Patents Assigned to University of the Sciences
  • Patent number: 12008755
    Abstract: A method for detecting chromosomal abnormalities comprising conversion of a chromosomal image into an ideogram which is compared to a control or standard ideogram of a chromosome; or converting an ideogram of a chromosome into a chromosomal image.
    Type: Grant
    Filed: March 17, 2021
    Date of Patent: June 11, 2024
    Assignees: National Guard Health Affairs, King Saud bin Abdulaziz University for Health Sciences, King Abdullah International Medical Research Center
    Inventors: Yahya Abdulfattah Bokhari, Areej Abdulaziz Alhareeri, Azizah Mohammed Alkhaldi, Abdulrhman Fahad Aljouie
  • Patent number: 11988800
    Abstract: A method of reducing or rejecting common mode interference and a circuit for electromagnetic induction logging with improved common mode interference reduction or rejection are disclosed, which are useful in the field of electromagnetic induction logging technology. Accurate formation signals are calculated based on phases and amplitudes of common mode signals, which do not change with the coil access mode, and phases of differential signals, which are reversed with amplitudes unaltered when the coil is connected reversely. This provides a mechanism to effectively eliminate the influence of common mode interference even when the common mode interference is greater in amplitude than the signals from a geological formation.
    Type: Grant
    Filed: June 28, 2022
    Date of Patent: May 21, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Guoyun Guan, Min Meng, Jun Hu, Zaiping Nie
  • Patent number: 11974885
    Abstract: A device suitable for guiding a trajectory of a surgical shunt or needle comprising two protractors on a curved frame configured to fit over, or attach to, the skull of a patient, wherein the two protractors are respectively oriented in a circular dimension and anterior-posterior/medio-lateral directions. A method for using the device to guide a surgical needle, probe, shunt or other instrument during surgery.
    Type: Grant
    Filed: October 1, 2020
    Date of Patent: May 7, 2024
    Assignees: National Guard Health Affairs, King Saud bin Abdulaziz University for Health Sciences, King Abdullah International Medical Research Center
    Inventors: Momen Ahmad Sharab, Balgees Abdullah Ajlan
  • Publication number: 20240132887
    Abstract: Disclosed herein are, inter alia, inhibitors of protein arginine methyltransferase 9 and pharmaceutical compositions thereof, and methods comprising the use of protein arginine methyltransferase 9 inhibitors for the treatment of a protein arginine methyltransferase 9-modulated disease or disorder, such as a hematological cancer.
    Type: Application
    Filed: October 6, 2023
    Publication date: April 25, 2024
    Applicants: City of Hope, Western University of Health Sciences
    Inventors: Ling Li, Haojie Dong, Lei Zhang, Xin He, Yun Lyna Luo, Yi-Chun Lin
  • Patent number: 11966807
    Abstract: A multi-tag concurrent identification method and a system for a query tree based on feature groups are provided in this disclosure. In the disclosure, a whole data string space is divided into a plurality of disjoint subsets according to features of data strings returned by tags, where each of the subsets contains several different data strings, each of the data strings in the each of the subsets is regarded as a complete tag ID or a partial ID, and the each of the subsets corresponds to a unique query prefix, a length of the prefix is fixed and does not dynamically increase with an actual location of a collision, and when multiple data strings from a same subset return at a same time, a reader is capable of identifying them at a same time in a slot.
    Type: Grant
    Filed: August 15, 2023
    Date of Patent: April 23, 2024
    Assignee: Nanjing University of Information Science and Technology
    Inventors: Jian Su, Jialin Zhou, Wei Zhuang, Ling Tan
  • Publication number: 20240112914
    Abstract: A new variable selective etching technology for thick SOI devices. An SOI material is etched by the following steps: (1) providing an SOI wafer; (2) depositing a composite hard mask with a variable selection ratio to replace a traditional hard mask with an invariable selection ratio; (3) applying a photoresist; (4) mask making, namely defining a to-be-etched region by using a photoetching plate; (5) etching the photoresist in the defined region; (6) etching the composite hard mask; (7) removing the photoresist; (8) etching top silicon by using a second etching method at a first selection ratio; and (9) etching a buried oxide layer by using a third etching method at a second selection ratio. The new variable selective etching technology avoids the damage to a side wall of a deep trench when the buried oxide layer is etched, and does not need to use an excessive thick hard mask.
    Type: Application
    Filed: March 15, 2023
    Publication date: April 4, 2024
    Applicant: University of Electronic Science and Technology of China
    Inventors: Bo ZHANG, Teng LIU, Wentong ZHANG, Nailong HE, Sen ZHANG, Ming QIAO, Zhaoji LI
  • Publication number: 20240102051
    Abstract: A multifunctional copolymeric nanoparticle, including a plurality of 1,4-diazabicyclo[2.2.2]octane (DABCO) monomers crosslinked with a plurality of bromoacetyl cystamine (BBAC) monomers. Also, each of the plurality of DABCO monomers and each of the plurality of BBAC monomers alternate in sequence. the multifunctional copolymeric nanoparticle has a formula: wherein n is an integer between 5 and 40.
    Type: Application
    Filed: November 20, 2023
    Publication date: March 28, 2024
    Applicants: Iran University of Medical Sciences
    Inventors: Seyyed Emad Hooshmand, Mahdi Karimi, Amir Hossein Vahabi
  • Patent number: 11936468
    Abstract: A spatial position-dependent I/Q domain modulation method, dual domain modulation method and multiple access communication method are provided. The methods eliminate the dependence of physical layer secure communication on channel state information, and realize the function that a receiver at an expected position can communicate normally, while an eavesdropper at other positions cannot receive a signal or can only receive a wrong signal. The security capability of a wireless communication system is improved from the spatial dimension. The multiple access communication method can realize the distinguishing of multiple users according to precise spatial position points. Even if a plurality of users are located in the same sector in an angular domain, as long as the spatial positions of these users are different, the method can be used to perform multiple access communication, thereby further improving the spatial multiplexing rate of the system and increasing the system capacity.
    Type: Grant
    Filed: April 29, 2021
    Date of Patent: March 19, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Guangrong Yue, Daizhong Yu, Lin Yang
  • Patent number: 11936471
    Abstract: A high-dimensional non-orthogonal transmission method is provided. In the method, signals of various users are mapped to form high-dimensional signals, and the high-dimensional signals are pre-coded, such that non-orthogonal transmission is realized in a higher dimension. Moreover, different users perform matched receiving on respective signals, and non-orthogonal transmission signals can be recovered merely by means of a receiver with a linear complexity. By means of the method, multi-user data non-orthogonal transmission can be realized without depending on conditions such as user pairing and collaboration, and various users do not need to perform iterative feedback, such that the detection complexity of non-orthogonal multi-user signals is significantly reduced.
    Type: Grant
    Filed: April 29, 2021
    Date of Patent: March 19, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Guangrong Yue, Daizhong Yu, Lin Yang
  • Patent number: 11930649
    Abstract: A transparent top electrode composite film for organic optoelectronic devices includes a substrate, an MoOx film layer coated on the substrate, a doped Ag-based film layer coated on the MoOx film layer and an HfOx film layer coated on the doped Ag-based film layer. A preparation method of the transparent top electrode composite film, which is achieved under vacuum and low temperature, includes steps of (A) depositing an MoOx film layer on a substrate through thermal evaporation process or electron beam evaporation process without heating the substrate; (B) depositing a doped Ag-based film layer on the MoOx film layer through sputtering process or evaporation process; and (C) depositing an HfOx film layer on the doped Ag-based film layer through reactive sputtering process, thereby obtaining the transparent top electrode composite film. The composite film is able to be used as a top electrode material for organic optoelectronic devices.
    Type: Grant
    Filed: December 30, 2021
    Date of Patent: March 12, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Deen Gu, Xin Zhou, Yadong Jiang, Mengru Chen
  • Publication number: 20240078802
    Abstract: A system for real-time target identification of an unmanned aerial vehicle (UAV) based on an embedded technique and an improved YOLO4 algorithm, and relates to the field of real-time target detection is disclosed. The system for real-time target identification of a UAV based on an embedded technique and an improved YOLO4 algorithm abandons a conventional “one-to-one” mode, and can be used for a plurality of UAV data processing applications, and multiple users in different geographical locations can further remotely manage and control the system. Particularly, in a target identification client of the present disclosure, to obtain a better real-time identification effect, a YOLOv4 target identification algorithm is improved, so that a better identification result and a faster identification speed are obtained.
    Type: Application
    Filed: September 6, 2022
    Publication date: March 7, 2024
    Applicant: University of Electronic Science and Technology of China
    Inventors: Fang HUANG, Shengyi Chen, Shuying Peng, Yinjie Chen
  • Patent number: 11923930
    Abstract: A high-dimensional signal transmission method is provided. The method generates M M-dimensional first signals on the basis of M original signals and generates M M-dimensional second signals on the basis of a precoding signal and of the first signals, and finally, a transmitter sums all of the second signals and then transmits by utilizing M subchannels. As such, each subchannel carries information of the M original signals; hence, when any subchannel experiences deep fading, the deep fading is shared jointly by M signals, thus preventing the deep fading from causing a particularly severe impact on any signal. Moreover, all of the original signals can be recovered by utilizing the signals on the other subchannels, thus increasing the systematic resistance against subchannel deep fading. Meanwhile, the system implements the parallel transmission of the M original signals, thus ensuring the throughput of a communication system.
    Type: Grant
    Filed: April 29, 2021
    Date of Patent: March 5, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Guangrong Yue, Daizhong Yu, Lin Yang
  • Patent number: 11916708
    Abstract: A phase domain modulation method dependent on a spatial position is provided. The method mainly includes the following steps: a transmitter and a receiver perform time synchronization to obtain a synchronization time; the transmitter performs a phase domain precoding operation on an original signal to obtain a phase domain pre-coded signal; the receiver receives the phase domain pre-coded signal, obtains a phase domain initial reception signal, and performs a phase domain matching operation on the phase domain initial reception signal to obtain an estimation of the original signal.
    Type: Grant
    Filed: April 29, 2021
    Date of Patent: February 27, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Guangrong Yue, Daizhong Yu, Lin Yang
  • Patent number: 11903987
    Abstract: A plant-based composition containing an alcohol extract of Tecoma species (e.g. Tecoma stans) and an exogenous carrier and/or excipient. Also provided is a composition including a mixture of three acids, namely corosolic acid, oleanolic acid, and ursolic acid, which can be found in the Tecoma species. Methods of treating skin lesions (e.g. warts, corns, calluses, and umbilical granulomas) and reducing symptoms associated with the skin lesions using such compositions are specified.
    Type: Grant
    Filed: May 7, 2021
    Date of Patent: February 20, 2024
    Assignees: National Guard Health Affairs, King Saud bin Abdulaziz University for Health Sciences, King Abdullah International Medical Research Center
    Inventor: Ayman Mahmoud Saleh
  • Publication number: 20240055489
    Abstract: A homogenization field device with low specific on-resistance based on multidimensional coupled voltage dividing mechanism includes a first conductive type semiconductor substrate, a first conductive type well region, a first conductive type semiconductor contact region, a second conductive type drift region, a second conductive type well region, a second conductive type semiconductor contact region, a first dielectric oxide layer, a second dielectric oxide layer, a third dielectric oxide layer, a fourth dielectric oxide layer, a polycrystalline silicon electrode of a floating field plate, a polycrystalline silicon electrode of a control gate, a first layer of metal strips and a second layer of metal strips. The first dielectric oxide layer and the polycrystalline silicon electrode of the floating field plate form a vertical floating field plate, and the first layer of metal strips, the second layer of metal strips and the fourth dielectric oxide layer form a surface fixed dielectric capacitor.
    Type: Application
    Filed: November 25, 2022
    Publication date: February 15, 2024
    Applicant: University of Electronic Science and Technology of China
    Inventors: Bo ZHANG, Lingying WU, Yuting LIU, Wentong ZHANG, Zhaoji LI
  • Patent number: 11897815
    Abstract: A Mg—Ta based dielectric ceramic for multi-layer ceramic capacitor (MLCC) and a low-temperature preparation method thereof are provided. By providing a glass additive with high matching with a Mg—Ta ceramic, a modifier A+12CO3—B2+O—C3+2O3—SiO2 (A=Li, K; B=MnO, CuO, BaO; C=B, Al) is intruded in to a main material MgO—Ta2O5, which can significantly reduce the sintering temperature and provide a negative temperature coefficient of dielectric constant of ?100±30 ppm/° C., and reduce the deterioration factors of loss caused by an additive for sintering, and prepare a dielectric material applied to RF MLCC with low loss, low cost and good process stability.
    Type: Grant
    Filed: April 27, 2023
    Date of Patent: February 13, 2024
    Assignee: Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China
    Inventors: YuanYuan Yang, XiaoZhen Li, MengJiang Xing, YanLing Luo, HongYu Yang, QingYang Fan
  • Publication number: 20240041976
    Abstract: The invention relates to antibacterial compositions comprising micrococcin P1 and at least one additional antibacterial agent, which is preferably a bacteriocin or an antibiotic. The compositions may be used as an antibacterial, particularly for preventing or treating a bacterial infection.
    Type: Application
    Filed: September 14, 2021
    Publication date: February 8, 2024
    Applicants: Norwegian University of Life Sciences, Norwegian Institute of Bioeconomy Research
    Inventors: Dzung DIEP, Kirill OVCHINNIKOV, Christian KRANJEC, Tage THORSTENSEN
  • Patent number: 11888022
    Abstract: An SOI lateral homogenization field high voltage power semiconductor device, and a manufacturing method and application thereof are provided. The device includes a type I conductive semiconductor substrate, a type II conductive drift region, a type I field clamped layer, type I and type II conductive well regions, the first dielectric oxide layer forming a field oxide layer, the second dielectric oxide layer forming a gate oxide layer, a type II conductive buried dielectric layer, a type II conductive source heavily doped region, a type II conductive drain heavily doped region. The first dielectric oxide layer and the floating field plate polysilicon electrodes form a vertical floating field plate distributed throughout the type II conductive drift region to form a vertical floating equipotential field plate array. When the device is in on-state, high doping concentration can be realized by the full-region depletion effect form the vertical field plate arrays.
    Type: Grant
    Filed: May 16, 2022
    Date of Patent: January 30, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Wentong Zhang, Ning Tang, Ke Zhang, Nailong He, Ming Qiao, Zhaoji Li, Bo Zhang
  • Patent number: 11879000
    Abstract: A method for isolating a protein complex comprising BCL10 and at least one, preferably all, of ROS1, LSD1, BTK, KU80, KU70, CUL4A, IMP3, thioredoxin, hTID1, DAP3, CDK1/CDC2, PRL1/PTP4A1 or NM23. Methods for using this complex to diagnose or prognose diseases including diabetes, obesity, cancer, neurodegenerative disease or inflammatory diseases associated with activation of NF-?B. Methods for distinguishing lean, obese and diabetic subjects based on expression of BCL10 and its ligands are also disclosed. The invention also pertains to pharmaceutical compositions comprising ligands for BCL10 or other components of this complex or agents such as siRNA or miRNA that regulate the expression of the protein components of this complex.
    Type: Grant
    Filed: November 15, 2019
    Date of Patent: January 23, 2024
    Assignees: National Guard Health Affairs, King Saud bin Abdulaziz University for Health Sciences, King Abdullah International Medical Research Center, King Abdulaziz City for Science and Technology
    Inventors: Ayman Mahmoud Saleh, Mamoun Ahmad Salim Ahram, Amre Osman Nasr
  • Patent number: 11881932
    Abstract: A random phase modulation method depending on a communication distance is provided. In the method, time synchronization is carried out by means of a transmitter and a receiver, a local random signal is generated, and an original signal to be sent is pre-coded according to a transmission delay and the generated local random signal, such that random phase modulation depending on a communication distance is realized, potential security brought about by positions of the transmitter and the receiver is fully utilized, a receiver at an expected distance position can receive a signal with a correct phase, and a receiver at another distance position receives a signal with a scrambled phase, thereby improving the secure communication capability of a wireless communication system in terms of the dimension of space.
    Type: Grant
    Filed: April 29, 2021
    Date of Patent: January 23, 2024
    Assignee: University of Electronic Science and Technology of China
    Inventors: Guangrong Yue, Daizhong Yu, Lin Yang