Patents by Inventor Alexander James Wiedmann

Alexander James Wiedmann 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: 20240139010
    Abstract: A gastric bypass device includes an occlusion device that is adapted to be deployed relative to a patient's pyloric sphincter and a liner that extends distally from the occlusion device. A tether extends from the occlusion device. A dynamic leash may be secured relative to the occlusion device and may work in conjunction with the tether to help hold the occlusion device in place.
    Type: Application
    Filed: July 18, 2023
    Publication date: May 2, 2024
    Applicants: BOSTON SCIENTIFIC SCIMED, INC., MAYO FOUNDATION FOR MEDICAL EDUCATION AND RESEARCH
    Inventors: Roger W. McGowan, Barham K. Abu Dayyeh, Alexander James Wiedmann, Daniel Lee Krautkremer, Jessica Brand
  • Publication number: 20240139011
    Abstract: A gastric bypass device includes an occlusion device that is adapted to be deployed relative to a patient's pyloric sphincter, an anastomosis anchor that is adapted to be deployed relative to an anastomosis between the patient's stomach and their small intestine, and a tether that extends through the patient's small intestine between the occlusion device and the anastomosis anchor. A dynamic leash may be secured relative to the occlusion device and may work in conjunction with the tether to help hold the occlusion device in place. The gastric bypass device may be deployed using a variety of methods including a push-pull wire method, a rail method, a garage method, a two-piece method and a comprehensive method.
    Type: Application
    Filed: July 18, 2023
    Publication date: May 2, 2024
    Applicants: Boston Scientific Scimed, Inc., Mayo Foundation for Medical Education and Research
    Inventors: Roger W. McGowan, Barham K. Abu Dayyeh, Daniel Lee Krautkremer, Jessica Brand, Alexander James Wiedmann, Andrew O'Brien
  • Publication number: 20240016641
    Abstract: A gastric bypass device includes an occlusion device that is adapted to be deployed relative to a patient's pyloric sphincter, an anastomosis anchor that is adapted to be deployed relative to an anastomosis between the patient's stomach and their small intestine, and a tether that extends through the patient's small intestine between the occlusion device and the anastomosis anchor. A dynamic leash may be secured relative to the occlusion device and may work in conjunction with the tether to help hold the occlusion device in place.
    Type: Application
    Filed: July 18, 2023
    Publication date: January 18, 2024
    Applicants: Boston Scientific Scimed, Inc., Mayo Foundation for Medical Education and Research
    Inventors: Roger W. McGowan, Jessica Brand, Daniel Lee Krautkremer, Alexander James Wiedmann, Barham K. Abu Dayyeh, Benjamin Moses Cooke, Burton Hedstrom, Leo Joseph Steiner
  • Publication number: 20240016638
    Abstract: A gastric bypass device includes an occlusion device that is adapted to be deployed relative to a patient's pyloric sphincter, an anastomosis anchor that is adapted to be deployed relative to an anastomosis between the patient's stomach and their small intestine, and a tether that extends through the patient's small intestine between the occlusion device and the anastomosis anchor. A dynamic leash may be secured relative to the occlusion device and may work in conjunction with the tether to help hold the occlusion device in place.
    Type: Application
    Filed: July 18, 2023
    Publication date: January 18, 2024
    Applicants: Boston Scientific Scimed, Inc., Mayo Foundation for Medical Education and Research
    Inventors: Roger W. McGowan, Jessica Brand, Daniel Lee Krautkremer, Alexander James Wiedmann, Barham K. Abu Dayyeh, Benjamin Moses Cooke, Burton Hedstrom, Leo Joseph Steiner
  • Publication number: 20240016639
    Abstract: A gastric bypass device includes an occlusion device that is adapted to be deployed relative to a patient's pyloric sphincter, an anastomosis anchor that is adapted to be deployed relative to an anastomosis between the patient's stomach and their small intestine, and a tether that extends through the patient's small intestine between the occlusion device and the anastomosis anchor. A dynamic leash may be secured relative to the occlusion device and may work in conjunction with the tether to help hold the occlusion device in place.
    Type: Application
    Filed: July 18, 2023
    Publication date: January 18, 2024
    Applicants: Boston Scientific Scimed, Inc., Mayo Foundation for Medical Education and Research
    Inventors: Roger W. McGowan, Jessica Brand, Daniel Lee Krautkremer, Alexander James Wiedmann, Barham K. Abu Dayyeh, Benjamin Moses Cooke, Burton Hedstrom, Leo Joseph Steiner
  • Publication number: 20240016640
    Abstract: A gastric bypass device includes an occlusion device that is adapted to be deployed relative to a patient's pyloric sphincter, an anastomosis anchor that is adapted to be deployed relative to an anastomosis between the patient's stomach and their small intestine, and a tether that extends through the patient's small intestine between the occlusion device and the anastomosis anchor. A dynamic leash may be secured relative to the occlusion device and may work in conjunction with the tether to help hold the occlusion device in place.
    Type: Application
    Filed: July 18, 2023
    Publication date: January 18, 2024
    Applicants: Boston Scientific Scimed, Inc., Mayo Foundation for Medical Education and Research
    Inventors: Roger W. McGowan, Jessica Brand, Daniel Lee Krautkremer, Alexander James Wiedmann, Barham K. Abu Dayyeh, Benjamin Moses Cooke, Burton Hedstrom, Leo Joseph Steiner