Patents by Inventor Kevin Cornwell
Kevin Cornwell 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: 20250228569Abstract: A clip, such as an atrial clip, includes a first arm, a second arm, and a hinge rotatably coupling the first arm and the second arm. The first arm and the second arm are selectively moveable between an open configuration and a closed configuration. In the closed configuration, the first arm and the second arm engage with and clamp a piece of cardiac tissue between them. The atrial clip also includes a lock, which retains the first arm and the second arm in the closed configuration, as well as at least one porous material attached to one or both of the arms. The porous material is configured to absorb and elute a therapeutic composition to the cardiac tissue, wherein the therapeutic composition is configured to prevent and/or treat postoperative atrial fibrillation.Type: ApplicationFiled: March 22, 2023Publication date: July 17, 2025Applicant: Helios Cardio Inc.Inventors: Kevin Cornwell, Peter Jackson, Robert Saeid Farivar, Benedict Taylor, Yiannis Monovoukas
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Patent number: 12324869Abstract: A tissue graft for soft tissue repair or reconstruction comprising a sheet of a biopolymer-based matrix having a plurality of small perforations and a plurality of large perforations. The small perforations are sized to facilitate clotting and granulation tissue development within the perforations which, in turn, facilitates revascularization and cell repopulation in the patient. The large perforations are sized to reduce the occurrence of clotting and granulation tissue development within the perforations so that extravascular tissue fluids accumulating at the implant site can drain through the tissue graft. The large perforations enhance mammal tissue anchoring by permitting mammal tissue to compress into the perforations increasing mammal tissue contact area.Type: GrantFiled: April 24, 2023Date of Patent: June 10, 2025Assignee: TEI BIOSCIENCES, INC.Inventors: Kevin Cornwell, Kenneth James
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Publication number: 20250090493Abstract: Methods, compositions of matter, and devices for delivering a therapeutic composition to a heart of a subject using a biopolymer scaffold material are described. In some embodiments, the biopolymer scaffold material including the therapeutic composition may be attached to a first cardiac tissue of a subject. The therapeutic composition is delivered from the biopolymer scaffold material to the heart of the subject.Type: ApplicationFiled: December 4, 2024Publication date: March 20, 2025Applicant: Helios Cardio Inc.Inventors: Kevin Cornwell, Yiannis Monovoukas, Peter Jackson, Clayton Kaiser
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Patent number: 12194017Abstract: Methods, compositions of matter, and devices for delivering a therapeutic composition to a heart of a subject using a biopolymer scaffold material are described. In some embodiments, the biopolymer scaffold material including the therapeutic composition may be attached to a first cardiac tissue of a subject. The therapeutic composition is delivered from the biopolymer scaffold material to the heart of the subject.Type: GrantFiled: August 24, 2022Date of Patent: January 14, 2025Assignee: Helios Cardio Inc.Inventors: Kevin Cornwell, Yiannis Monovoukas, Peter Jackson, Clayton Kaiser
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Publication number: 20240268959Abstract: Devices and methods for forming guided angiogenesis and enhanced vascularization in ischemic heart tissue are described. In some embodiments, a biopolymer scaffold material may comprise a plurality of through holes (e.g., slits, cutouts, and/or other appropriate types of through holes) that may guide angiogenesis and promote enhanced revascularization in ischemic heart tissue. In some embodiments, microneedles may be used to form a plurality of microchannels in ischemic heart tissue. The plurality of microchannels may be patterned to form guided vascularization such that vascularization may be directed from non-ischemic heart tissue to the ischemic heart tissue. In some embodiments, a biopolymer scaffold material including through holes formed therein applied to ischemic heart tissue may be combined with a plurality of microchannels formed in the ischemic heart tissue to improve microvascularization of the ischemic heart.Type: ApplicationFiled: February 6, 2024Publication date: August 15, 2024Applicant: Helios Cardio Inc.Inventors: Yiannis Monovoukas, Kevin Cornwell, Peter Jackson
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Publication number: 20230263940Abstract: A tissue graft for soft tissue repair or reconstruction comprising a sheet of a biopolymer-based matrix having a plurality of small perforations and a plurality of large perforations. The small perforations are sized to facilitate clotting and granulation tissue development within the perforations which, in turn, facilitates revascularization and cell repopulation in the patient. The large perforations are sized to reduce the occurrence of clotting and granulation tissue development within the perforations so that extravascular tissue fluids accumulating at the implant site can drain through the tissue graft. The large perforations enhance mammal tissue anchoring by permitting mammal tissue to compress into the perforations increasing mammal tissue contact area.Type: ApplicationFiled: April 24, 2023Publication date: August 24, 2023Inventors: Kevin Cornwell, Kenneth James
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Patent number: 11633520Abstract: A tissue graft for soft tissue repair or reconstruction comprising a sheet of a biopolymer-based matrix having a plurality of small perforations and a plurality of large perforations. The small perforations are sized to facilitate clotting and granulation tissue development within the perforations which, in turn, facilitates revascularization and cell repopulation in the patient. The large perforations are sized to reduce the occurrence of clotting and granulation tissue development within the perforations so that extravascular tissue fluids accumulating at the implant site can drain through the tissue graft. The large perforations enhance mammal tissue anchoring by permitting mammal tissue to compress into the perforations increasing mammal tissue contact area.Type: GrantFiled: March 6, 2018Date of Patent: April 25, 2023Assignee: TEI BIOSCIENCES, INC.Inventors: Kevin Cornwell, Kenneth James
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Publication number: 20230071220Abstract: Methods, compositions of matter, and devices for delivering a therapeutic composition to a heart of a subject using a biopolymer scaffold material are described. In some embodiments, the biopolymer scaffold material including the therapeutic composition may be attached to a first cardiac tissue of a subject. The therapeutic composition is delivered from the biopolymer scaffold material to the heart of the subject.Type: ApplicationFiled: August 24, 2022Publication date: March 9, 2023Applicant: Helios Cardio Inc.Inventors: Kevin Cornwell, Yiannis Monovoukas, Peter Jackson, Clayton Kaiser
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Publication number: 20180250441Abstract: A tissue graft for soft tissue repair or reconstruction comprising a sheet of a biopolymer-based matrix having a plurality of small perforations and a plurality of large perforations. The small perforations are sized to facilitate clotting and granulation tissue development within the perforations which, in turn, facilitates revascularization and cell repopulation in the patient. The large perforations are sized to reduce the occurrence of clotting and granulation tissue development within the perforations so that extravascular tissue fluids accumulating at the implant site can drain through the tissue graft. The large perforations enhance mammal tissue anchoring by permitting mammal tissue to compress into the perforations increasing mammal tissue contact area.Type: ApplicationFiled: March 6, 2018Publication date: September 6, 2018Inventors: Kevin Cornwell, Kenneth James
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Publication number: 20110034867Abstract: Compositions that include microthreads are provided. The compositions can be fully or partially encased in a sleeve along at least a portion of their length and can include biological cells and, optionally, therapeutic agents. Also provided are methods for using the compositions to repair or ameliorate damaged or defective tissue, including cardiovascular tissue (e.g., the myocardium).Type: ApplicationFiled: March 21, 2008Publication date: February 10, 2011Inventors: Jacques Guyette, Kevin Cornwell, Glenn Gaudette, George Pins, Marsha Rolle