Abstract: A system and method for monitoring nerve activity in a subject. The system includes a plurality of electrodes placed in proximity to skin of the subject, an amplifier electrically connected to the electrodes and configured to generate a plurality of amplified signals corresponding to electrical signals received from the subject through the electrodes, and a signal processor. The signal processor applies a high-pass filter to the amplified signals to generate filtered signals from the amplified signals, identifies autonomic nerve activity in the plurality of filtered signals; and generates an output signal corresponding to the filtered signals. The high-pass filter attenuates a plurality of the amplified signals having frequencies that correspond to heart muscle activity during a heartbeat.
Type:
Grant
Filed:
December 9, 2013
Date of Patent:
October 22, 2019
Assignee:
Indiana University Research and Technology Corporation
Abstract: Halogenated phenylethynyl-substituted heterocycles that possess either an N-alkylamino or N,N-dialkylamino group attached to the heterocycle or halogenated phenylethynyl-substituted benzenes that a nitrogen-containing heterocycle attached to the benzene inhibit the proliferation cancer cells and are useful antineoplastic agents.
Type:
Grant
Filed:
May 10, 2018
Date of Patent:
October 22, 2019
Assignee:
University of Kentucky Research Foundation
Inventors:
David S. Watt, Chunming Liu, Vitaliy M. Sviripa, Wen Zhang, Markos Leggas
Abstract: A method of forming a carbonized composition includes providing an organic composition, forming a protective layer over the organic composition, increasing temperature to carbonize the organic composition and for a period of time to form the carbonized composition, and removing the protective layer from the carbonized composition.
Type:
Grant
Filed:
April 14, 2017
Date of Patent:
October 22, 2019
Assignee:
University of Pittsburgh—Of the Commonwealth System of Higher Education
Abstract: The present invention contemplates induction of immunological tolerance thereby providing permanent allograft acceptance. This method obviates the need for a lifelong regimen of immunosuppressive agents which can increase the risk of infection, autoimmunity, and cancer. Immunological tolerance is thought to be mediated by regulatory T lymphocytes (Treg cells) with immunosuppressive capabilities. A therapeutically relevant platform comprising artificial constructs are contemplated comprising numerous soluble and surface bound Treg cell stimulating factors that may induce tolerance following allograft transplantation. Such artificial constructs, being the size of a cell, have surface bound monoclonal antibodies specific to regulatory T-cell surface moieties and encapsulated soluble regulatory T-cell modulating factors.
Type:
Grant
Filed:
August 10, 2017
Date of Patent:
October 22, 2019
Assignees:
UNIVERSITY OF PITTSBURGH—OF THE COMMONWEALTH SYSTEM OF HIGHER EDUCATION, MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Inventors:
Steven R. Little, Siddharth Jhunjhunwala
Abstract: The present disclosure relates to a preparation of CD140a/PDGFR? positive cells that comprises oligodendrocyte progenitor cells co-expressing OLIG2 and CD140a/PDGFR?. The preparation of cells is derived from pluripotent cells that were derived from skin cells, fibroblasts, umbilical cord blood, peripheral blood, bone marrow, or other somatic cells. The cell preparation has an in vivo myelination efficiency that is equal to or greater than the in vivo myelination efficiency of a preparation of A2B5+/PSA-NCAM?sorted fetal human tissue derived oligodendrocyte progenitor cells. Methods of making, isolating and using the disclosed cell preparation are also described.
Abstract: A method including substituting an atmosphere in a space, in which a sliding surface formed of a metal or a ceramic material, and a slid surface are disposed, with a gas atmosphere containing a hydroxyl group-containing compound and at least one of hydrogen and nitrogen, and relatively sliding the sliding surface against the slid surface by a Hertzian contact stress of 1.0 GPa or more in the space under the gas atmosphere containing the hydroxyl group-containing compound at least one of hydrogen and nitrogen. As a result, it is possible to form, on the sliding surface, a low-friction coating that stably exhibits a significantly low friction coefficient, for example, of 10?4 order (less than 0.001).
Type:
Grant
Filed:
January 29, 2016
Date of Patent:
October 22, 2019
Assignees:
JTEKT CORPORATION, THE UNIVERSITY OF TOKYO
Abstract: A method for delivering electrical stimulation to alter a cognitive state of a user, the method comprising: monitoring a brain signal from the user via one or more intracranial electrodes implanted in the brain of the user while the user is presented with a stimulus; comparing the brain signal to a testing phase biomarker, wherein the testing phase biomarker is derived from a cognitive test performed on a contributor during a testing phase; delivering electrical stimulation to a brain of the user based on the comparing step to steer the brain of the user towards a high performance cognitive state.
Type:
Grant
Filed:
January 22, 2016
Date of Patent:
October 22, 2019
Assignee:
THE TRUSTEES OF THE UNIVERSITY OF PENNSYLVANIA
Abstract: The disclosure relates to chemokine receptor modulators and uses related thereto. In certain embodiments, the disclosure relates to pharmaceutical compositions comprising compounds disclosed herein or pharmaceutically acceptable salts or prodrugs thereof. In certain embodiments, the compositions disclosed herein are used for managing chemokine related conditions, typically prevention or treatment of viral infections such as HIV or for managing cancer.
Type:
Grant
Filed:
May 15, 2015
Date of Patent:
October 22, 2019
Assignee:
Emory University
Inventors:
Bryan D. Cox, Lawrence J. Wilson, Anthony Prosser, Dennis C. Liotta, James P. Snyder
Abstract: The present invention provides an agent, or a composition containing an agent, for use in treating or preventing a bacterial infection in a subject, wherein said agent comprises: (i) an oligopeptidic compound comprising a PCNA interacting motif and a domain that facilitates the cellular uptake of said compound, wherein the PCNA interacting motif is X1X2X3X4X5 (SEQ ID NO: 1) and wherein: X1 is a basic amino acid; X2 is an aromatic amino acid; X3 is an uncharged amino acid other than an aromatic amino acid, Glycine (G) and Proline (P); X4 is any amino acid other than Proline (P), an acidic amino acid or an aromatic amino acid; and X5 is a basic amino acid or Proline (P); or (ii) a nucleic acid molecule comprising a sequence encoding the oligopeptidic compound of (i). In certain aspects the agent and compositions of the invention may be used as single agents.
Type:
Grant
Filed:
November 6, 2014
Date of Patent:
October 22, 2019
Assignee:
Norwegian University of Science and Technology
Abstract: An electronic switch apparatus, a capacitive strain gauge apparatus and a nozzle apparatus, as well as methods for making electrodes such as liquid metal pipes are provided. A nozzle apparatus includes (a) a nozzle housing defining a cavity, where the nozzle housing defines an inlet at a first end and defines an outlet at a second end and (b) a first tube defining an inlet at a first end and defining an outlet at a second end, wherein the first tube is at least partially disposed in and is co-axially arranged with the nozzle housing, where the first tube defines a first flow channel, wherein a second flow channel is defined between an exterior surface of the first tube and an interior surface of the nozzle housing.
Type:
Grant
Filed:
May 15, 2015
Date of Patent:
October 22, 2019
Assignee:
Arizona Board of Regents on behalf of Arizona State University
Abstract: Provided are a method for simultaneously and stably dispersing spherical nanoparticles in an oil medium by using layered nanosheets and an application thereof. The method comprises: (1) mixing the layered nanosheets and oil-soluble alkylamines to obtain a first mixture containing intercalated/exfoliated nano sheets; (2) mixing spherical nanoparticles and the oil medium to obtain a second mixture; and (3) mixing the first mixture, the second mixture and the oil medium to obtain a third mixture.
Type:
Grant
Filed:
September 23, 2014
Date of Patent:
October 22, 2019
Assignee:
SOUTH UNIVERSITY OF SCIENCE AND TECHNOLOGY OF CHINA
Abstract: The present invention relates to a nanoparticle composition which is prepared by a process which is characterized by dissolving a poorly water-soluble compound or the like under a high temperature and a high pressure, and milling a suspension or the like containing a uniform crystal obtained by cooling the obtained solution.
Abstract: Disclosed herein are methods and compositions for determining the copy number of a first target nucleic acid as compared to the copy number of a second target nucleic acid in a single well with a single detection label. For example, disclosed herein are methods and compositions for determining the copy number of a first target nucleic acid as compared to the copy number of a second target nucleic acid by a monochrome multiplex quantitative PCR (MMQPCR) in a single well with a single detection label.
Abstract: Techniques are described for data transfer in spin-based systems where digital bit values are represented by magnetization states of magnetoresistive devices rather than voltages or currents. For data transmission, a spin-based signal is converted to an optical signal and transmitted via an optical transport. For data reception, the optical signal is received via the optical transport and converted back to a spin-based signal. Such data transfer may not require an intervening conversion of the spin-based signal to charge-based signal that relies on voltages or currents to represent digital bit values. In addition, techniques are described to use magnetoresistive devices to control the amount of current or voltage that is delivered, where the magnetization state of the magnetoresistive device is set by an optical signal.
Abstract: Disclosed is a superconducting article comprising a silver overlayer consisting of no more than about 20% of grains over about 1 ?m, having a minimum Vickers micro-hardness value of about 100, and a porosity of less than about 1%. A method of manufacturing a superconducting tape is disclosed as comprising, deposition of silver, oxygenation at about 400° C. for about 30 minutes, slitting, deposition of silver at a temperature of less than about 250° C., and application of copper.
Abstract: A memory system including a memory subsystem and a memory controller is provided. The memory subsystem includes a plurality of first memory modules implemented by a phase-change memory and a second memory module implemented by a memory whose write speed is faster than that of the phase-change memory. The memory controller generates a non-blocking code from a plurality of sub-data into which original data are divided, writes the non-blocking code to the second memory module, writes the plurality of sub-data to the plurality of first memory modules, respectively, and reconstructs the original data from some sub-data of the plurality of sub-data which are read from some of the plurality of first memory modules and the non-blocking code read from the second memory under a predetermined condition at a read request.
Type:
Grant
Filed:
March 8, 2019
Date of Patent:
October 22, 2019
Assignees:
MEMRAY CORPORATION, YONSEI UNIVERSITY, UNIVERSITY—INDUSTRY FOUNDATION (UIF)
Abstract: Embodiments of the present disclosure provide for methods of hydrocarbon functionalization, methods and systems for converting a hydrocarbon into a compound including at least one group ((e.g., hydroxyl group) (e.g., methane to methanol)), functionalized hydrocarbons, and the like. Systems and methods as described herein can utilize photocatalysis.
Type:
Grant
Filed:
August 31, 2018
Date of Patent:
October 22, 2019
Assignees:
University of Virginia Patent Foundation, The Trustees of Princeton University
Inventors:
Thomas Brent Gunnoe, George Fortman, Nicholas C. Boaz, John T. Groves
Abstract: The present invention provides structural details of a thiazolopyrimidinone compound, a preparation method thereof, and use thereof in the manufacture of a medicament for the treatment of central nervous system diseases.
Abstract: Increased sensitivity of spectrometers through reducing noise in independent voltage signals via a differential voltage analyzer utilizing a reference wavelength from a wavelength region in which the optical absorption of the sample is negligible. In an embodiment, a grating permits selection of a reference wavelength. In another embodiment, filters permit selection of a reference wavelength. In yet another embodiment, both a grating and a filter permit selection of a reference wavelength. In an aspect, the differential voltage analyzer reduces noise by minimizing a differential voltage between the independent voltage signals and the reference voltage signal by adjusting the value of a cancellation coefficient.
Type:
Grant
Filed:
November 9, 2016
Date of Patent:
October 22, 2019
Assignee:
The Curators of the University of Missouri
Abstract: Methods for producing isotopically-labelled peptides are provided. Aspects of the method include: contacting a sample including a metabolically tagged protein with a cleavable probe to produce a probe-protein conjugate; separating the probe-protein conjugate from the sample; digesting the probe-protein conjugate to produce a probe-peptide conjugate; and cleaving a cleavable linker to release an isotopically labelled peptide. The method may further include: identifying a predetermined isotopic pattern in a mass spectrum; determining an amino acid sequence of the isotopically labelled peptide; and identifying the site of protein glycosylation based on the determined amino acid sequence. Also provided are cleavable probes for practicing the subject methods, described by the Formula: A-L-(M-Z) where A is an affinity tag, L is a cleavable linker, M is an isotopic label and Z is a chemoselective tag capable of cross-linking a metabolically tagged protein.
Type:
Grant
Filed:
October 22, 2018
Date of Patent:
October 22, 2019
Assignee:
THE REGENTS OF THE UNIVERSITY OF CALIFORNIA