Patents by Inventor Michael Willink
Michael Willink 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).
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Publication number: 20240415539Abstract: A medical device for forming a channel into a bone includes an introducer cannula having a hypotube disposed in a longitudinal direction, the distal hypotube having an introducer lumen disposed therethrough. The medical device also includes a curved cannula having an elongated tube, the elongated tube having a curved cannula lumen disposed therethrough, the elongated tube having a proximal straight tube portion and a distal curved tube portion, the elongated tube configured to be received into the introducer lumen of the introducer cannula; and a stylet having an elongated shaft, the elongated shaft having a proximal straight portion and a distal curved portion, the elongated shaft configured to be received into the curved cannula lumen. The distal curved portion of the stylet is relieved from a generally cylindrical shape of the stylet.Type: ApplicationFiled: June 12, 2024Publication date: December 19, 2024Inventors: Brian W. DONOVAN, Benjamin David PARKER, Michael WILLINK, Neil Shigeo SASAKI, Alexander PRUITT
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Patent number: 11202655Abstract: Described herein are various implementations of systems and methods for accessing and modulating tissue (for example, systems and methods for accessing and ablating nerves or other tissue within or surrounding a vertebral body to treat chronic lower back pain). Assessment of vertebral endplate degeneration or defects (e.g., pre-Modic changes) to facilitate identification of treatment sites and protocols are also provided in several embodiments. Several embodiments comprise the use of biomarkers to confirm or otherwise assess ablation, pain relief, efficacy of treatment, etc. Some embodiments include robotic elements for, as an example, facilitating robotically controlled access, navigation, imaging, and/or treatment.Type: GrantFiled: May 17, 2021Date of Patent: December 21, 2021Assignee: Relievant Medsystems, Inc.Inventors: Brian W. Donovan, Alexander Pruitt, Michael Willink
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Patent number: 11123103Abstract: Described herein are various implementations of systems and methods for accessing and modulating tissue (for example, systems and methods for accessing and ablating nerves or other tissue within or surrounding a vertebral body to treat chronic lower back pain). Assessment of vertebral endplate degeneration or defects (e.g., pre-Modic changes) to facilitate identification of treatment sites and protocols are also provided in several embodiments. Several embodiments comprise the use of biomarkers to confirm or otherwise assess ablation, pain relief, efficacy of treatment, etc. Some embodiments include robotic elements for, as an example, facilitating robotically controlled access, navigation, imaging, and/or treatment.Type: GrantFiled: December 30, 2020Date of Patent: September 21, 2021Assignee: Relievant Medsystems, Inc.Inventors: Brian W. Donovan, Alexander Pruitt, Michael Willink
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Publication number: 20210267632Abstract: Described herein are various implementations of systems and methods for accessing and modulating tissue (for example, systems and methods for accessing and ablating nerves or other tissue within or surrounding a vertebral body to treat chronic lower back pain). Assessment of vertebral endplate degeneration or defects (e.g., pre-Modic changes) to facilitate identification of treatment sites and protocols are also provided in several embodiments. Several embodiments comprise the use of biomarkers to confirm or otherwise assess ablation, pain relief, efficacy of treatment, etc. Some embodiments include robotic elements for, as an example, facilitating robotically controlled access, navigation, imaging, and/or treatment.Type: ApplicationFiled: May 17, 2021Publication date: September 2, 2021Inventors: Brian W. Donovan, Alexander Pruitt, Michael Willink
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Patent number: 11007010Abstract: Described herein are various implementations of systems and methods for accessing and modulating tissue (for example, systems and methods for accessing and ablating nerves or other tissue within or surrounding a vertebral body to treat chronic lower back pain). Assessment of vertebral endplate degeneration or defects (e.g., pre-Modic changes) to facilitate identification of treatment sites and protocols are also provided in several embodiments. Several embodiments comprise the use of biomarkers to confirm or otherwise assess ablation, pain relief, efficacy of treatment, etc. Some embodiments include robotic elements for, as an example, facilitating robotically controlled access, navigation, imaging, and/or treatment.Type: GrantFiled: December 30, 2020Date of Patent: May 18, 2021Assignee: Relevant Medsysterns, Inc.Inventors: Brian W. Donovan, Alexander Pruitt, Michael Willink
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Publication number: 20110251592Abstract: Devices and methods are directed to improving the gaseous exchange in a lung of an individual having, for instance, chronic obstructive pulmonary disease. More particularly, conduits may be deployed in the lung to maintain collateral openings (or channels) surgically created through airway walls. This tends to facilitate both the exchange of oxygen ultimately into the blood and decompress hyper-inflated lungs. The conduit includes a radially expandable center section having a first end, a second end, and a passageway extending from the first end to the second end. A control segment may be associated with the conduit to limit the degree of radial expansion. The conduit further includes a plurality of deflectable members extending from the ends of the center section. A tissue barrier may coaxially surround the conduit such that tissue ingrowth is prevented.Type: ApplicationFiled: November 4, 2010Publication date: October 13, 2011Applicant: BRONCUS TECHNOLOGIES, INC.Inventors: Michael BIGGS, Thomas KEAST, Bryan LOOMAS, Don TANAKA, David THOMPSON, Gary KAPLAN, Kelly SHRINER, Halil KARABEY, Russ REDMOND, Claude VIDAL, Mike COLLINSON, Cary COLE, Michael WILLINK
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Publication number: 20070073282Abstract: Devices and methods for thermal ablation of hypertrophied tissue, such as turbinates, with a resistive heating element adapted for insertion into the tissue. The device uses DC current to heat the resistive heating element, and is operated at relatively low voltage levels and low current levels. The device is easy to operate, and may be applied for predetermined time periods without feedback control, using a timing circuit or computerized control system. The resistive heating element is covered with a thin, non-stick, coating that is thermally conductive, such as Xylan®, Teflon® or other fluoropolymer or suitable material.Type: ApplicationFiled: September 26, 2005Publication date: March 29, 2007Inventors: Thomas McGaffigan, Peter Carlotto, Jan Echeverry, Huy Le, Robert Schmidlen, Michael Willink
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Publication number: 20050192526Abstract: Devices and methods are directed to improving the gaseous exchange in a lung of an individual having, for instance, chronic obstructive pulmonary disease. More particularly, conduits may be deployed in the lung to maintain collateral openings (or channels) surgically created through airway walls. This tends to facilitate both the exchange of oxygen ultimately into the blood and decompress hyper-inflated lungs.Type: ApplicationFiled: December 7, 2004Publication date: September 1, 2005Inventors: Michael Biggs, Thomas Keast, Bryan Loomas, Don Tanaka, David Thompson, Gary Kaplan, Kelly Shriner, Halil Karabey, Russ Redmond, Claude Vida, Mike Collinson, Cary Cole, Michael Willink
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Publication number: 20050137712Abstract: Devices and methods are directed to improving the gaseous exchange in a lung of an individual having, for instance, chronic obstructive pulmonary disease. More particularly, conduits may be deployed in the lung to maintain collateral openings (or channels) surgically created through airway walls. This tends to facilitate both the exchange of oxygen ultimately into the blood and decompress hyper-inflated lungs.Type: ApplicationFiled: October 22, 2004Publication date: June 23, 2005Inventors: Michael Biggs, Thomas Keast, Bryan Loomas, Don Tanaka, David Thompson, Gary Kaplan, Kelly Shriner, Halil Karabey, Russ Redmond, Claude Vidal, Mike Collinson, Cary Cole, Michael Willink
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Publication number: 20050137518Abstract: Devices and methods are directed to improving the gaseous exchange in a lung of an individual having, for instance, chronic obstructive pulmonary disease. More particularly, conduits may be deployed in the lung to maintain collateral openings (or channels) surgically created through airway walls. This tends to facilitate both the exchange of oxygen ultimately into the blood and decompress hyper-inflated lungs. The conduit includes a radially expandable center section having a first end, a second end, and a passageway extending from the first end to the second end. A control segment may be associated with the conduit to limit the degree of radial expansion. The conduit further includes a plurality of deflectable members extending from the ends of the center section. A tissue barrier may coaxially surround the conduit such that tissue ingrowth is prevented.Type: ApplicationFiled: September 28, 2004Publication date: June 23, 2005Inventors: Michael Biggs, Thomas Keast, Bryan Loomas, Don Tanaka, David Thompson, Gary Kaplan, Kelly Shriner, Halil Karabey, Russ Redmond, Claude Vidal, Mike Collinson, Cary Cole, Michael Willink