Patents by Inventor Viktor VINCZE

Viktor VINCZE 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: 12616840
    Abstract: Embodiments described herein relate to systems, devices, and methods for monitoring brain activity and delivering electrical brain stimulation to a patient. In some embodiments, a system can deliver responsive electrical stimulation in a closed-loop manner and can offer real-time or near real-time monitoring of induced neurophysiological effects. After detecting a targeted brain pattern (i.e., an epileptic seizure), the system may deliver high-intensity ultra-short electrical stimulation impulses non-invasively or minimal-invasively to diminish or stop the neural oscillations underlying the epileptic seizure. The stimuli are delivered in time and space, relative to the emerging seizure rhythm patterns, such that they diminish or terminate the seizure. The system may include an implantable device including one or more electrodes electrically coupled to one or more processors.
    Type: Grant
    Filed: December 13, 2024
    Date of Patent: May 5, 2026
    Assignee: Blackrock Microsystems, Inc.
    Inventors: Antal Berényi, Tamás Kurics, Miklós Bence, Máté Németh, Tamás Laszlovszky, Mihály Nádasdi, Péter Ráfi, Viktor Vincze, Szabolcs Hőgye
  • Publication number: 20250195894
    Abstract: Embodiments described herein relate to systems, devices, and methods for monitoring brain activity and delivering electrical brain stimulation to a patient. In some embodiments, a system can deliver responsive electrical stimulation in a closed-loop manner and can offer real-time or near real-time monitoring of induced neurophysiological effects. After detecting a targeted brain pattern (i.e., an epileptic seizure), the system may deliver high-intensity ultra-short electrical stimulation impulses non-invasively or minimal-invasively to diminish or stop the neural oscillations underlying the epileptic seizure. The stimuli are delivered in time and space, relative to the emerging seizure rhythm patterns, such that they diminish or terminate the seizure. The system may include an implantable device including one or more electrodes electrically coupled to one or more processors.
    Type: Application
    Filed: December 13, 2024
    Publication date: June 19, 2025
    Inventors: Antal BERÉNYI, Tamás KURICS, Miklós BENCE, Máté NÉMETH, Tamás LASZLOVSZKY, Mihály NÁDASDI, Péter RÁFI, Viktor VINCZE, Szabolcs HÖGYE