignee:
INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
Abstract: A method and system are provided that analyze a first digital asset to identify a set of attributes of the first digital asset. Search criteria are then formulated, and a search is conducted. Once search results are obtained, at least one second digital asset that is substantially identical to the first digital asset is identified. Then, metadata between the first digital asset and the second digital asset is shared.
Type:
Grant
Filed:
March 31, 2012
Date of Patent:
June 16, 2020
Assignees:
Xerox Corporation, Palo Alto Research Center Incorporated
Abstract: A solid-state laser amplifier includes a core material providing an active gain medium. A cladding material is on the core material that is the same material as the core material that further comprises a broadband absorber material. The cladding material suppresses transverse oscillations in solid-state, single-crystal or ceramic laser amplifiers by employing a native-material, solid-state, index-matched cladding containing an appropriate broadband absorber.
Type:
Grant
Filed:
September 14, 2018
Date of Patent:
June 16, 2020
Assignee:
UNIVERSITY OF CENTRAL FLORIDA RESEARCH FOUNDATION
Inventors:
Romain Gaume, Eric Cunningham, Shi Chen
Abstract: A method for manufacturing a metallic nanospring includes preparing a nanotemplate having a nanopore and including a working electrode disposed on its one surface, preparing a first metal precursor mixture including ascorbic acid (C6H8O6), vanadium (IV) oxide sulfate (VOSO4.xH2O), and a metal precursor solution including a metal desired to be deposited, preparing a second metal precursor mixture by mixing the first metal precursor mixture with nitric acid (HNO3), depositing a metallic nanospring into the nanopore using electrodeposition by dipping the nanotemplate into the second metal precursor mixture and applying current between a counter electrode inserted into the second metal precursor mixture and the working electrode, and selectively removing the working electrode on the nanotemplate with the deposited metallic nanospring and the nanotemplate.
Type:
Grant
Filed:
January 26, 2018
Date of Patent:
June 16, 2020
Assignee:
Korea University Research and Business Foundation
Inventors:
Young Keun Kim, Su Hyo Kim, Da-yeon Nam, Yoo Sang Jeon
Abstract: A hand carryable, non-lethal personal protection device using compressed gas for operation. In some embodiments the device uses the compressed gas to create and shoot a vortex of air at the target. In other embodiments, the compressed gas can be used to shoot a burst of atomized water at the attacker. In still other embodiments the device uses the compressed gas to shoot ammunition, such as a ring airfoil, O-ring, bean bag, or other non-lethal blunt trauma munitions at the target. In still further embodiments, the device is modular in its construction, and can be used to apply the compressed gas to various different attachments.
Abstract: Provided herein are GPCR-based chemical biosensors that can have a sensing unit, a processing unit, and a response unit that can be used to detect a chemical of interest. Also provided herein are methods of making and using the GPCR-based chemical biosensors.
Type:
Grant
Filed:
November 6, 2017
Date of Patent:
June 16, 2020
Assignee:
Georgia Tech Research Corporation
Inventors:
Pamela Peralta-Yahya, Kuntal Mukherjee, Souryadeep Bhattacharyya, Stephen Sarria