Patents by Inventor Itshak COHEN
Itshak COHEN 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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Patent number: 12629147Abstract: Devices and methods of endolumenal formation of gastric sleeves are described. In some embodiments, a bougie capsule section comprises one or more mechanisms to allow flexing that induces a bend through a suction clamping domain that grabs, positions, and holds body lumen tissue (e.g., gastric wall tissue). In some embodiments, a needle drive is configured to allow longitudinal movement of a helical needle through a suturing space defined by the suction clamping domain, optionally while the suction clamping domain is bent. In some embodiments, the suction clamping domain can insert to the stomach in a collapsed configuration, then expanded once in the stomach. Potentially, this allows grabbing and positioning larger and/or deeper folds of tissue for suturing.Type: GrantFiled: January 9, 2020Date of Patent: May 19, 2026Assignee: Nitinotes Ltd.Inventors: Raz Bar-On, Gilad Heftman, Itshak Cohen, Eli Shapira, Marina Dror
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Patent number: 12465674Abstract: An apparatus for shunting blood includes a flow-indication chamber shaped to define an entry port and an exit port, and one or more moveable objects disposed within the flow-indication chamber and configured to move in response to a flowing of the blood from the entry port to the exit port. At least a portion of a wall of the flow-indication chamber is transparent so as to expose the moveable objects to sight. Other embodiments are also described.Type: GrantFiled: October 23, 2023Date of Patent: November 11, 2025Assignee: Inspire M.D Ltd.Inventors: Jesse Drake, Justin McCarthy, Itshak Cohen
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Patent number: 12458519Abstract: Apparatus and method for delivering and deploying an intravascular device into the vessel including an outer and inner tube that are axially linked by a housing structure at the proximal end of the catheter, and a retractable sleeve structure having a middle tube and sleeve tip. The sleeve tip is sealed to the inner tube at the distal end, and continuously extends into the middle tube. At the proximal end of the sleeve structure, the middle tube is sealed to either a housing structure or slideable proximal ring, forming a sealed chamber between the inner tube and the sleeve structure. A radial space is formed between the sleeve tip and the inner tube optimized for intravascular device placement. During retraction of the sleeve structure, the fold of the sleeve tip peels away from the device, which expands to its deployed state while minimizing axial forces and friction.Type: GrantFiled: January 3, 2024Date of Patent: November 4, 2025Assignee: MEDINOL LTD.Inventors: Itshak Cohen, Shahar Maximuk, Gilad Moiseyev
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Publication number: 20240335309Abstract: Apparatus and method for delivering and deploying an intravascular device into the vessel including an outer and inner tube that are axially linked by a housing structure at the proximal end of the catheter, and a retractable sleeve structure having a middle tube and sleeve tip. The sleeve tip is sealed to the inner tube at the distal end, and continuously extends into the middle tube. At the proximal end of the sleeve structure, the middle tube is sealed to either a housing structure or slideable proximal ring, forming a sealed chamber between the inner tube and the sleeve structure. A radial space is formed between the sleeve tip and the inner tube optimized for intravascular device placement. During retraction of the sleeve structure, the fold of the sleeve tip peels away from the device, which expands to its deployed state while minimizing axial forces and friction.Type: ApplicationFiled: January 3, 2024Publication date: October 10, 2024Inventors: Itshak COHEN, Shahar MAXIMUK, Gilad MOISEYEV
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Publication number: 20240058145Abstract: A method for retracting a sheath from over an expandable medical device. The method includes rotating a lever, which protrudes from a shell of a handle, proximally, such that the lever proximally moves, by a first distance, a carriage disposed within the shell and coupled to the sheath. Subsequently to rotating the lever, the lever slides proximally such that the lever moves the carriage proximally by a second distance.Type: ApplicationFiled: October 30, 2023Publication date: February 22, 2024Inventors: Juan Rigla, Shmuel Vered, Itshak Cohen, Ryan Vincent Tien Sing Young, Alexandre Ioan Romoscanu
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Publication number: 20240042117Abstract: An apparatus for shunting blood includes a flow-indication chamber shaped to define an entry port and an exit port, and one or more moveable objects disposed within the flow-indication chamber and configured to move in response to a flowing of the blood from the entry port to the exit port. At least a portion of a wall of the flow-indication chamber is transparent so as to expose the moveable objects to sight. Other embodiments are also described.Type: ApplicationFiled: October 23, 2023Publication date: February 8, 2024Inventors: Jesse Drake, Justin McCarthy, Itshak Cohen
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Patent number: 11872148Abstract: Apparatus and method for delivering and deploying an intravascular device into the vessel including an outer and inner tube that are axially linked by a housing structure at the proximal end of the catheter, and a retractable sleeve structure having a middle tube and sleeve tip. The sleeve tip is sealed to the inner tube at the distal end, and continuously extends into the middle tube. At the proximal end of the sleeve structure, the middle tube is sealed to either a housing structure or slideable proximal ring, forming a sealed chamber between the inner tube and the sleeve structure. A radial space is formed between the sleeve tip and the inner tube optimized for intravascular device placement. During retraction of the sleeve structure, the fold of the sleeve tip peels away from the device, which expands to its deployed state while minimizing axial forces and friction.Type: GrantFiled: March 12, 2021Date of Patent: January 16, 2024Assignee: Medinol Ltd.Inventors: Itshak Cohen, Shahar Maximuk, Gilad Moiseyev
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Patent number: 11844893Abstract: An apparatus for shunting blood includes a flow-indication chamber shaped to define an entry port and an exit port, and one or more moveable objects disposed within the flow-indication chamber and configured to move in response to a flowing of the blood from the entry port to the exit port. At least a portion of a wall of the flow-indication chamber is transparent so as to expose the moveable objects to sight. Other embodiments are also described.Type: GrantFiled: January 16, 2022Date of Patent: December 19, 2023Assignee: INSPIRE M.D LTD.Inventors: Jesse Drake, Justin McCarthy, Itshak Cohen
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Patent number: 11839561Abstract: An apparatus for retracting a sheath from over an expandable medical device includes a shell, configured to couple to a longitudinal element, a carriage disposed within the shell and configured to couple to the sheath, and a lever protruding from the shell. The lever is configured to retract the sheath while a distal end of the longitudinal element contacts the expandable medical device, by rotating proximally so as to move the carriage proximally by a first distance, and, subsequently to rotating proximally, sliding proximally so as to move the carriage proximally by a second distance. Other embodiments are also described.Type: GrantFiled: January 21, 2021Date of Patent: December 12, 2023Assignee: INSPIRE M.D LTD.Inventors: Juan Rigla, Shmuel Vered, Itshak Cohen, Ryan Vincent Tien Sing Young, Alexandre Ioan Romoscanu
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Publication number: 20220226135Abstract: An apparatus for retracting a sheath from over an expandable medical device includes a shell, configured to couple to a longitudinal element, a carriage disposed within the shell and configured to couple to the sheath, and a lever protruding from the shell. The lever is configured to retract the sheath while a distal end of the longitudinal element contacts the expandable medical device, by rotating proximally so as to move the carriage proximally by a first distance, and, subsequently to rotating proximally, sliding proximally so as to move the carriage proximally by a second distance. Other embodiments are also described.Type: ApplicationFiled: January 21, 2021Publication date: July 21, 2022Inventors: Juan Rigla, Shmuel Vered, Itshak Cohen, Ryan Vincent Tien Sing Young, Alexandre Ioan Romoscanu
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Publication number: 20220226556Abstract: An apparatus for shunting blood includes a flow-indication chamber shaped to define an entry port and an exit port, and one or more moveable objects disposed within the flow-indication chamber and configured to move in response to a flowing of the blood from the entry port to the exit port. At least a portion of a wall of the flow-indication chamber is transparent so as to expose the moveable objects to sight. Other embodiments are also described.Type: ApplicationFiled: January 16, 2022Publication date: July 21, 2022Inventors: Jesse Drake, Justin McCarthy, Itshak Cohen
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Publication number: 20220168098Abstract: A medical implant including an anchor portion including a plurality of arms adapted to engage an internal tissue wall of a body from two opposite faces, wherein the anchor portion is configured such that at least one of the arms does not have an entirely overlapping arm on the other side of the wall and an opening portion adapted to define an opening for blood flow through the internal tissue wall, when the anchor portion engages the wall.Type: ApplicationFiled: February 16, 2022Publication date: June 2, 2022Applicant: V-Wave Ltd.Inventors: Tamir LEVI, Meir ROSENBERG, Ori BEN-AMOTZ, Yoram ROZY, Eyal BENBENISTI, Roey SHAFRIR, Doron KOPELMAN, Itshak COHEN, Tamar HAREL
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Publication number: 20220079577Abstract: Devices and methods of endolumenal formation of gastric sleeves are described. In some embodiments, a bougie capsule section comprises one or more mechanisms to allow flexing that induces a bend through a suction clamping domain that grabs, positions, and holds body lumen tissue (e.g., gastric wall tissue). In some embodiments, a needle drive is configured to allow longitudinal movement of a helical needle through a suturing space defined by the suction clamping domain, optionally while the suction clamping domain is bent. In some embodiments, the suction clamping domain can insert to the stomach in a collapsed configuration, then expanded once in the stomach. Potentially, this allows grabbing and positioning larger and/or deeper folds of tissue for suturing.Type: ApplicationFiled: January 9, 2020Publication date: March 17, 2022Applicant: Nitinotes Ltd.Inventors: Raz BAR-ON, Gilad HEFTMAN, Itshak COHEN, Eli SHAPIRA, Marina DROR
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Patent number: 11253353Abstract: A medical implant including an anchor portion including a plurality of arms adapted to engage an internal tissue wall of a body from two opposite faces, wherein the anchor portion is configured such that at least one of the arms does not have an entirely overlapping arm on the other side of the wall and an opening portion adapted to define an opening for blood flow through the internal tissue wall, when the anchor portion engages the wall.Type: GrantFiled: July 8, 2019Date of Patent: February 22, 2022Assignee: V-Wave Ltd.Inventors: Tamir Levi, Meir Rosenberg, Ori Ben-Amotz, Yoram Rozy, Eyal Benbenisti, Roey Shafrir, Doron Kopelman, Itshak Cohen, Tamar Harel
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Publication number: 20220008163Abstract: Disclosed herein is a mountable dental device for shaping a tooth of a subject. The device includes: (i) an anchoring member configured to be removably affixed to a jaw of a subject by securing thereof to one or more teeth of the subject, and (ii) a computerized numerical control (CNC) machine fixedly mounted or mountable on the anchoring member. The CNC machine is configured to have installed thereon and maneuver a dental turbine. When the anchoring member is affixed to the jaw, the device is supported by the subject. The anchoring member is adjustable such as to allow the affixing thereof to jaws of different subjects. The CNC machine is configured to control operation of the dental turbine in at least one dental tooth-shaping procedure on at least one tooth of the subject.Type: ApplicationFiled: November 21, 2019Publication date: January 13, 2022Inventors: Amit OZERY, Itshak COHEN
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Publication number: 20210196495Abstract: Apparatus and method for delivering and deploying an intravascular device into the vessel including an outer and inner tube that are axially linked by a housing structure at the proximal end of the catheter, and a retractable sleeve structure having a middle tube and sleeve tip. The sleeve tip is sealed to the inner tube at the distal end, and continuously extends into the middle tube. At the proximal end of the sleeve structure, the middle tube is sealed to either a housing structure or slideable proximal ring, forming a sealed chamber between the inner tube and the sleeve structure. A radial space is formed between the sleeve tip and the inner tube optimized for intravascular device placement. During retraction of the sleeve structure, the fold of the sleeve tip peels away from the device, which expands to its deployed state while minimizing axial forces and friction.Type: ApplicationFiled: March 12, 2021Publication date: July 1, 2021Inventors: Itshak COHEN, Shahar MAXIMUK, Gilad MOISEYEV
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Patent number: 10973667Abstract: Apparatus and method for delivering and deploying an intravascular device into the vessel including an outer and inner tube that are axially linked by a housing structure at the proximal end of the catheter, and a retractable sleeve structure having a middle tube and sleeve tip. The sleeve tip is sealed to the inner tube at the distal end, and continuously extends into the middle tube. At the proximal end of the sleeve structure, the middle tube is sealed to either a housing structure or slideable proximal ring, forming a sealed chamber between the inner tube and the sleeve structure. A radial space is formed between the sleeve tip and the inner tube optimized for intravascular device placement. During retraction of the sleeve structure, the fold of the sleeve tip peels away from the device, which expands to its deployed state while minimizing axial forces and friction.Type: GrantFiled: January 18, 2019Date of Patent: April 13, 2021Assignee: Medinol Ltd.Inventors: Itshak Cohen, Shahar Maximuk, Gilad Moiseyev
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Publication number: 20190328513Abstract: A medical implant including an anchor portion including a plurality of arms adapted to engage an internal tissue wall of a body from two opposite faces, wherein the anchor portion is configured such that at least one of the arms does not have an entirely overlapping arm on the other side of the wall and an opening portion adapted to define an opening for blood flow through the internal tissue wall, when the anchor portion engages the wall.Type: ApplicationFiled: July 8, 2019Publication date: October 31, 2019Applicant: V-Wave Ltd.Inventors: Tamir LEVI, Meir ROSENBERG, Ori BEN-AMOTZ, Yoram ROZY, Eyal BENBENISTI, Roey SHAFRIR, Doron KOPELMAN, Itshak COHEN, Tamar HAREL
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Patent number: 10357357Abstract: A medical implant including an anchor portion including a plurality of arms adapted to engage an internal tissue wall of a body from two opposite faces, wherein the anchor portion is configured such that at least one of the arms does not have an entirely overlapping arm on the other side of the wall and an opening portion adapted to define an opening for blood flow through the internal tissue wall, when the anchor portion engages the wall.Type: GrantFiled: June 15, 2017Date of Patent: July 23, 2019Assignee: V-Wave Ltd.Inventors: Tamir Levi, Meir Rosenberg, Ori Ben-Amotz, Yoram Rozy, Eyal Benbenisti, Roey Shafrir, Doron Kopelman, Itshak Cohen, Tamar Harel
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Publication number: 20190151128Abstract: Apparatus and method for delivering and deploying an intravascular device into the vessel including an outer and inner tube that are axially linked by a housing structure at the proximal end of the catheter, and a retractable sleeve structure having a middle tube and sleeve tip. The sleeve tip is sealed to the inner tube at the distal end, and continuously extends into the middle tube. At the proximal end of the sleeve structure, the middle tube is sealed to either a housing structure or slideable proximal ring, forming a sealed chamber between the inner tube and the sleeve structure. A radial space is formed between the sleeve tip and the inner tube optimized for intravascular device placement. During retraction of the sleeve structure, the fold of the sleeve tip peels away from the device, which expands to its deployed state while minimizing axial forces and friction.Type: ApplicationFiled: January 18, 2019Publication date: May 23, 2019Inventors: Itshak COHEN, Shahar MAXIMUK, Gilad MOISEYEV