Patents by Inventor David A. Rezac

David A. Rezac 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: 20210100554
    Abstract: The invention provides systems, devices, and methods for the delivery, deployment, and positioning of magnetic compression devices at a desired site so as to improve the accuracy of anastomoses creation between tissues, organs, or the like.
    Type: Application
    Filed: December 1, 2020
    Publication date: April 8, 2021
    Inventors: Dane Seddon, Peter Lukin, Jonathan B. O'Keefe, Amos Cruz, Jeffrey C. Cerier, Keith D. Boudreau, Taylor Bensel, David A. Rezac
  • Publication number: 20200406018
    Abstract: Endovascular drug delivery systems and methods are disclosed herein for delivering a therapeutic agent to the intracranial subarachnoid space of a patient, and/or deploying an endovascular drug delivery device distal portion in the intracranial subarachnoid space and a portion of the drug delivery device body in a dural venous sinus such that a therapeutic agent is delivered from the deployed drug delivery device into the intracranial subarachnoid space.
    Type: Application
    Filed: March 8, 2019
    Publication date: December 31, 2020
    Applicant: CEREVASC, INC.
    Inventors: Adel M. Malek, Carl B. Heilman, David A. Rezac, Jack B. Sattell, Alexander Bonin
  • Publication number: 20200376239
    Abstract: Methods for treating hydrocephalus using a shunt, the shunt having one or more CSF intake openings in a distal portion, a valve disposed in a proximal portion of the shunt, and a lumen extending between the one or more CSF intake openings and the valve, the method comprises deploying the shunt in a body of a patient so that the distal portion of the shunt is at least partially disposed within a CP angle cistern, a body of the shunt is at least partially disposed within an IPS of the patient, and the proximal portion of the shunt is at least partially disposed within or proximate to a JV of the patient, wherein, after deployment of the shunt, CSF flows from the CP angle cistern to the JV via the shunt lumen at a flow rate in a range of 5 ml per hour to 15 ml per hour.
    Type: Application
    Filed: August 20, 2020
    Publication date: December 3, 2020
    Applicant: CEREVASC, INC.
    Inventors: Carl Heilman, Adel M. Malek, David A. Rezac, Timothy W. Robinson, Joseph Ting
  • Publication number: 20200368506
    Abstract: Systems and methods for implanting an endovascular shunt in a patient is disclosed. The system having an expandable anchor configured for being deployed in a dural venous sinus of a patient at a location distal to a curved portion of a wall of an inferior petrosal sinus (IPS) of the patient; an elongate guide member coupled to, and extending proximally from, the anchor; a shunt delivery catheter having a first lumen configured to receive the guide member, and a second lumen extending between respective proximal and distal openings in the shunt delivery catheter, the shunt delivery catheter further having a penetrating element coupled to a distal end of the catheter; and the system further having a guard at least partially disposed over, and movable relative to, the penetrating element.
    Type: Application
    Filed: August 5, 2020
    Publication date: November 26, 2020
    Applicant: CEREVASC, INC.
    Inventors: Adel M. Malek, Carl Heilman, David A. Rezac, Jack B. Sattell, Anthony Maiorano
  • Publication number: 20200305906
    Abstract: Apparatus for performing a minimally-invasive procedure, the apparatus comprising: a tool comprising: a shaft having a distal end and a proximal end; a handle attached to the proximal end of the shaft; and an end effector attached to the distal end of the shaft; wherein the shaft comprises a flexible portion extending distally from the proximal end of the shaft, and an articulating portion extending proximally from the distal end of the shaft, and wherein the articulating portion comprises a flexible spine; wherein a plurality of articulation cables extend through the shaft from the handle to the flexible spine, such that when tension is applied to at least one of the plurality of articulation cables, the flexible spine bends; wherein a rotatable element extends through the shaft from the handle to the end effector, such that when the rotatable element is rotated, the end effector rotates; and wherein an actuation element extends through the shaft from the handle to the end effector, such that when the actuat
    Type: Application
    Filed: April 13, 2020
    Publication date: October 1, 2020
    Inventors: Jonathan O'Keefe, Jeffrey Cerier, Amos Cruz, David Rezac
  • Patent number: 10765846
    Abstract: Methods for treating hydrocephalus using a shunt, the shunt having one or more CSF intake openings in a distal portion, a valve disposed in a proximal portion of the shunt, and a lumen extending between the one or more CSF intake openings and the valve, the method comprises deploying the shunt in a body of a patient so that the distal portion of the shunt is at least partially disposed within a CP angle cistern, a body of the shunt is at least partially disposed within an IPS of the patient, and the proximal portion of the shunt is at least partially disposed within or proximate to a JV of the patient, wherein, after deployment of the shunt, CSF flows from the CP angle cistern to the JV via the shunt lumen at a flow rate in a range of 5 ml per hour to 15 ml per hour.
    Type: Grant
    Filed: May 16, 2018
    Date of Patent: September 8, 2020
    Assignee: CereVasc, Inc.
    Inventors: Carl Heilman, Adel M. Malek, David A. Rezac, Timothy W. Robinson, Joseph Ting
  • Patent number: 10758718
    Abstract: Systems and methods for implanting an endovascular shunt in a patient is disclosed. The system having an expandable anchor configured for being deployed in a dural venous sinus of a patient at a location distal to a curved portion of a wall of an inferior petrosal sinus (IPS) of the patient; an elongate guide member coupled to, and extending proximally from, the anchor; a shunt delivery catheter having a first lumen configured to receive the guide member, and a second lumen extending between respective proximal and distal openings in the shunt delivery catheter, the shunt delivery catheter further having a penetrating element coupled to a distal end of the catheter; and the system further having a guard at least partially disposed over, and movable relative to, the penetrating element.
    Type: Grant
    Filed: May 16, 2018
    Date of Patent: September 1, 2020
    Assignee: CereVasc, Inc.
    Inventors: Adel M. Malek, Carl Heilman, David A. Rezac, Jack B. Sattell, Anthony Maiorano
  • Patent number: 10695162
    Abstract: A system for applying a fiber matrix on a tubular member is provided. A mandrel, configured for atraumatic placement within the tubular member, is included. Methods for atraumatic placement of a mandrel into a tubular member are also provided.
    Type: Grant
    Filed: December 15, 2017
    Date of Patent: June 30, 2020
    Assignee: Xeltis AG
    Inventors: Lorenzo Soletti, Mohammed S. El-Kurdi, Jon McGrath, J. Christopher Flaherty, Liem Vu, Jerry Brightbill, Stephen Evans, Joseph Ting, David Rezac, Timothy Robinson
  • Publication number: 20200170701
    Abstract: Apparatus for performing a minimally-invasive procedure, the apparatus comprising: a shaft having a distal end and a proximal end; a monopolar knife assembly attached to the distal end of the shaft, the monopolar knife assembly comprising a knife; a handle attached to the proximal end of the shaft; wherein the shaft comprises a flexible portion and an articulating portion, wherein the flexible portion extends distally from the handle and the articulating portion extends distally from the flexible portion; wherein at least one articulation cable extends from the handle to the articulating portion, such that when tension is applied to the at least one articulation cable, the articulating portion deflects; wherein an actuation element extends through the shaft from the handle to the knife, such that when the actuation element is moved, the knife is moved; and wherein the actuation element transmits electrical power from the handle to the knife.
    Type: Application
    Filed: February 3, 2020
    Publication date: June 4, 2020
    Inventors: Jonathan O'Keefe, Jeffrey Cerier, Amos Cruz, David Rezac, Niklas Helmick, Peter Aliski, Andrew Caunter
  • Publication number: 20200155217
    Abstract: A system for ablating surface tissue of a patient is provided. The system includes a console and an ablation catheter fluidly attached to the console. The console includes an ablative fluid supply, a neutralizing fluid supply, an injectate fluid supply, a pump assembly, and a vacuum supply. The ablation catheter includes an expandable functional assembly, a tissue expansion subsystem for expanding sub-surface tissue in the intestine of the patient, and a tissue ablation subsystem for ablating surface tissue in the intestine of the patient. Methods of ablating surface tissue are also provided.
    Type: Application
    Filed: January 14, 2020
    Publication date: May 21, 2020
    Applicant: Fractyl Laboratories, Inc.
    Inventors: Sara Morneau, Michael Biasella, Jay Caplan, Harith Rajagopalan, MIchael Riches, Andrew Hollett, Brendan Zarechian, Kyle Dalbec, Mark Manasas, Chris Kadamus, Jeff Lesica, David A. Rezac, Richard Wisdom, J. Christopher Flaherty, R. Maxwell Flaherty
  • Patent number: 10617438
    Abstract: Apparatus for performing a minimally-invasive procedure, the apparatus comprising: a tool comprising: a shaft having a distal end and a proximal end; a handle attached to the proximal end of the shaft; and an end effector attached to the distal end of the shaft; wherein the shaft comprises a flexible portion extending distally from the proximal end of the shaft, and an articulating portion extending proximally from the distal end of the shaft, and wherein the articulating portion comprises a flexible spine; wherein a plurality of articulation cables extend through the shaft from the handle to the flexible spine, such that when tension is applied to at least one of the plurality of articulation cables, the flexible spine bends; wherein a rotatable element extends through the shaft from the handle to the end effector, such that when the rotatable element is rotated, the end effector rotates; and wherein an actuation element extends through the shaft from the handle to the end effector, such that when the actuat
    Type: Grant
    Filed: October 20, 2016
    Date of Patent: April 14, 2020
    Assignee: Lumendi Ltd.
    Inventors: Jonathan O'Keefe, Jeffrey Cerier, Amos Cruz, David Rezac
  • Publication number: 20200069927
    Abstract: In some aspects, catheter devices can include: a reinforcing member having a proximal and distal ends, the reinforcing member comprising: discrete longitudinally arranged structural regions between the proximal and distal ends comprising: a first, proximal, structural region defining a first series of wall perforations that generate structural properties within the first structural region, the first series of wall perforations setting a first stiffness of the first structural region; and a second structural region, disposed distally relative to the first structural region, defining a second series of wall perforations that generate structural properties within the second structural region, the second series of wall perforations setting a second stiffness of the second structural region, which is less than the first stiffness, wherein the second series of wall perforations differs from the first series of wall perforations by at least one of: cut balance, cut frequency, or pitch.
    Type: Application
    Filed: March 2, 2018
    Publication date: March 5, 2020
    Inventors: Adel M. Malek, Carl Heilman, David A. Rezac, Jack B. Sattell, Alexander Bonin
  • Publication number: 20200046484
    Abstract: There is disclosed a porous emboli deflector for preventing cerebral emboli while maintaining cerebral blood flow during an endovascular or open surgical procedure. The device prevents the entrance of emboli of a size able to cause stroke (such as greater than 100 microns) from entering either the right or left common carotid arteries, and/or the right or left vertebral arteries by deflecting emboli downstream of these vessels. The device can be placed prior to any manipulation of the heart or aorta allowing maximal protection of the brain during the index procedure. The deflector has a low profile within the aorta which allows sheaths, catheters, or wires used in the index procedure to pass. Also disclosed are methods for insertion and removal of the deflector.
    Type: Application
    Filed: October 1, 2019
    Publication date: February 13, 2020
    Inventors: Judith T. Carpenter, Jeffrey P. Carpenter, David A. Rezac, Jeffrey C. Cerier, Richard C. Fortier, Timothy W. Robinson
  • Publication number: 20200030588
    Abstract: An endovascular shunt implantation system includes a guide member configured for being deployed in an inferior petrosal sinus, and a delivery catheter movably coupled to the guide member, wherein a distal end of the delivery catheter includes a tissue penetrating element. A guard is disposed over the tissue penetrating element, the guard having an open distal end portion including an inner surface feature configured to deflect the tissue penetrating element away from the guide member when the tissue penetrating element is translated distally relative to the guard. A shunt delivery shuttle is positioned within, and is movable relative to, the delivery catheter, the shunt delivery shuttle having a distal portion configured to collapse around an elongate shunt body to thereby transport the shunt body through the delivery catheter, wherein the distal portion self-expands to release the shunt body when the distal shuttle portion is advanced out of the delivery catheter.
    Type: Application
    Filed: October 11, 2017
    Publication date: January 30, 2020
    Applicant: CEREVASC, LLC
    Inventors: Carl Heilman, Adel M. Malek, David A. Rezac, Jack B. Sattell, Alexander Bonin
  • Patent number: 10426591
    Abstract: There is disclosed a porous emboli deflector for preventing cerebral emboli while maintaining cerebral blood flow during an endovascular or open surgical procedure. The device prevents the entrance of emboli of a size able to cause stroke (such as greater than 100 microns) from entering either the right or left common carotid arteries, and/or the right or left vertebral arteries by deflecting emboli downstream of these vessels. The device can be placed prior to any manipulation of the heart or aorta allowing maximal protection of the brain during the index procedure. The deflector has a low profile within the aorta which allows sheaths, catheters, or wires used in the index procedure to pass. Also disclosed are methods for insertion and removal of the deflector.
    Type: Grant
    Filed: May 12, 2016
    Date of Patent: October 1, 2019
    Assignee: Edwards Lifesciences AG
    Inventors: Judith T. Carpenter, Jeffrey P. Carpenter, David A. Rezac, Jeffrey C. Cerier, Richard C. Fortier, Timothy W. Robinson
  • Patent number: 10307577
    Abstract: Systems and methods for implanting an endovascular shunt in a patient is disclosed. The system having an expandable anchor configured for being deployed in a dural venous sinus of a patient at a location distal to a curved portion of a wall of an inferior petrosal sinus (IPS) of the patient; an elongate guide member coupled to, and extending proximally from, the anchor; a shunt delivery catheter having a first lumen configured to receive the guide member, and a second lumen extending between respective proximal and distal openings in the shunt delivery catheter, the shunt delivery catheter further having a penetrating element coupled to a distal end of the catheter; and the system further having a guard at least partially disposed over, and movable relative to, the penetrating element.
    Type: Grant
    Filed: December 6, 2018
    Date of Patent: June 4, 2019
    Assignee: CEREVASC, LLC
    Inventors: Adel M. Malek, Carl Heilman, David A. Rezac, Jack B. Sattell, Anthony Maiorano
  • Patent number: 10307576
    Abstract: Methods for treating hydrocephalus using a shunt, the shunt having one or more CSF intake openings in a distal portion, a valve disposed in a proximal portion of the shunt, and a lumen extending between the one or more CSF intake openings and the valve, the method comprises deploying the shunt in a body of a patient so that the distal portion of the shunt is at least partially disposed within a CP angle cistern, a body of the shunt is at least partially disposed within an IPS of the patient, and the proximal portion of the shunt is at least partially disposed within or proximate to a JV of the patient, wherein, after deployment of the shunt, CSF flows from the CP angle cistern to the JV via the shunt lumen at a flow rate in a range of 5 ml per hour to 15 ml per hour.
    Type: Grant
    Filed: December 6, 2018
    Date of Patent: June 4, 2019
    Assignee: CEREVASC, LLC
    Inventors: Carl Heilman, Adel M. Malek, David A. Rezac, Timothy W. Robinson, Joseph Ting
  • Patent number: 10279154
    Abstract: Methods for treating hydrocephalus using a shunt, the shunt having one or more CSF intake openings in a distal portion, a valve disposed in a proximal portion of the shunt, and a lumen extending between the one or more CSF intake openings and the valve, the method comprises deploying the shunt in a body of a patient so that the distal portion of the shunt is at least partially disposed within a CP angle cistern, a body of the shunt is at least partially disposed within an IPS of the patient, and the proximal portion of the shunt is at least partially disposed within or proximate to a JV of the patient, wherein, after deployment of the shunt, CSF flows from the CP angle cistern to the JV via the shunt lumen at a flow rate in a range of 5 ml per hour to 15 ml per hour.
    Type: Grant
    Filed: August 3, 2017
    Date of Patent: May 7, 2019
    Assignee: CEREVASC, LLC
    Inventors: Carl Heilman, Adel M. Malek, David A. Rezac, Timothy W. Robinson, Joseph Ting
  • Patent number: 10272230
    Abstract: Systems and methods for implanting an endovascular shunt in a patient is disclosed. The system having an expandable anchor configured for being deployed in a dural venous sinus of a patient at a location distal to a curved portion of a wall of an inferior petrosal sinus (IPS) of the patient; an elongate guide member coupled to, and extending proximally from, the anchor; a shunt delivery catheter having a first lumen configured to receive the guide member, and a second lumen extending between respective proximal and distal openings in the shunt delivery catheter, the shunt delivery catheter further having a penetrating element coupled to a distal end of the catheter; and the system further having a guard at least partially disposed over, and movable relative to, the penetrating element.
    Type: Grant
    Filed: October 28, 2016
    Date of Patent: April 30, 2019
    Assignee: CEREVASC, LLC
    Inventors: Adel M. Malek, Carl Heilman, David A. Rezac, Jack B. Sattell, Anthony Maiorano
  • Publication number: 20190105477
    Abstract: Methods for treating hydrocephalus using a shunt, the shunt having one or more CSF intake openings in a distal portion, a valve disposed in a proximal portion of the shunt, and a lumen extending between the one or more CSF intake openings and the valve, the method comprises deploying the shunt in a body of a patient so that the distal portion of the shunt is at least partially disposed within a CP angle cistern, a body of the shunt is at least partially disposed within an IPS of the patient, and the proximal portion of the shunt is at least partially disposed within or proximate to a JV of the patient, wherein, after deployment of the shunt, CSF flows from the CP angle cistern to the JV via the shunt lumen at a flow rate in a range of 5 ml per hour to 15 ml per hour.
    Type: Application
    Filed: December 6, 2018
    Publication date: April 11, 2019
    Applicant: CEREVASC, LLC
    Inventors: Carl Heilman, Adel M. Malek, David A. Rezac, Timothy W. Robinson, Joseph Ting