Patents by Inventor Robert Geshlider

Robert Geshlider 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).

  • Patent number: 7381219
    Abstract: Apparatus for endovascularly replacing a patient's heart valve, including: a delivery catheter having a diameter of 21 french or less; an expandable anchor disposed within the delivery catheter; and a replacement valve disposed within the delivery catheter. The invention also includes a method for endovascularly replacing a heart valve of a patient. In some embodiments the method includes the steps of: inserting a catheter having a diameter no more than 21 french into the patient; endovascularly delivering a replacement valve and an expandable anchor to a vicinity of the heart valve through the catheter; and deploying the anchor and the replacement valve.
    Type: Grant
    Filed: December 23, 2003
    Date of Patent: June 3, 2008
    Assignee: Sadra Medical, Inc.
    Inventors: Amr Salahieh, Brian D. Brandt, Dwight P. Morejohn, Ulrich R. Haug, Jean-Pierre Dueri, Hans F. Valencia, Robert A. Geshlider, Jeff Krolik
  • Publication number: 20080125859
    Abstract: Methods for endovascularly replacing a patient's heart valve. In some embodiments, the method includes the steps of endovascularly delivering a replacement valve and an anchor to a vicinity of the heart valve, the anchor having a braid, and expanding the braid to a deployed configuration against the patient's tissue. The braid may be fabricated from a single strand of wire and/or may comprise at least one turn feature.
    Type: Application
    Filed: February 8, 2008
    Publication date: May 29, 2008
    Applicant: Sadra Medical, Inc.
    Inventors: Amr Salahieh, Ulrich R. Haug, Hans F. Valencia, Robert A. Geshlider, Tom Saul, Dwight P. Morejohn
  • Publication number: 20080039923
    Abstract: A positioning anchor is provided for a stent-graft for implantation to treat a damaged body lumen. The positioning anchor is generally tubular surrounding a primary fluid conduit. Arms extend laterally from the generally tubular structure of the anchor surrounding lateral fluid conduits. The form of these arms is preferably custom configured to match a particular patient's luminal geometry. The anchor thus fits within the luminal geometry to remain in a desired fixed position for implantation of the anchor and any stent-graft coupled to the anchor. The anchor is most preferably formed with two walls having a void therebetween which can be filled with fixation media to further secure the anchor at the desired implantation site. A lumen shaper balloon and delivery catheter are also disclosed for proper delivery, expansion and inflation of the positioning anchor and stent-graft elements according to this invention.
    Type: Application
    Filed: October 22, 2007
    Publication date: February 14, 2008
    Applicant: Nellix, Inc.
    Inventors: Charles Taylor, Christopher Zarins, Robert Geshlider, Dwight Morejohn, Peter Johansson, Sue Vican, James McKinley
  • Patent number: 7329279
    Abstract: Methods for endovascularly replacing a patient's heart valve. In some embodiments, the method includes the steps of endovascularly delivering a replacement valve and an anchor to a vicinity of the heart valve, the anchor having a braid, and expanding the braid to a deployed configuration against the patient's tissue. The braid may be fabricated from a single strand of wire and/or may comprise at least one the feature.
    Type: Grant
    Filed: July 15, 2004
    Date of Patent: February 12, 2008
    Assignee: Sadra Medical, Inc.
    Inventors: Ulrich R. Haug, Hans F. Valencia, Robert A. Geshlider, Tom Saul, Amr Salahieh, Dwight P. Morejohn
  • Publication number: 20070244552
    Abstract: Methods and devices for assessing the operation of a replacement heart valve. The method includes endovascularly delivering a replacement heart valve to a vicinity of a heart valve in an unexpanded configuration, and assessing the operation of the replacement heart valve in the vicinity of the heart valve before fully expanding the replacement heart valve. Methods and devices for assessing the location of a replacement heart valve. The method includes endovascularly delivering a replacement heart valve to a vicinity of the heart valve in an unexpanded configuration, expanding the replacement heart valve to a partially deployed configuration, and assessing the location of the replacement heart valve in the vicinity of the heart valve before fully expanding the replacement heart valve.
    Type: Application
    Filed: April 4, 2007
    Publication date: October 18, 2007
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider, Jeff Krolik
  • Patent number: 7255551
    Abstract: A system is provided for high volume print-forming of structures made up of multiple separate layers. A support bed is provided which has multiple steps arrayed thereon at different heights. Substrate blocks rest upon each of the steps. A printing process is utilized to print material from which the structures are to be formed down onto the substrate blocks. This printing process prints different layers onto each of the substrate blocks. The substrate blocks then move to a different step on the support bed and the printing process is repeated. Each support block has a partial structure thereon which receives its next successive layer in each printing cycle until the partial structure becomes a completed structure by having each of its layers sequentially printed thereon. Subsystems are provided for moving the substrate blocks upon the support bed and for properly holding and aligning substrate blocks upon the support bed.
    Type: Grant
    Filed: January 8, 2004
    Date of Patent: August 14, 2007
    Assignee: Eoplex Technologies, Inc.
    Inventors: Charles S. Taylor, Paul Cherkas, Robert A. Geshlider, Dwight P. Morejohn, Sue W. Vican, Bhupendra O. Shah, Eric Reeser
  • Publication number: 20070162107
    Abstract: The present invention provides methods and apparatus for endovascularly replacing a patient's heart valve. The apparatus includes a replacement valve and an anchor having an expandable braid. In some embodiments, the expandable braid is fabricated from a single strand of wire. In some embodiments, the expandable braid comprises at least one turn feature. The anchor and the valve preferably are configured for endovascular delivery and deployment.
    Type: Application
    Filed: March 9, 2007
    Publication date: July 12, 2007
    Applicant: Sadra Medical, Inc.
    Inventors: Ulrich Haug, Hans Valencia, Robert Geshlider, Tom Saul, Amr Salahieh, Dwight Morejohn
  • Publication number: 20070061008
    Abstract: The invention provides a two-part package and method of use for a pre-attached medical implant and delivery tool system. The package includes a wet compartment and a dry compartment and allows a pre-attached implant and delivery tool system to be at least partially stored immersed in a fluid in the wet compartment and at least partially stored in the dry compartment. In one embodiment the implant comprises a replacement heart valve, and the heart valve is stored inside the wet compartment while the heart valve delivery tool remains dry in the dry compartment.
    Type: Application
    Filed: February 2, 2006
    Publication date: March 15, 2007
    Inventors: Amr Salahieh, Tom Saul, Robert Geshlider, Andrea Johnson, Dwight Morejohn, Daniel Hildebrand, Jean-Pierre Dueri
  • Publication number: 20070010876
    Abstract: The invention includes methods of and apparatus for endovascularly replacing a heart valve of a patient. One aspect of the invention provides a method including the steps of endovascularly delivering a replacement valve and an expandable anchor to a vicinity of the heart valve in an unexpanded configuration; and applying an external non-hydraulic or non-pneumatic actuation force on the anchor to change the shape of the anchor, such as by applying proximally and/or distally directed force on the anchor using a releasable deployment tool to expand and contract the anchor or parts of the anchor.
    Type: Application
    Filed: September 14, 2006
    Publication date: January 11, 2007
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider, Jeff Krolik
  • Publication number: 20050283231
    Abstract: The present invention provides methods and apparatus for endovascularly replacing a patient's heart valve. The apparatus includes a replacement valve and an expandable anchor configured for endovascular delivery to a vicinity of the patient's heart valve. In some embodiments, the replacement valve is adapted to wrap about the anchor, for example, by everting during endovascular deployment. In some embodiments, the replacement valve is not connected to expandable portions of the anchor. In some embodiments, the anchor is configured for active foreshortening during endovascular deployment. In some embodiments, the anchor includes expandable lip and skirt regions for engaging the patient's heart valve during deployment. In some embodiments, the anchor comprises a braid fabricated from a single strand of wire. In some embodiments, the apparatus includes a lock configured to maintain anchor expansion. The invention also includes methods for endovascularly replacing a patient's heart valve.
    Type: Application
    Filed: June 16, 2004
    Publication date: December 22, 2005
    Inventors: Ulrich Haug, Hans Valencia, Robert Geshlider, Tom Saul, Amr Salahieh, Dwight Morejohn, Kenneth Michlitsch
  • Publication number: 20050137690
    Abstract: Apparatus for endovascularly replacing a patient's heart valve, including: a delivery catheter having a diameter of 21 french or less; an expandable anchor disposed within the delivery catheter; and a replacement valve disposed within the delivery catheter. The invention also includes a method for endovascularly replacing a heart valve of a patient. In some embodiments the method includes the steps of: inserting a catheter having a diameter no more than 21 french into the patient; endovascularly delivering a replacement valve and an expandable anchor to a vicinity of the heart valve through the catheter; and deploying the anchor and the replacement valve.
    Type: Application
    Filed: December 23, 2003
    Publication date: June 23, 2005
    Applicant: Sadra Medical
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider, Jeff Krolik
  • Publication number: 20050137692
    Abstract: The present invention provides methods and apparatus for endovascularly replacing a patient's heart valve. The apparatus includes a replacement valve and an anchor having an expandable braid. In some embodiments, the expandable braid is fabricated from a single strand of wire. In some embodiments, the expandable braid comprises at least one turn feature. The anchor and the valve preferably are configured for endovascular delivery and deployment.
    Type: Application
    Filed: July 15, 2004
    Publication date: June 23, 2005
    Inventors: Ulrich Haug, Hans Valencia, Robert Geshlider, Tom Saul, Amr Salahieh, Dwight Morejohn
  • Publication number: 20050137686
    Abstract: The invention includes methods of and apparatus for endovascularly replacing a heart valve of a patient. One aspect of the invention provides a method including the steps of endovascularly delivering a replacement valve and an expandable anchor to a vicinity of the heart valve in an unexpanded configuration; and applying an external non-hydraulic or non-pneumatic actuation force on the anchor to change the shape of the anchor, such as by applying proximally and/or distally directed force on the anchor using a releasable deployment tool to expand and contract the anchor or parts of the anchor.
    Type: Application
    Filed: December 23, 2003
    Publication date: June 23, 2005
    Applicant: Sadra Medical, a Delaware Corporation
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider, Jeff Krolik
  • Publication number: 20050137687
    Abstract: Apparatus for endovascularly replacing a patient's heart valve. In some embodiments the apparatus includes an expandable anchor with a lip region and a skirt region; and a replacement valve, wherein the lip region and skirt region are configured for percutaneous expansion to engage leaflets of the heart valve. The invention is also a method for endovascularly replacing a patient's heart valve. In some embodiments the method includes the steps of endovascularly delivering apparatus including an anchor having lip and skirt regions, and a replacement valve coupled to the anchor, to a vicinity of the heart valve in a collapsed delivery configuration; and expanding the apparatus such that leaflets of the heart valve are captured between the lip and skirt regions of the anchor.
    Type: Application
    Filed: December 23, 2003
    Publication date: June 23, 2005
    Applicant: Sadra Medical
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider, Jeff Krolik
  • Publication number: 20050137694
    Abstract: The present invention provides methods and apparatus for endovascularly replacing a patient's heart valve. The apparatus includes a replacement valve and an anchor having an expandable braid. In some embodiments, the expandable braid is fabricated from a single strand of wire. In some embodiments, the expandable braid comprises at least one turn feature. The anchor and the valve preferably are configured for endovascular delivery and deployment.
    Type: Application
    Filed: July 15, 2004
    Publication date: June 23, 2005
    Inventors: Ulrich Haug, Hans Valencia, Robert Geshlider, Tom Saul, Amr Salahieh, Dwight Morejohn
  • Publication number: 20050137689
    Abstract: A method for endovascularly replacing a heart valve of a patient. In some embodiments the method includes the steps of: endovascularly delivering a replacement valve and an expandable anchor in an unexpanded configuration within a catheter to a vicinity of the heart valve; deploying the anchor from the catheter; expanding the anchor to contact tissue at an anchor site; and retrieving the anchor into the catheter. The invention also includes an apparatus for endovascularly replacing a heart valve, including: a catheter; a replacement valve configured to be disposed within the catheter for delivery to a vicinity of the heart valve; and an expandable anchor configured to be disposed within the catheter for delivery to a vicinity of the heart valve, to be deployed from the catheter, to be expanded to contact tissue at an anchor site and to be retrieved back into the catheter after having been expanded.
    Type: Application
    Filed: December 23, 2003
    Publication date: June 23, 2005
    Applicant: Sadra Medical, a Delware Corporation
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider, Jeff Krolik
  • Publication number: 20050137693
    Abstract: The present invention relates to methods for endovascularly replacing a patient's heart valve. In some embodiments, the method includes the steps of endovascularly delivering a replacement valve and an anchor to a vicinity of the heart valve, the anchor having a braid, and expanding the braid to a deployed configuration against the patient's tissue. The braid may be fabricated from a single strand of wire and/or may comprise at least one turn feature.
    Type: Application
    Filed: July 15, 2004
    Publication date: June 23, 2005
    Inventors: Ulrich Haug, Hans Valencia, Robert Geshlider, Tom Saul, Amr Salahieh, Dwight Morejohn
  • Publication number: 20050137701
    Abstract: Apparatus for endovascularly replacing a patient's heart valve, including: a replacement valve adapted to be delivered endovascularly to a vicinity of the heart valve; an expandable anchor adapted to be delivered endovascularly to the vicinity of the heart valve; and a lock mechanism configured to maintain a minimum amount of anchor expansion. The invention also includes a method for endovascularly replacing a patient's heart valve. In some embodiments the method includes the steps of: endovascularly delivering a replacement valve and an expandable anchor to a vicinity of the heart valve; expanding the anchor to a deployed configuration; and locking the anchor in the deployed configuration.
    Type: Application
    Filed: December 23, 2003
    Publication date: June 23, 2005
    Applicant: Sadra Medical
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider
  • Publication number: 20050137702
    Abstract: The present invention relates to an apparatus for replacing a native aortic valve, the apparatus includes an expandable anchor adapted to be endovascularly delivered and secured at a site within the native aortic valve. The expandable anchor has a delivery length in a delivery configuration substantially greater than a deployed length in a deployed configuration. The apparatus may also include and a replacement valve configured to be secured within the anchor.
    Type: Application
    Filed: July 15, 2004
    Publication date: June 23, 2005
    Inventors: Ulrich Haug, Hans Valencia, Robert Geshlider, Tom Saul, Amr Salahieh, Dwight Morejohn
  • Publication number: 20050137695
    Abstract: Apparatus for endovascularly replacing a patient's heart valve, including: a replacement valve adapted to be delivered endovascularly to a vicinity of the heart valve; an expandable anchor adapted to be delivered endovascularly to the vicinity of the heart valve; and a lock mechanism configured to maintain a minimum amount of anchor expansion. The invention also includes a method for endovascularly replacing a patient's heart valve. In some embodiments the method includes the steps of: endovascularly delivering a replacement valve and an expandable anchor to a vicinity of the heart valve; expanding the anchor to a deployed configuration; and locking the anchor in the deployed configuration.
    Type: Application
    Filed: August 3, 2004
    Publication date: June 23, 2005
    Applicant: Sadra Medical
    Inventors: Amr Salahieh, Brian Brandt, Dwight Morejohn, Ulrich Haug, Jean-Pierre Dueri, Hans Valencia, Robert Geshlider