Patents by Inventor Alyssa Boasso

Alyssa Boasso 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: 20230022546
    Abstract: Systems and methods of the present disclosure are directed to neural stimulation via non-invasive sensory stimuli. The non-invasive sensory stimuli can reduce neuroinflammation, improving synaptic plasticity and stimulating neural networking, and improving microglial-mediated clearance of cerebral insults, which would otherwise contribute to the progression of brain atrophy, by inducing synchronized gamma oscillations in at least one region of a brain in a subject. Stimulations can adjust, control or otherwise manage the frequency of the neural oscillations to provide beneficial effects to one or more cognitive states or cognitive functions of the brain, while mitigating or preventing adverse consequences on a cognitive state or cognitive function that stem from progression of brain atrophy.
    Type: Application
    Filed: March 8, 2022
    Publication date: January 26, 2023
    Inventors: Zach Malchano, Evan Hempel, Colleen Cotter, Aylin Cimenser, Alyssa Boasso, Holly Mrozak, Alex Konisky, Nathan Strozewski, Taylor Travers, Martin Williams, Kim Kwan, Brent Vaughan, Tom Megerian, Mihály Hagós
  • Patent number: 11517743
    Abstract: Presented herein are systems, methods, and devices that provide for stimulation of nerves and/or targets such as mechanoreceptors, tissue regions, mechanoresponsive proteins, and vascular targets through generation and delivery of mechanical vibrational waves. In certain embodiments, the approaches described herein utilize a stimulation device (e.g., a wearable device) for generation and delivery of the mechanical vibrational waves. As described herein, the delivered vibrational waves can be tailored based on particular targets (e.g., nerves, mechanoreceptors, vascular targets, tissue regions) to stimulate and/or to elicited particular desired responses in a subject.
    Type: Grant
    Filed: September 29, 2020
    Date of Patent: December 6, 2022
    Assignee: Apex Neuro Holdings, Inc.
    Inventors: Zen Chu, Miles Thibault, Kelsey Fafara, Francois Kress, Rohan Ajay Verma, Alyssa Boasso, Sean Hagberg, Julia Brock
  • Patent number: 11504521
    Abstract: Presented herein are systems, methods, and devices that provide for stimulation of nerves and/or targets such as mechanoreceptors, tissue regions, mechanoresponsive proteins, and vascular targets through generation and delivery of mechanical vibrational waves. In certain embodiments, the approaches described herein utilize a stimulation device (e.g., a wearable device) for generation and delivery of the mechanical vibrational waves. As described herein, the delivered vibrational waves can be tailored based on particular targets (e.g., nerves, mechanoreceptors, vascular targets, tissue regions) to stimulate and/or to elicited particular desired responses in a subject.
    Type: Grant
    Filed: January 7, 2019
    Date of Patent: November 22, 2022
    Assignee: Apex Neuro Holdings, Inc.
    Inventors: Zen Chu, Miles Thibault, Kelsey Fafara, Francois Kress, Rohan Ajay Verma, Alyssa Boasso, Sean Hagberg, Julia Brock
  • Publication number: 20210060330
    Abstract: Presented herein are systems, methods, and devices that provide for stimulation of nerves and/or targets such as mechanoreceptors, tissue regions, mechanoresponsive proteins, and vascular targets through generation and delivery of mechanical vibrational waves. In certain embodiments, the approaches described herein utilize a stimulation device (e.g., a wearable device) for generation and delivery of the mechanical vibrational waves. As described herein, the delivered vibrational waves can be tailored based on particular targets (e.g., nerves, mechanoreceptors, vascular targets, tissue regions) to stimulate and/or to elicited particular desired responses in a subject.
    Type: Application
    Filed: September 29, 2020
    Publication date: March 4, 2021
    Inventors: Zen Chu, Miles Thibault, Kelsey Fafara, Francois Kress, Rohan Ajay Verma, Alyssa Boasso, Sean Hagberg, Julia Brock
  • Patent number: 10786666
    Abstract: Presented herein are systems, methods, and devices that provide for stimulation of nerves and/or targets such as mechanoreceptors, tissue regions, mechanoresponsive proteins, and vascular targets through generation and delivery of mechanical vibrational waves. In certain embodiments, the approaches described herein utilize a stimulation device (e.g., a wearable device) for generation and delivery of the mechanical vibrational waves. As described herein, the delivered vibrational waves can be tailored based on particular targets (e.g., nerves, mechanoreceptors, vascular targets, tissue regions) to stimulate and/or to elicited particular desired responses in a subject.
    Type: Grant
    Filed: October 18, 2019
    Date of Patent: September 29, 2020
    Assignee: Apex Neuro Holdings Inc.
    Inventors: Zen Chu, Miles Thibault, Kelsey Fafara, Francois Kress, Rohan Ajay Verma, Alyssa Boasso, Sean Hagberg, Julia Brock
  • Publication number: 20200054873
    Abstract: Presented herein are systems, methods, and devices that provide for stimulation of nerves and/or targets such as mechanoreceptors, tissue regions, mechanoresponsive proteins, and vascular targets through generation and delivery of mechanical vibrational waves. In certain embodiments, the approaches described herein utilize a stimulation device (e.g., a wearable device) for generation and delivery of the mechanical vibrational waves. As described herein, the delivered vibrational waves can be tailored based on particular targets (e.g., nerves, mechanoreceptors, vascular targets, tissue regions) to stimulate and/or to elicited particular desired responses in a subject.
    Type: Application
    Filed: October 18, 2019
    Publication date: February 20, 2020
    Inventors: Zen Chu, Miles Thibault, Kelsey Fafara, Francois Kress, Rohan Ajay Verma, Alyssa Boasso, Sean Hagberg, Julia Brock
  • Publication number: 20190232047
    Abstract: Presented herein are systems, methods, and devices that provide for stimulation of nerves and/or targets such as mechanoreceptors, tissue regions, mechanoresponsive proteins, and vascular targets through generation and delivery of mechanical vibrational waves. In certain embodiments, the approaches described herein utilize a stimulation device (e.g., a wearable device) for generation and delivery of the mechanical vibrational waves. As described herein, the delivered vibrational waves can be tailored based on particular targets (e.g., nerves, mechanoreceptors, vascular targets, tissue regions) to stimulate and/or to elicited particular desired responses in a subject. As described herein, in certain embodiments, the delivery of mechanical stimulation to a subject provides for treatment of anxiety.
    Type: Application
    Filed: January 7, 2019
    Publication date: August 1, 2019
    Inventors: Zen Chu, Miles Thibault, Kelsey Fafara, Francois Kress, Rohan Ajay Verma, Alyssa Boasso, Sean Hagberg
  • Publication number: 20190232046
    Abstract: Presented herein are systems, methods, and devices that provide for stimulation of nerves and/or targets such as mechanoreceptors, tissue regions, mechanoresponsive proteins, and vascular targets through generation and delivery of mechanical vibrational waves. In certain embodiments, the approaches described herein utilize a stimulation device (e.g., a wearable device) for generation and delivery of the mechanical vibrational waves. As described herein, the delivered vibrational waves can be tailored based on particular targets (e.g., nerves, mechanoreceptors, vascular targets, tissue regions) to stimulate and/or to elicited particular desired responses in a subject.
    Type: Application
    Filed: January 7, 2019
    Publication date: August 1, 2019
    Inventors: Zen Chu, Miles Thibault, Kelsey Fafara, Francois Kress, Rohan Ajay Verma, Alyssa Boasso, Sean Hagberg