Patents by Inventor Lucas Muller

Lucas Muller 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).

  • Patent number: 11928095
    Abstract: Example embodiments relate to a system to generate and cause display of a specially configured graphical user interface to receive and present collections of images. According to certain example embodiments, an image analysis system: receives an image file from a client device; generates a hash value based on the image file; performs a comparison of the hash value with a list that comprises a collection of hash values; identifies a match to the hash value among the collection of hash values; assigns a label to the image file in response to identifying the match among the collection of image files from the list; and indexes the image file at a memory location identified by the label assigned to the image file.
    Type: Grant
    Filed: September 9, 2022
    Date of Patent: March 12, 2024
    Assignee: Palantir Technologies Inc.
    Inventors: Michael Stein, Adam Campbell, Alicia Monfre, Angela Muller, Enoch Hsiao, Lucas Ray, Matthew Brady, Michelle Brown, Paul Lisker
  • Publication number: 20230418154
    Abstract: A method for manufacturing a scintillation detector structure including the steps of forming a plurality of first structures into a surface of a substrate to form a patterned substrate, filling the plurality of first structures and covering the surface of the substrate with a polymeric material, hardening the polymeric material and first removing the hardened polymeric material from the substrate to obtain a polymeric mold with a patterned surface having a plurality of second structures, performing a surface cleaning treatment and a silanization of the patterned surface of the polymeric mold, filling the plurality of second structures and covering the patterned surface of the polymeric mold with a moldable scintillation material, polymerizing the scintillation material while exerting a pressure on the scintillation material, and second removing the polymerized scintillation material from the plurality of second structures of the polymeric mold to obtain scintillation detector active structures.
    Type: Application
    Filed: June 22, 2022
    Publication date: December 28, 2023
    Inventors: Veronica Leccese, Michele Caldara, Marcello Pagano, Arnaud Bertsch, Luca Müller, Alessandro Mapelli, Fabrizio Carbone
  • Patent number: 11701088
    Abstract: A system for instrument guidance is disclosed. The system can include an instrument guide device and a transducer system. The instrument guide device can include an instrument guide and an instrument guide bracket that includes a magnet, and the instrument guide bracket can be removably attachable to the instrument guide. The transducer system can include an ultrasound probe bracket that is removably attachable to an ultrasound probe. Further, the instrument guide device can removably attach to the ultrasound probe bracket. The ultrasound probe bracket can further include a first sensor and second sensor. The first sensor can wirelessly track a position of the magnet to determine position data of the instrument guidance system. And the second sensor can provide power or disengage power to the instrument guidance device when the instrument guide is attached or detached, respectively.
    Type: Grant
    Filed: March 12, 2020
    Date of Patent: July 18, 2023
    Assignee: Ethos Medical, Inc.
    Inventors: Lucas Muller, Cassidy Wang, Dev Mandavia
  • Publication number: 20200281563
    Abstract: A system for instrument guidance is disclosed. The system can include an instrument guide device and a transducer system. The instrument guide device can include an instrument guide and an instrument guide bracket that includes a magnet, and the instrument guide bracket can be removably attachable to the instrument guide. The transducer system can include an ultrasound probe bracket that is removably attachable to an ultrasound probe. Further, the instrument guide device can removably attach to the ultrasound probe bracket. The ultrasound probe bracket can further include a first sensor and second sensor. The first sensor can wirelessly track a position of the magnet to determine position data of the instrument guidance system. And the second sensor can provide power or disengage power to the instrument guidance device when the instrument guide is attached or detached, respectively.
    Type: Application
    Filed: March 12, 2020
    Publication date: September 10, 2020
    Inventors: Lucas Muller, Cassidy Wang, Dev Mandavia
  • Publication number: 20200281561
    Abstract: A system for instrument guidance is disclosed. The system can include an instrument guide device and a transducer system. The instrument guide device can include an instrument guide and an instrument guide bracket that includes a magnet, and the instrument guide bracket can be removably attachable to the instrument guide. The transducer system can include an ultrasound probe bracket that is removably attachable to an ultrasound probe. Further, the instrument guide device can removably attach to the ultrasound probe bracket. The ultrasound probe bracket can further include a first sensor and second sensor. The first sensor can wirelessly track a position of the magnet to determine position data of the instrument guidance system. And the second sensor can provide power or disengage power to the instrument guidance device when the instrument guide is attached or detached, respectively.
    Type: Application
    Filed: March 5, 2020
    Publication date: September 10, 2020
    Inventors: Lucas Muller, Cassidy Wang, Dev Mandavia
  • Publication number: 20190321072
    Abstract: Apparatuses and methods can be used to guide placement of needles within the body. For example, this document describes apparatuses that measure impedance and/or force as a needle is passed through tissue to inform user of which anatomical space they are in. Low-cost portable bedside electro-physical apparatuses and methods for needle guidance and confirmation of successful placement in portions of the human body such as vessels and thecal sac are described herein.
    Type: Application
    Filed: April 23, 2019
    Publication date: October 24, 2019
    Inventors: Kalpathi L. Venkatachalam, Vivek Gupta, Prasanna Vibhute, Alexander Bills, Lucas Muller, Dev Mandavia, Cassidy Wang, Marci Medford