Patents by Inventor Robert Power

Robert Power has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20240120044
    Abstract: A schema is generated to establish a connection between user devices and one or more patient record servers. Generating a schema can include receiving configuration information associated with a patient record gateway, wherein the patient record gateway is associated with one or more patient record servers configured for storing electronic health records for a plurality of patients. Generating a schema can include defining, based at least in part on the configuration information, a schema configured to enable user devices to retrieve, via the patient record gateway, electronic health records from the one or more patient record servers. A schema can be requested by a user device. The schema can be sent to a user device to establish a connection with the one or more patient record servers.
    Type: Application
    Filed: December 18, 2023
    Publication date: April 11, 2024
    Applicant: Apple Inc.
    Inventors: Meghan Tushar Raul, Sangeeth Sridharan, Jorge Fernando Pozas Trevino, Pablo Antonio Gonzalez Cervantes, Mohan Singh Randhava, Sean Robert Moore, Todd D. Power, Dongsheng Zhang, Eric K. Kimn, Pascal B. Pfiffner
  • Patent number: 11952305
    Abstract: In some embodiments, a method for processing an optical fiber includes: drawing an optical fiber through a draw furnace, conveying the optical fiber through a flame reheating device downstream from the draw furnace, wherein the flame reheating device comprises one or more burners each comprising: a body having a top surface and an opposing bottom surface, an opening within the body extending from the top surface through the body to the bottom surface, wherein the optical fiber passes through the opening, and one or more gas outlets within the body; and igniting a flammable gas provided by the one or more gas outlets to form a flame encircling the optical fiber passing through the opening, wherein the flame heats the optical fiber by at least 100 degrees Celsius at a heating rate exceeding 10,000 degrees Celsius/second.
    Type: Grant
    Filed: September 30, 2021
    Date of Patent: April 9, 2024
    Assignee: CORNING INCORPORATED
    Inventors: Ravindra Kumar Akarapu, Joel Patrick Carberry, David Alan Deneka, Steven Akin Dunwoody, Kenneth Edward Hrdina, John Michael Jewell, Yuanjie Jiang, Nikolaos Pantelis Kladias, Ming-Jun Li, Barada Kanta Nayak, Dale Robert Powers, Chunfeng Zhou, Vincent Matteo Tagliamonti, Christopher Scott Thomas
  • Publication number: 20240081876
    Abstract: Surgical instruments for interfacing with implants can include an inserter configured to dock to a unilateral portion of an implant. The inserter can include a control shaft that is configured to lock or unlock the inserter coupling with the implant. Actuation of the control shaft can occur by way of a knob that can control movement of the control shaft. The inserter can facilitate positioning of the implant relative to a surgical site and allow for application of counter-torque when imparting torque for tightening a set screw, etc. Additional instruments can also be used to manipulate the implant. For example, auxiliary instruments can be coupled to the inserter, such as a reducer instrument, to facilitate rod reduction, etc. Alternatively or in addition, a holder instrument can be used that has a threaded distal engagement feature for coupling to the implant to facilitate positioning thereof.
    Type: Application
    Filed: September 13, 2023
    Publication date: March 14, 2024
    Inventors: Joseph Peterson, Joseph M. DeLage, Ryan Thomas Andrade, Paul S. Maguire, Ellen Roberts, Michael Sorrenti, Roman Lomeli, Benjamin Robert Powers, Keanan Smith
  • Publication number: 20240073796
    Abstract: A circuit arrangement includes a preprocessing circuit configured to obtain context information related to a user location, a learning circuit configured to determine a predicted user movement based on context information related to a user location to obtain a predicted route and to determine predicted radio conditions along the predicted route, and a decision circuit configured to, based on the predicted radio conditions, identify one or more first areas expected to have a first type of radio conditions and one or more second areas expected to have a second type of radio conditions different from the first type of radio conditions and to control radio activity while traveling on the predicted route according to the one or more first areas and the one or more second areas.
    Type: Application
    Filed: September 7, 2023
    Publication date: February 29, 2024
    Inventors: Shahrnaz AZIZI, Biljana BADIC, John BROWNE, Dave CAVALCANTI, Hyung-Nam CHOI, Thorsten CLEVORN, Ajay GUPTA, Maruti GUPTA HYDE, Ralph HASHOLZNER, Nageen HIMAYAT, Simon HUNT, Ingolf KARLS, Thomas KENNEY, Yiting LIAO, Christopher MACNAMARA, Marta MARTINEZ TARRADELL, Markus Dominik MUECK, Venkatesan NALLAMPATTI EKAMBARAM, Niall POWER, Bernhard RAAF, Reinhold SCHNEIDER, Ashish SINGH, Sarabjot SINGH, Srikathyayani SRIKANTESWARA, Shilpa TALWAR, Feng XUE, Zhibin YU, Robert ZAUS, Stefan FRANZ, Uwe KLIEMANN, Christian DREWES, Juergen KREUCHAUF
  • Publication number: 20230406752
    Abstract: A method of heating an optical fiber, the method including flowing gas from a common gas channel into one or more gas outlets of a burner, the common gas channel encircling an aperture of the burner. The method further including igniting the gas to form a flame and heating the fiber with the flame as the fiber passes through the aperture. The one or more gas outlets opening into the aperture such that each gas outlet has a gas outlet bore terminating at an inward-facing wall of the burner that defines the aperture. And the gas outlet bore being oriented at an angle ?1 defined between the gas outlet bore and the inward-facing wall of the burner, downstream of the gas outlet bore, that is greater than or equal to 10 degrees and less than or equal to 70 degrees.
    Type: Application
    Filed: May 17, 2023
    Publication date: December 21, 2023
    Inventors: Nikolaos Pantelis Kladias, Dale Robert Powers, Vincent Matteo Tagliamonti, Chunfeng Zhou
  • Publication number: 20230410977
    Abstract: This document relates to methods and materials for assessing radiation exposure. For example, methods and materials that can be used to determine whether a mammal (e.g., a human) has been exposed to radiation and/or whether a mammal (e.g., a human) is at risk of developing one or more radiation injuries (e.g., cutaneous radiation injury (CRI) and/or acute radiation syndrome (ARS)) following radiation exposure (e.g., radiation therapy) are provided.
    Type: Application
    Filed: December 22, 2021
    Publication date: December 21, 2023
    Inventors: Alexandra Crook, Aline De Lima Leite, Thomas Payne, Fatema Bhinderwala, Robert Powers
  • Patent number: 11752520
    Abstract: Methods for producing a nanotextured surface on a substrate include forming nanoparticles from a precursor within a stream of a carrier gas. Methods include heating a surface of a substrate facing the carrier gas. Methods comprise delivering the nanoparticles to the surface of the substrate facing the carrier gas to produce the nanotextured surface.
    Type: Grant
    Filed: November 30, 2020
    Date of Patent: September 12, 2023
    Assignee: CORNING INCORPORATED
    Inventors: Jiangwei Feng, Guisong Lu, Dale Robert Powers, He Wang, Huiqing Wu
  • Patent number: 11708291
    Abstract: Methods for modifying multi-mode optical fiber manufacturing processes are disclosed. In one embodiment, a method for modifying a process for manufacturing multi-mode optical fiber includes measuring at least one characteristic of a multi-mode optical fiber. The at least one characteristic is a modal bandwidth or a differential mode delay at one or more wavelengths. The method further includes determining a measured peak wavelength of the multi-mode optical fiber based on the measured characteristic, determining a difference between the target peak wavelength and the measured peak wavelength, and modifying the process for manufacturing multi-mode optical fiber based on the difference between the target peak wavelength and the measured peak wavelength.
    Type: Grant
    Filed: September 6, 2018
    Date of Patent: July 25, 2023
    Assignee: Corning Incorporated
    Inventors: Jennifersue A. Bowker, Xin Chen, Jason Edward Hurley, Elios Klemo, Igor Rafaelyevich Mejouev, Daniel Aloysius Nolan, Dale Robert Powers
  • Patent number: 11667558
    Abstract: A method of producing bi-modal particles includes the steps of igniting a first precursor gas using a primary burner thereby producing a first plurality of particles of a first size, fluidly transporting the first plurality of particles down a particle tube, igniting a second precursor gas using a secondary burner thereby producing a second plurality of particles of a second size, flowing the second plurality of particles into the first plurality of particles, and capturing the first and second plurality of particles.
    Type: Grant
    Filed: January 13, 2020
    Date of Patent: June 6, 2023
    Assignee: Corning Incorporated
    Inventors: Laura Beth Cook, Curtis Robert Fekety, Yunfeng Gu, Dale Robert Powers, Christopher Scott Thomas, Srinivas Vemury, Fei Xia, Chunfeng Zhou
  • Publication number: 20230115039
    Abstract: The disclosure provides methods for predicting surface-presenting peptides using binding and surface-presentation characteristics. The method can include accessing a trained machine-learning model that is configured to generate an output that indicates an extent to which the one or more expression levels and the one or more peptide-presentation metrics are related in accordance with a population-level relationship between expression and presentation. For each peptide of the set of peptides for a tissue sample, a score can be determined using the machine-learning model and genomic and transcriptomic data corresponding to the peptide. The score is predictive of whether a corresponding peptide is a surface-presenting peptide that binds to an MHC molecule and is presented on a cell surface.
    Type: Application
    Filed: December 13, 2022
    Publication date: April 13, 2023
    Applicant: Personalis, Inc.
    Inventors: Charles Wilbur ABBOTT, III, Sean Michael BOYLE, Rachel Marty PYKE, Eric LEVY, Dattatreya MELLACHERUVU, Rena MCCLORY, Richard CHEN, Robert POWER, Gabor BARTHA, Jason HARRIS, Pamela MILANI, Prateek TANDON, Paul MCNITT, Massimo MORRA, Sejal DESAI, Juan-Sebastian SALVIDAR, Michael CLARK, Christian HAUDENSCHILD, John WEST, Nick PHILLIPS, Simo V. ZHANG
  • Publication number: 20230050395
    Abstract: Methods for generating a composite biomarker that identifies a predicted level of responsiveness of a subject to a particular type of an immunotherapy treatment is provided. The method can include generating genomic metrics that represent one or more characteristics corresponding to one or more DNA sequences. The method can also include generating transcriptomic metrics represent one or more characteristics corresponding to a set of peptides that are translated from a corresponding RNA sequence of the one or more RNA sequences. The method can also include generating a composite biomarker score derived from the set of genomic metrics and the set of transcriptomic metrics. The method can also include determining, based on the composite biomarker score, a predicted level of responsiveness of the subject to a particular type of an immunotherapy treatment.
    Type: Application
    Filed: October 13, 2022
    Publication date: February 16, 2023
    Applicant: Personalis, Inc.
    Inventors: Charles Wilbur ABBOTT, III, Sean Michael BOYLE, Rachel Marty PYKE, Eric LEVY, Dattatreya MELLACHERUVU, Rena MCCLORY, Richard CHEN, Robert POWER, Gabor BARTHA, Jason HARRIS, Pamela MILANI, Prateek TANDON, Paul MCNITT, Massimo MORRA, Sejal DESAI, Juan-Sebastian SALVIDAR, Michael CLARK, Christian HAUDENSCHILD, John WEST, Nick PHILLIPS, Simo V. ZHANG
  • Patent number: 11577983
    Abstract: A method of forming an optical fiber preform includes the steps: igniting a burner having a fume tube assembly to produce a first spray size of silicon dioxide particles; depositing the silicon dioxide particles on a core cane to produce a soot blank; and adjusting an effective diameter of an aperture of the fume tube assembly to produce a second spray size of the silicon dioxide particles. The second spray size is larger than the first spray size.
    Type: Grant
    Filed: December 7, 2020
    Date of Patent: February 14, 2023
    Assignee: Corning Incorporated
    Inventors: James Henry Faler, Dale Robert Powers, Fei Xia, Chunfeng Zhou
  • Publication number: 20230001401
    Abstract: A particulate filter having a porous ceramic honeycomb structure with a first end, a second end, and a plurality of walls having wall surfaces defining a plurality of inner channels. Filtration material deposits are disposed on one or more of the wall surfaces of the honeycomb body. The highly porous deposits provide durable high clean filtration efficiency with small impact on pressure drop through the filter.
    Type: Application
    Filed: August 24, 2022
    Publication date: January 5, 2023
    Inventors: Douglas Munroe Beall, Thorsten Rolf Boger, Dana Craig Bookbinder, Thomas Jean Glasson, Dale Robert Powers, Pushkar Tandon, Jianguo Wang, Huiqing Wu, Xinfeng Xing
  • Patent number: 11458464
    Abstract: A particulate filter having a porous ceramic honeycomb structure with a first end, a second end, and a plurality of walls having wall surfaces defining a plurality of inner channels. Filtration material deposits are disposed on one or more of the wall surfaces of the honeycomb body. The highly porous deposits provide durable high clean filtration efficiency with small impact on pressure drop through the filter.
    Type: Grant
    Filed: September 7, 2021
    Date of Patent: October 4, 2022
    Assignee: Corning Incorporated
    Inventors: Douglas Munroe Beall, Thorsten Rolf Boger, Dana Craig Bookbinder, Thomas Jean Glasson, Dale Robert Powers, Pushkar Tandon, Jianguo Wang, Huiqing Wu, Xinfeng Xing
  • Publication number: 20220119298
    Abstract: A method of producing soot, including: combusting a first fuel stream and a first oxidizer at a burner face; combusting a second fuel stream and a second oxidizer at the burner face, wherein the second fuel stream and the second oxidizer are premixed in advance of the burner face and a second equivalence ratio of the second fuel stream and the second oxidizer is less than about 1; and combusting a silicon-containing fuel into a plurality of soot particles, wherein the second fuel stream and the second oxidizer are combusted between the first fuel stream and the silicon-containing fuel. Applying this method of producing soot to deposit a preform suitable for the manufacture of optical fibers.
    Type: Application
    Filed: December 30, 2021
    Publication date: April 21, 2022
    Inventors: Manoj Agrawal, Dale Robert Powers, Fei Xia
  • Publication number: 20220098084
    Abstract: A method of forming an optical fiber preform includes flowing a precursor stream through a burner toward a substrate, the precursor stream comprising a glass precursor gas and a carrier gas, the carrier gas having a kinematic viscosity at 2000 K of greater than 5 cm2/sec and a ratio of heat capacity to universal gas constant (Cp/R) 2000 K of less than 4; flowing an inflammable gas through the burner; pyrogenically forming glass particles from the glass precursor gas, the pyrogenically forming comprising combusting the inflammable gas; flowing a shield gas through the burner, the shield gas flowing between the precursor stream and the inflammable gas, the shield gas having a kinematic viscosity at 2000 K of greater than 5 cm2/sec and a ratio of heat capacity to universal gas constant (Cp/R) at 2000 K of less than 4; and depositing the glass particles onto the substrate.
    Type: Application
    Filed: May 18, 2021
    Publication date: March 31, 2022
    Inventors: Dale Robert Powers, Pushkar Tandon
  • Publication number: 20220098085
    Abstract: In some embodiments, a method for processing an optical fiber includes: drawing an optical fiber through a draw furnace, conveying the optical fiber through a flame reheating device downstream from the draw furnace, wherein the flame reheating device comprises one or more burners each comprising: a body having a top surface and an opposing bottom surface, an opening within the body extending from the top surface through the body to the bottom surface, wherein the optical fiber passes through the opening, and one or more gas outlets within the body; and igniting a flammable gas provided by the one or more gas outlets to form a flame encircling the optical fiber passing through the opening, wherein the flame heats the optical fiber by at least 100 degrees Celsius at a heating rate exceeding 10,000 degrees Celsius/second.
    Type: Application
    Filed: September 30, 2021
    Publication date: March 31, 2022
    Inventors: Ravindra Kumar Akarapu, Joel Patrick Carberry, David Alan Deneka, Steven Akin Dunwoody, Kenneth Edward Hrdina, John Michael Jewell, Yuanjie Jiang, Nikolaos Pantelis Kladias, Ming-Jun Li, Barada Kanta Nayak, Dale Robert Powers, Chunfeng Zhou, Vincent Matteo Tagliamonti, Christopher Scott Thomas
  • Patent number: 11242277
    Abstract: A method of producing soot, including: combusting a first fuel stream and a first oxidizer at a burner face; combusting a second fuel stream and a second oxidizer at the burner face, wherein the second fuel stream and the second oxidizer are premixed in advance of the burner face and a second equivalence ratio of the second fuel stream and the second oxidizer is less than about 1; and combusting a silicon-containing fuel into a plurality of soot particles, wherein the second fuel stream and the second oxidizer are combusted between the first fuel stream and the silicon-containing fuel. Applying this method of producing soot to deposit a preform suitable for the manufacture of optical fibers.
    Type: Grant
    Filed: August 15, 2019
    Date of Patent: February 8, 2022
    Assignee: Corning Incorporated
    Inventors: Manoj Agrawal, Dale Robert Powers, Fei Xia
  • Publication number: 20210401022
    Abstract: The present disclosure relates to a non-soy, legume, protein material that is at least 50% dry weight non-soy, legume, protein; has a pH of about 4-8; and has a Nitrogen Solubility Index of greater than 40%. Preferably, the non-soy, legume, protein material of this disclosure additionally has a Protein Dispersability Index of greater than about 70%. Preferably, the non-soy, legume, protein material comprises at least 20% dry weight pea protein, meets USDA Organic Certification requirements, and is not genetically modified.
    Type: Application
    Filed: June 24, 2020
    Publication date: December 30, 2021
    Inventors: KUSHAL NARAYAN CHANDAK, ALEXANDER EDWARD KING, MARK ROBERT POWERS
  • Publication number: 20210394168
    Abstract: A particulate filter having a porous ceramic honeycomb structure with a first end, a second end, and a plurality of walls having wall surfaces defining a plurality of inner channels. Filtration material deposits are disposed on one or more of the wall surfaces of the honeycomb body. The highly porous deposits provide durable high clean filtration efficiency with small impact on pressure drop through the filter.
    Type: Application
    Filed: September 7, 2021
    Publication date: December 23, 2021
    Inventors: Douglas Munroe Beall, Thorsten Rolf Boger, Dana Craig Bookbinder, Thomas Jean Glasson, Dale Robert Powers, Pushkar Tandon, Jianguo Wang, Huiqing Wu, Xinfeng Xing