Patents by Inventor Philip Bradley Hotte

Philip Bradley Hotte 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: 20240058088
    Abstract: Systems and methods are provided that automatically determine whether a prospective surgical trajectory will collide with a patient's skull using a 3D representation of the patient's cranial region (including the patient's scalp, skull, and brain) adapted from imaging data of the patient's cranial region (e.g., MRI data or CT data). Taking a particular patient's varied skull thickness into account, examples can determine bone collision during a trajectory planning stage before or after a stereotactic frame is mounted to the patient. Accordingly, examples may preemptively alert a clinician to a potential bone collision before the prospective surgical trajectory is underway/has been executed, thereby reducing the risk of bone collision during the surgical procedure.
    Type: Application
    Filed: August 19, 2022
    Publication date: February 22, 2024
    Inventors: Lyubomir Zagorchev, Damon Hyde, Chen Li, Philip Bradley Hotte, Timothy Neil Orr
  • Patent number: 11317982
    Abstract: Circuits and computer program products onboard and/or adapted to communicate with an scanner that electronically recognize predefined physical characteristics of the at least one tool to automatically segment image data provided by the scanner whereby the at least one tool constitutes a point of interface with the system. The circuits and computer program products are configured to provide a User Interface that defines workflow progression for an image guided surgical procedure and allows a user to select steps in the workflow, and generate multi-dimensional visualizations using the predefined data of the at least one tool and data from images of the patient in substantially real time during the surgical procedure.
    Type: Grant
    Filed: June 27, 2019
    Date of Patent: May 3, 2022
    Assignee: ClearPoint Neuro, Inc.
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler
  • Publication number: 20210343397
    Abstract: Surgical planning systems that automatically identify one or a plurality of different candidate trajectories to a defined intrabody treatment region. The systems can rank the identified candidate trajectories in an order of hierarchy based on defined parameters such as distance from a critical no-go location and whether a single or multiple different candidate trajectories are needed to provide coverage of the defined intrabody treatment region. The surgical planning systems are also configured to provide a User Interface that defines a workflow for an image-guided surgical procedure and allows a user to select one or more of the identified candidate trajectories steps in the workflow.
    Type: Application
    Filed: April 16, 2021
    Publication date: November 4, 2021
    Inventors: Timothy Neil Orr, Philip Bradley Hotte, Christian Richard Osswald
  • Publication number: 20190336232
    Abstract: Circuits and computer program products onboard and/or adapted to communicate with an scanner that electronically recognize predefined physical characteristics of the at least one tool to automatically segment image data provided by the scanner whereby the at least one tool constitutes a point of interface with the system. The circuits and computer program products are configured to provide a User Interface that defines workflow progression for an image guided surgical procedure and allows a user to select steps in the workflow, and generate multi-dimensional visualizations using the predefined data of the at least one tool and data from images of the patient in substantially real time during the surgical procedure.
    Type: Application
    Filed: June 27, 2019
    Publication date: November 7, 2019
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler
  • Patent number: 10376327
    Abstract: Circuits and computer program products onboard and/or adapted to communicate with an scanner that electronically recognize predefined physical characteristics of the at least one tool to automatically segment image data provided by the scanner whereby the at least one tool constitutes a point of interface with the system. The circuits and computer program products are configured to provide a User Interface that defines workflow progression for an image guided surgical procedure and allows a user to select steps in the workflow, and generate multi-dimensional visualizations using the predefined data of the at least one tool and data from images of the patient in substantially real time during the surgical procedure.
    Type: Grant
    Filed: March 11, 2016
    Date of Patent: August 13, 2019
    Assignee: MRI Interventions, Inc.
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler
  • Publication number: 20160256069
    Abstract: Circuits and computer program products onboard and/or adapted to communicate with an scanner that electronically recognize predefined physical characteristics of the at least one tool to automatically segment image data provided by the scanner whereby the at least one tool constitutes a point of interface with the system. The circuits and computer program products are configured to provide a User Interface that defines workflow progression for an image guided surgical procedure and allows a user to select steps in the workflow, and generate multi-dimensional visualizations using the predefined data of the at least one tool and data from images of the patient in substantially real time during the surgical procedure.
    Type: Application
    Filed: March 11, 2016
    Publication date: September 8, 2016
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler
  • Patent number: 9314305
    Abstract: MRI-Surgical systems include: (a) at least one MRI-compatible surgical tool; (b) a circuit adapted to communicate with an MRI scanner; and (c) at least one display in communication with the circuit. The circuit electronically recognizes predefined physical characteristics of the at least one tool to automatically segment MR image data provided by the MRI scanner whereby the at least one tool constitutes a point of interface with the system. The circuit is configured to provide a User Interface that defines workflow progression for an MRI-guided surgical procedure and allows a user to select steps in the workflow, and wherein the circuit is configured to generate multi-dimensional visualizations using the predefined data of the at least one tool and data from MRI images of the patient in substantially real time during the surgical procedure.
    Type: Grant
    Filed: September 11, 2012
    Date of Patent: April 19, 2016
    Assignee: MRI Interventions, Inc.
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler
  • Publication number: 20130006095
    Abstract: MRI-Surgical systems include: (a) at least one MRI-compatible surgical tool; (b) a circuit adapted to communicate with an MRI scanner; and (c) at least one display in communication with the circuit. The circuit electronically recognizes predefined physical characteristics of the at least one tool to automatically segment MR image data provided by the MRI scanner whereby the at least one tool constitutes a point of interface with the system. The circuit is configured to provide a User Interface that defines workflow progression for an MRI-guided surgical procedure and allows a user to select steps in the workflow, and wherein the circuit is configured to generate multi-dimensional visualizations using the predefined data of the at least one tool and data from MRI images of the patient in substantially real time during the surgical procedure.
    Type: Application
    Filed: September 11, 2012
    Publication date: January 3, 2013
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler
  • Patent number: 8315689
    Abstract: MRI-Surgical systems include: (a) at least one MRI-compatible surgical tool; (b) a circuit adapted to communicate with an MRI scanner; and (c) at least one display in communication with the circuit. The circuit electronically recognizes predefined physical characteristics of the at least one tool to automatically segment MR image data provided by the MRI scanner whereby the at least one tool constitutes a point of interface with the system. The circuit is configured to provide a User Interface that defines workflow progression for an MRI-guided surgical procedure and allows a user to select steps in the workflow, and wherein the circuit is configured to generate multi-dimensional visualizations using the predefined data of the at least one tool and data from MRI images of the patient in substantially real time during the surgical procedure.
    Type: Grant
    Filed: September 24, 2008
    Date of Patent: November 20, 2012
    Assignee: MRI Interventions, Inc.
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler
  • Publication number: 20090171184
    Abstract: MRI-Surgical systems include: (a) at least one MRI-compatible surgical tool; (b) a circuit adapted to communicate with an MRI scanner; and (c) at least one display in communication with the circuit. The circuit electronically recognizes predefined physical characteristics of the at least one tool to automatically segment MR image data provided by the MRI scanner whereby the at least one tool constitutes a point of interface with the system. The circuit is configured to provide a User Interface that defines workflow progression for an MRI-guided surgical procedure and allows a user to select steps in the workflow, and wherein the circuit is configured to generate multi-dimensional visualizations using the predefined data of the at least one tool and data from MRI images of the patient in substantially real time during the surgical procedure.
    Type: Application
    Filed: September 24, 2008
    Publication date: July 2, 2009
    Inventors: Kimble Jenkins, Peter Piferi, Philip Bradley Hotte, Pavel Farberov, Timothy Neil Orr, Paul Arthur Geiger, David John Sayler