Patents by Inventor Robert Beetel

Robert Beetel 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: 20250160942
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Application
    Filed: January 17, 2025
    Publication date: May 22, 2025
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria G. Aboytes
  • Patent number: 12256984
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Grant
    Filed: September 10, 2021
    Date of Patent: March 25, 2025
    Assignee: Medtronic Ireland Manufacturing Unlimited Company
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria Aboytes
  • Publication number: 20220079666
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Application
    Filed: September 10, 2021
    Publication date: March 17, 2022
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria Aboytes
  • Patent number: 11116572
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Grant
    Filed: March 23, 2018
    Date of Patent: September 14, 2021
    Assignee: MEDTRONIC ARDIAN LUXEMBOURG S.A.R.L.
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria Aboytes
  • Patent number: 10076382
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Grant
    Filed: November 4, 2015
    Date of Patent: September 18, 2018
    Assignee: Medtronic Ardian Luxembourg S.a.r.l.
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria Aboytes
  • Publication number: 20180228539
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Application
    Filed: March 23, 2018
    Publication date: August 16, 2018
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria Aboytes
  • Publication number: 20160113713
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Application
    Filed: November 4, 2015
    Publication date: April 28, 2016
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria Aboytes
  • Patent number: 9066720
    Abstract: The present disclosure relates to devices, systems and methods for evaluating the success of a treatment applied to tissue in a patient, such as a radio frequency ablative treatment used to neuromodulate nerves associated with the renal artery. A system monitors parameters or values generated during the course of a treatment. Feedback provided to an operator is based on the monitored values and relates to an assessment of the likelihood that a completed treatment was technically successful. In other embodiments, parameters or values generated during the course of an incomplete treatment (such as due to high temperature or high impedance conditions) may be evaluated to provide additional instructions or feedback to an operator.
    Type: Grant
    Filed: October 25, 2011
    Date of Patent: June 30, 2015
    Assignee: Medtronic Ardian Luxembourg S.a.r.l.
    Inventors: Sowmya Ballakur, Robert Beetel, Paul Friedrichs, Andrew Wu, Denise Zarins, David Herzfeld, Mark S. Leung
  • Patent number: 8967444
    Abstract: According to an aspect of the present disclosure, a surgical instrument for operating on tissue is provided. The surgical instrument includes an end effector including a first tissue engaging member and a second tissue engaging member in juxtaposed relation to the first tissue engaging member; a gap determination element operatively associated with each of the first tissue engaging member and the second tissue engaging member for measuring a gap distance between the first tissue engaging member and the second tissue engaging member; and a tissue contact determining element operatively associated with a respective tissue contacting surface of at least one of the first tissue engaging member and the second tissue engaging member. The present disclosure also relates to methods of using the surgical instrument.
    Type: Grant
    Filed: August 8, 2014
    Date of Patent: March 3, 2015
    Assignee: Covidien LP
    Inventor: Robert Beetel
  • Patent number: 8956352
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Grant
    Filed: October 25, 2011
    Date of Patent: February 17, 2015
    Assignee: Medtronic Ardian Luxembourg S.a.r.l.
    Inventors: Kevin Mauch, Mario Alvarado, Robert Beetel, William Chang, Justin Goshgarian, Leonila Rivera, Sukyoung Shin, Michele Silver, Sina Som, Andrew Wu, Denise Zarins, Juanita Sanchez-Cole, Maria G. Aboytes
  • Publication number: 20140346214
    Abstract: According to an aspect of the present disclosure, a surgical instrument for operating on tissue is provided. The surgical instrument includes an end effector including a first tissue engaging member and a second tissue engaging member in juxtaposed relation to the first tissue engaging member; a gap determination element operatively associated with each of the first tissue engaging member and the second tissue engaging member for measuring a gap distance between the first tissue engaging member and the second tissue engaging member; and a tissue contact determining element operatively associated with a respective tissue contacting surface of at least one of the first tissue engaging member and the second tissue engaging member. The present disclosure also relates to methods of using the surgical instrument.
    Type: Application
    Filed: August 8, 2014
    Publication date: November 27, 2014
    Inventor: Robert Beetel
  • Patent number: 8386010
    Abstract: A tissue monitoring system includes an introducer having an inflatable section and a plurality of electrodes disposed thereon. The electrodes are alternatively connected to an electrode contact system which includes at least one signal line and at least one measurement line for taking readings about a circumferential segment of tissue encompassed by the electrodes.
    Type: Grant
    Filed: October 1, 2009
    Date of Patent: February 26, 2013
    Assignee: Covidien LP
    Inventors: Robert Beetel, Frank Viola
  • Publication number: 20120143293
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Application
    Filed: October 25, 2011
    Publication date: June 7, 2012
    Inventors: Kevin Mauch, Mario Alvarado, Robert Beetel, William Chang, Justin Goshgarian, Leonila Rivera, Sukyoung Shin, Michele Silver, Sina Som, Andrew Wu, Denise Zarins, Juanita Sanchez-Cole, Maria G. Aboytes
  • Publication number: 20120116382
    Abstract: Catheter apparatuses, systems, and methods for achieving renal neuromodulation by intravascular access are disclosed herein. One aspect of the present technology, for example, is directed to a treatment device having a multi-electrode array configured to be delivered to a renal blood vessel. The array is selectively transformable between a delivery or low-profile state (e.g., a generally straight shape) and a deployed state (e.g., a radially expanded, generally helical shape). The multi-electrode array is sized and shaped so that the electrodes or energy delivery elements contact an interior wall of the renal blood vessel when the array is in the deployed (e.g., helical) state. The electrodes or energy delivery elements are configured for direct and/or indirect application of thermal and/or electrical energy to heat or otherwise electrically modulate neural fibers that contribute to renal function or of vascular structures that feed or perfuse the neural fibers.
    Type: Application
    Filed: October 25, 2011
    Publication date: May 10, 2012
    Applicant: Medtronic Ardian Luxembourg S.a.r.l.
    Inventors: Vincent Ku, Robert Beetel, Andrew Wu, Denise Zarins, Maria G. Aboytes
  • Publication number: 20120101538
    Abstract: The present disclosure relates to devices, systems and methods for evaluating the success of a treatment applied to tissue in a patient, such as a radio frequency ablative treatment used to neuromodulate nerves associated with the renal artery. A system monitors parameters or values generated during the course of a treatment. Feedback provided to an operator is based on the monitored values and relates to an assessment of the likelihood that a completed treatment was technically successful. In other embodiments, parameters or values generated during the course of an incomplete treatment (such as due to high temperature or high impedance conditions) may be evaluated to provide additional instructions or feedback to an operator.
    Type: Application
    Filed: October 25, 2011
    Publication date: April 26, 2012
    Applicant: Medtronic Ardian Luxembourg S.a.r.l.
    Inventors: Sowmya Ballakur, Robert Beetel, Paul Friedrichs, David Herzfeld, Andrew Wu, Denise Zarins, Mark S. Leung
  • Publication number: 20100137738
    Abstract: A tissue monitoring system includes an introducer having an inflatable section and a plurality of electrodes disposed thereon. The electrodes are alternatively connected to an electrode contact system which includes at least one signal line and at least one measurement line for taking readings about a circumferential segment of tissue encompassed by the electrodes.
    Type: Application
    Filed: October 1, 2009
    Publication date: June 3, 2010
    Inventors: Robert Beetel, Frank Viola
  • Publication number: 20070012728
    Abstract: A media-dispensing apparatus for testing body fluids and a method of using the same are disclosed. The apparatus includes a housing having a lower portion and an upper portion, and an elongated tubular member having a distal opening adjacent a distal end thereof. The elongated tubular member includes a first lumen within the elongated tubular member extending from the lower portion of the housing to the distal opening and includes a second lumen within the elongated tubular member extending from the upper portion of the housing to the distal opening. A media strip is dispensable from the lower portion of the housing, through the first lumen, out the distal opening of the elongated tubular member, through the second lumen and into the upper portion of the housing.
    Type: Application
    Filed: March 24, 2006
    Publication date: January 18, 2007
    Inventors: Frank Viola, Michael Soltz, Robert Beetel, Katherine Jordan, Alicia Farrell, Emily Gumkowski
  • Publication number: 20060282084
    Abstract: A medical fastener for securing tissue and creating hemostatis thereon is disclosed. The fastener includes a shaft having a proximal and distal ends and a head disposed at a proximal end and a tip disposed at a distal end. The tip is configured to penetrate the tissue and to form a mushroomed tip or a modified B-formation tip to secure the fastener to the tissue.
    Type: Application
    Filed: May 31, 2006
    Publication date: December 14, 2006
    Inventors: Ken Blier, Frank Viola, Robert Beetel, Russell Heinrich, Michael Soltz
  • Publication number: 20060273135
    Abstract: According to an aspect of the present disclosure, a surgical instrument for operating on tissue is provided. The surgical instrument includes an end effector including a first tissue engaging member and a second tissue engaging member in juxtaposed relation to the first tissue engaging member; a gap determination element operatively associated with each of the first tissue engaging member and the second tissue engaging member for measuring a gap distance between the first tissue engaging member and the second tissue engaging member; and a tissue contact determining element operatively associated with a respective tissue contacting surface of at least one of the first tissue engaging member and the second tissue engaging member. The present disclosure also relates to methods of using the surgical instrument.
    Type: Application
    Filed: May 31, 2006
    Publication date: December 7, 2006
    Inventor: Robert Beetel