Patents Assigned to INSTITUTE
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Publication number: 20220205880Abstract: A hydrocarbon generation pyrolysis simulation experimental device for centrifugal continuous gas sampling of a hydrocarbon source rock, including a centrifugal turntable, a motor, a quartz sample tube, a heating set, a cooling set, a rotary joint mounted coaxially with a rotating shaft of the centrifugal turntable, a vacuum pump, and vacuum gas collecting pipes, wherein a sealing plug is arranged at an orifice of the quartz sample tube, a thermocouple and a first exhaust pipeline connected with an inlet of the rotary joint are mounted on the sealing plug, the rotary joint is communicated with a vacuum pump through a second exhaust pipeline, a plurality of vacuum gas collecting pipes are respectively communicated with the second exhaust pipeline through an electromagnetic valve, a vacuum pump switching valve is mounted on the second exhaust pipeline at an inlet end of the vacuum pump, and a control circuit board is mounted on the centrifugal turntable.Type: ApplicationFiled: July 9, 2020Publication date: June 30, 2022Applicant: GUANGZHOU INSTITUTE OF GEOCHEMISTRY, CHINESE ACADEMY OF SCIENCESInventors: QIANG WANG, JINZHONG LIU, PING-AN PENG
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Publication number: 20220207647Abstract: A training method and training system for a resolution improvement model and a boundary detection method using the resolution improvement model are provided. The training method for the resolution improvement model includes the following steps. A low-resolution image is inputted. Pixels of the low-resolution image are captured and reorganized to generate a high-resolution image according to convolutional features. The resolution of the high-resolution image is higher than that of the low-resolution image. When capturing the low-resolution image, a condition mask is used to filter off the noise content, as well as sharpen the edge. The high-resolution image is compared with a ground-truth target image to output a discrimination result. The convolutional features are updated according to the discrimination result.Type: ApplicationFiled: December 28, 2020Publication date: June 30, 2022Applicant: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTEInventors: Hung-Wei LIN, Sen-Yih CHOU, Hsin-Cheng LIN
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Publication number: 20220202442Abstract: A computer-assisted needle insertion system and a computer-assisted needle insertion method are provided. The computer-assisted needle insertion method includes: obtaining a first machine learning (ML) model and a second ML model; obtaining a computed tomography (CT) image and a needle insertion path, generating a suggested needle insertion path according to the first ML model, the CT image, and the needle insertion path, and instructing a needle to approach a needle insertion point on a skin of a target, wherein the needle insertion point is located on the suggested needle insertion path; obtaining a breath signal of the target, and estimating whether a future breath state of the target is normal according to the second ML model and the breath signal; and outputting a suggested needle insertion period according to the breath signal in response to determining that the future breath state is normal.Type: ApplicationFiled: November 23, 2021Publication date: June 30, 2022Applicant: Industrial Technology Research InstituteInventors: Po-An Hsu, Chih-Chi Chang, Chih-Wei Chien, Chia-Pin Li, Kun-Ta Wu, Wei-Zheng Lu
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Publication number: 20220204772Abstract: A bioprintable material is provided. The bioprintable material includes a hydrogel and microfilaments mixed in the hydrogel. The hydrogel includes a first collagen. The microfilament includes a second collagen. The diameter of the microfilament is ranging from 5 microns to 200 microns. The weight ratio of the microfilaments to the first collagen is ranging from 0.01:1 to 10:1.Type: ApplicationFiled: December 23, 2021Publication date: June 30, 2022Applicant: Industrial Technology Research InstituteInventors: Yun-Chung TENG, Jen-Huang HUANG, Ying-Wen SHEN, Yu-Bing LIOU, Hsin-Yi HSU, Li-Hsin LIN, Yuchi WANG, Hsin-Hsin SHEN
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Publication number: 20220203377Abstract: A method for separating a calcite-rich low-grade fluorite barite paragenic ore, includes the following steps: S1, crushing; S2, performing classification on a crushed ore to obtain a fine-grained ore, a medium-grained ore and a coarse-grained ore; S3, performing jigging gravity separation on the medium-grained ore and the coarse-grained ore to obtain first barite concentrates and jigging tailings; S4, performing color sorting on the jigging tailings to obtain calcite minerals and color sorting tailings; S5, combining the fine-grained ore and the color sorting tailings, and then performing ore grinding to obtain feeding materials in flotation; S6, performing flotation on the feeding materials in flotation to obtain fluorite concentrates and flotation tailings; S7, performing chute gravity separation on the flotation tailings to obtain second barite concentrates and chute tailings. The method achieves an effect of obtaining high-quality acid-grade fluorite concentrates (CaF2?98%).Type: ApplicationFiled: January 26, 2021Publication date: June 30, 2022Applicant: Institute of Multipurpose Utilization of Mineral Resources, CAGSInventors: Xiaobo ZENG, Yaohui YANG, Weiping YAN
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Publication number: 20220206767Abstract: A method and a compiler for compiling of a source code of a program of an embedded processor including: determining a target memory statement to access a memory region of the embedded processor from among memory statements included in the source code; inserting, in the vicinity of the target memory statement, an additional statement to detect a memory vulnerability error when the target memory statement accesses the memory region; changing the target memory statement into binary codes; and changing the additional statement into binary codes are provided.Type: ApplicationFiled: December 29, 2021Publication date: June 30, 2022Applicant: Electronics and Telecommunications Research InstituteInventors: Jinyong LEE, Donghyeun KWON
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Publication number: 20220209697Abstract: Provided is a control device for a rotating electric machine, the control device being configured to control an inverter configured to apply a voltage to each phase winding of a rotating electric machine, to thereby control, for the each phase winding, a current to be supplied to the each phase winding, the control device including a control unit configured to: calculate a voltage command value to be applied to the each phase winding so that a phase difference between harmonic components of the same order in a radial magnetic flux density and a circumferential magnetic flux density of an air gap portion between a stator core and a rotor core of the rotating electric machine becomes a phase difference target value determined in advance, and to control the inverter in accordance with the calculated voltage command value.Type: ApplicationFiled: April 18, 2019Publication date: June 30, 2022Applicants: Mitsubishi Electric Corporation, Shibaura Institute of TechnologyInventors: Yoshihiro MIYAMA, Kan AKATSU, Yuki SAKAI, Hiroki HIJIKATA
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Patent number: 11369951Abstract: A catalyst for preparing light olefin using direct conversion of syngas is a composite catalyst and formed by compounding component I and component II in a mechanical mixing mode. The active ingredient of component I is a metal oxide; and the component II is one or more than one of zeolite of CHA and AEI structures or metal modified CHA and/or AEI zeolite. A weight ratio of the active ingredients in the component I to the component II is 0.1-20. The reaction process has high product yield and selectivity, wherein the sum of the selectivity of the propylene and butylene reaches 40-75%; and the sum of the selectivity of light olefin comprising ethylene, propylene and butylene can reach 50-90%. Meanwhile, the selectivity of a methane side product is less than 15%.Type: GrantFiled: January 28, 2019Date of Patent: June 28, 2022Assignee: DALIAN INSTITUTE OF CHEMICAL PHYSICS, CASInventors: Xiulian Pan, Feng Jiao, Xinhe Bao, Na Li
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Patent number: 11372106Abstract: An optical phased array formed of a large number of nanophotonic antenna elements can be used to project complex images into the far field. These nanophotonic phased arrays, including the nanophotonic antenna elements and waveguides, can be formed on a single chip of silicon using complementary metal-oxide-semiconductor (CMOS) processes. Directional couplers evanescently couple light from the waveguides to the nanophotonic antenna elements, which emit the light as beams with phases and amplitudes selected so that the emitted beams interfere in the far field to produce the desired pattern. In some cases, each antenna in the phased array may be optically coupled to a corresponding variable delay line, such as a thermo-optically tuned waveguide or a liquid-filled cell, which can be used to vary the phase of the antenna's output (and the resulting far-field interference pattern).Type: GrantFiled: February 24, 2020Date of Patent: June 28, 2022Assignee: Massachusetts Institute of TechnologyInventors: Ami Yaacobi, Michael R. Watts
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Patent number: 11369638Abstract: Methods for production of platelets from pluripotent stem cells, such as human embryonic stem cells (hESCs) and induced pluripotent stem cells (iPSCs) are provided. These methods may be performed without forming embryoid bodies or clusters of pluripotent stem cells, and may be performed without the use of stromal inducer cells. Additionally, the yield and/or purity can be greater than has been reported for prior methods of producing platelets from pluripotent stem cells. Also provided are compositions and pharmaceutical preparations comprising platelets, preferably produced from pluripotent stem cells.Type: GrantFiled: August 1, 2019Date of Patent: June 28, 2022Assignee: Astellas Institute for Regenerative MedicineInventors: Qiang Feng, Shi-Jiang Lu, Robert P. Lanza
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Patent number: 11369574Abstract: Self-righting articles, such as self-righting capsules for administration to a subject, are generally provided. In some embodiments, the self-righting article may be configured such that the article may orient itself relative to a surface (e.g., a surface of a tissue of a subject). The self-righting articles described herein may comprise one or more tissue engaging surfaces configured to engage (e.g., interface with, inject into, anchor) with a surface (e.g., a surface of a tissue of a subject). In some embodiments, the self-righting article may have a particular shape and/or distribution of density (or mass) which, for example, enables the self-righting behavior of the article. In some embodiments, the self-righting article may comprise a tissue interfacing component and/or a pharmaceutical agent (e.g., for delivery of the active pharmaceutical agent to a location internal of the subject).Type: GrantFiled: May 17, 2018Date of Patent: June 28, 2022Assignees: Massachusetts Institute of Technology, Novo Nordisk A/S, The Brigham and Women's Hospital, Inc.Inventors: Carlo Giovanni Traverso, Alex G. Abramson, Ester Caffarel Salvador, Niclas Roxhed, Minsoo Khang, Taylor Bensel, Robert S. Langer, Jorrit Jeroen Water, Morten Revsgaard Frederiksen, Bo Uldall Kristiansen, Mikkel Oliver Jespersen, Mette Poulsen, Peter Herskind, Brian Jensen
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Patent number: 11374226Abstract: Corrosion mitigation in a battery may include displacing a first flowable medium with a second flowable medium along a first electrode to interrupt fluid communication of the first flowable medium with the first electrode—thus interrupting operation of the battery—while a second electrode remains in contact with a flowable medium (e.g., one or more of the first flowable medium or another flowable medium, such as a gel). For example, a membrane (e.g., an underwater oleophobic material) may be disposed between the first electrode and the second electrode. An oil may displace an aqueous electrolyte on a first side of the membrane toward a metallic electrode while the aqueous form of the electrolyte remains in contact with an air electrode on a second side of the separator membrane disposed toward the air electrode.Type: GrantFiled: April 24, 2019Date of Patent: June 28, 2022Assignee: Massachusetts Institute of TechnologyInventors: Brandon James Hopkins, Douglas P. Hart, Yang Shao-Horn
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Patent number: 11369702Abstract: Disclosed herein are kits and methods for preparing radiopharmaceuticals. The kits and methods of the present disclosure can prepare the radiopharmaceuticals without using a heater and computer monitoring equipment. The kit includes a frozen crystal reaction vial, a reagent vial and a labeling holder, wherein the labeling holder contains a heating bag that can heat up to a high temperature of at least 95° C. by adding an aqueous solution.Type: GrantFiled: June 24, 2020Date of Patent: June 28, 2022Assignee: INSTITUTE OF NUCLEAR ENERGY RESEARCH, ATOMIC ENERGY COUNCIL, EXECUTIVE YUAN, R.O.CInventors: Ming-Hsin Li, Shih-Wei Lo, Sheng-Nan Lo, Shih-Ying Lee, Su-Jung Chen
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Patent number: 11371161Abstract: A method of forming an oxide film is provided. The method may include: supplying mist of a solution including a material of the oxide film dissolved therein to a surface of a substrate while heating the substrate at a first temperature so as to epitaxially grow the oxide film on the surface; and bringing the oxide film into contact with a fluid comprising oxygen atoms while heating the oxide film at a second temperature higher than the first temperature after the epitaxial growth of the oxide film.Type: GrantFiled: June 4, 2020Date of Patent: June 28, 2022Assignees: DENSO CORPORATION, NATIONAL UNIVERSITY CORPORATION KYOTO INSTITUTE OF TECHNOLOGYInventors: Tatsuji Nagaoka, Hiroyuki Nishinaka, Masahiro Yoshimoto
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Patent number: 11371994Abstract: The present application provides stable peptide-based Akt capture agents and methods of use as detection and diagnosis agents and in the treatment of diseases and disorders. The application further provides methods of manufacturing Akt capture agents using iterative on-bead in situ click chemistry.Type: GrantFiled: September 12, 2014Date of Patent: June 28, 2022Assignee: CALIFORNIA INSTITUTE OF TECHNOLOGYInventors: James R. Heath, Arundhati Nag, Samir Das, Joseph O. Varghese, Ryan K. Henning
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Patent number: 11371068Abstract: The present invention relates to a microorganism variant having the ability to extracellularly produce heme, and more particularly to a metabolically engineered microorganism variant having the ability to extracellularly produce heme and a method of producing heme using the same. According to the present invention, heme, an organometallic compound which is increasingly used as a health food or food supplement for the treatment of porphyria, can be extracellularly secreted and produced in high yield using the microorganism variant, but not conventional chemical synthesis or enzymatic synthesis.Type: GrantFiled: December 12, 2018Date of Patent: June 28, 2022Assignee: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGYInventors: Sang Yup Lee, Xin Rui Zhao, Kyeong Rok Choi
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Patent number: 11371729Abstract: A radiation shielding device for meteorological observation with internal air circulation including: a body for allowing meteorological sensors to be mounted therein; a cover for covering the body by engaging with the body; and a modified Venturi tube which is physically formed while the body and the cover are engaged with each other; wherein, the modified Venturi tube is configured as a first opening for receiving external air from an exterior of the body, a second opening for receiving internal air from an interior of the body, and a third opening for releasing the received external air and the received internal air, and wherein, the external air gets into the modified Venturi tube through the first opening, the internal air gets into the modified Venturi tube through the second opening, and the external air and the internal air are released from the modified Venturi tube through the third opening.Type: GrantFiled: September 14, 2021Date of Patent: June 28, 2022Assignee: National Institute of Meteorological SciencesInventors: Geon Tae Kim, Seon Jeong Kim, Ka Woong Kang, Mi Eun Park
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Patent number: 11370657Abstract: The present disclosure discloses a method and apparatus for manufacturing a microfluidic chip with a femtosecond plasma grating. The method is characterized in that two or more beams of femtosecond pulse laser act on quartz glass together at a certain included angle and converge in the quartz glass, and when pulses achieve synchronization in time domain, the two optical pulses interfere; Benefited by constraint of an interference field, only one optical filament is formed in one interference period; and numbers of optical filaments are arranged equidistantly in space to form the plasma grating. The apparatus for manufacturing the microfluidic chip includes a plasma grating optical path, a microchannel processing platform, and a hydrofluoric acid ultrasonic cell.Type: GrantFiled: April 14, 2021Date of Patent: June 28, 2022Assignees: CHONGQING INSTITUTE OF EAST CHINA NORMAL UNIVERSITY, ROI OPTOELECTRONICS TECHNOLOGY CO, LTD., EAST CHINA NORMAL UNIVERSITYInventors: Heping Zeng, Junyi Nan, Mengyun Hu, Ming Yan
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Patent number: 11371839Abstract: A method of performing visualized measurement on thickness distribution of a paint film and an apparatus therefor. A measurement target region is heated by a heating unit that applies a light beam while moving relative to the measurement target region of a measurement target structure. A sensing unit moving together with the heating unit generates a plurality of thermal images related to a phenomenon in which thermal energy is propagated in the measurement target region by scanning and photographing the heated measurement target region. The thermal images in a dynamic state are converted into time-spatial-integrated thermal images in a static state by performing coordinate transformation according to a time-spatial-integrated coordinate transformation algorithm. A thickness of the paint film is calculated by using a Fourier thermal conduction equation.Type: GrantFiled: November 2, 2018Date of Patent: June 28, 2022Assignee: Korea Advanced Institute of Science and TechnologyInventors: Hoon Sohn, Soonkyu Hwang, Jiho Park
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Patent number: 11375544Abstract: A wireless communication terminal comprises a transceiver configured to transmit and receive a wireless signal; and a processor configured to control an operation of the terminal, wherein the processor is configured to: perform a backoff procedure of a channel for data transmission, suspend the backoff procedure when a wireless signal having a signal strength higher than a predetermined first clear channel assessment (CCA) threshold is received through the channel, identify whether the received wireless signal is a wireless signal of the same basic service set (BSS) as the terminal, and determine whether to resume the backoff procedure based on a CCA threshold determined according to the identification result and a wireless communication method for performing an efficient clear channel assessment for spatial reuse of a communication system use the same.Type: GrantFiled: June 11, 2020Date of Patent: June 28, 2022Assignees: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC., SK TELECOM CO., LTD.Inventors: Juhyung Son, Jinsam Kwak, Geonjung Ko