Patents by Inventor Andrew W. Kramer

Andrew W. Kramer 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: 8528564
    Abstract: Systems and methods resist posterior movement of both the tongue and the soft palate/uvula during sleep, thereby keeping an airway open. The systems and methods employ first, second, and third structures. The first structure is sized and configured for placement in or on a tongue. The second structure is sized and configured for placement in or on a region of a soft palate or uvula. The third structure is sized and configured for placement in or on tissue in a desired relationship. anterior of the first and second structures. The first and second structures each includes a ferromagnetic material. The third structure includes a magnetic material that magnetically interacts with both the first and second ferromagnetic materials by attracting both the first and second ferromagnetic materials, thereby resisting posterior movement of both the tongue and the soft palate/uvula.
    Type: Grant
    Filed: November 3, 2006
    Date of Patent: September 10, 2013
    Assignee: Koninklijke Philips N.V.
    Inventors: Joseph Paraschac, Ryan P. Boucher, Edward M. Gillis, Andrew W. Kramer, Scott A. McGill, Lionel M. Nelson, Andres D. Tomas
  • Publication number: 20120240940
    Abstract: Systems and methods are provided for resisting posterior movement of the tongue during sleep, thereby keeping an airway open. The systems and methods employ a first structure that can be placed either in or on a tongue within an oral cavity and/or in a region of hyoid muscle. The first structure includes a ferromagnetic material. The systems and methods employ a second structure that can be placed either in or on external tissue outside the oral cavity and/or in or on external tissue outside the oral cavity in a desired relationship with the first structure. The second structure includes a magnetic material that magnetically interacts with the ferromagnetic material by attracting the ferromagnetic material, thereby resisting posterior movement of the tongue.
    Type: Application
    Filed: September 15, 2011
    Publication date: September 27, 2012
    Applicant: KONINKLIJKE PHILIPS ELECTRONICS N.V.
    Inventors: JOE PARASCHAC, RYAN P. BOUCHER, EDWARD M. GILLIS, OCTAVIAN IANCEA, ANDREW W. KRAMER, BRIAN K. MCCOLLUM, SCOTT A. MCGILL, LIONEL M. NELSON, Andres D. Tomas
  • Patent number: 8020560
    Abstract: Systems and methods are provided for resisting posterior movement of the tongue during sleep, thereby keeping an airway open. The systems and methods employ a first structure that can be placed either in or on a tongue within an oral cavity and/or in a region of hyoid muscle. The first structure includes a ferromagnetic material. The systems and methods employ a second structure that can be placed either in or on external tissue outside the oral cavity and/or in or on external tissue outside the oral cavity in a desired relationship with the first structure. The second structure includes a magnetic material that magnetically interacts with the ferromagnetic material by attracting the ferromagnetic material, thereby resisting posterior movement of the tongue.
    Type: Grant
    Filed: November 3, 2006
    Date of Patent: September 20, 2011
    Assignee: Koninklijke Philips Electronics N.V.
    Inventors: Joe Paraschac, Ryan P. Boucher, Edward M. Gillis, Octavian Iancea, Andrew W. Kramer, Brian K. McCollum, Scott A. McGill, Lionel M. Nelson, Andres D. Tomas
  • Patent number: 7914503
    Abstract: Two renal delivery members have two distal ports that are adapted to be positioned within two renal arteries via their corresponding renal ostia at unique locations along an abdominal aortic wall. A proximal coupler assembly is outside the body and is coupled to deliver material to the two distal ports for bi-lateral renal therapy. One or both of the delivery members may be self-cannulating into the corresponding renal ostium, or may be controllably steered into the respective ostium. Non-occlusive anchors may be coupled with one or both of the delivery members at anchoring positions in the renal artery or abdominal aorta to secure the renal delivery member within the renal artery. Renal-active fluid agents are coupled to the bi-lateral delivery system. Another renal therapy system cannulates a renal vein from the vena cava and controls a retrograde delivery of agents to the respective kidney.
    Type: Grant
    Filed: March 16, 2005
    Date of Patent: March 29, 2011
    Assignee: Angio Dynamics
    Inventors: Harry B. Goodson, IV, Jeffrey M. Elkins, Samir R. Patel, Aurelio Valencia, Ricardo Aboytes, Craig A. Ball, Randy J. Kesten, Andrew W. Kramer, Sam G. Payne, Sophia Pesotchinsky, Michael H. Rosenthal
  • Patent number: 7780628
    Abstract: Methods and apparatus are provided for treating congestive heart by actively or passively enhancing perfusion to the renal arteries. A first embodiment comprises a specially configured balloon catheter and extracorporeal pump, wherein the pump operates in a “once-through” fashion or alternating volume displacement mode. In another embodiment the catheter includes a pair of balloons to isolate a region of the aorta, and a third balloon that directs flow into the renal arteries. In still further embodiments, a stent or cuff having a constricted region is deployed in or around the aorta, respectively, to create a backpressure upstream of the stent or cuff. Methods of enhancing renal perfusion also are provided.
    Type: Grant
    Filed: May 1, 2000
    Date of Patent: August 24, 2010
    Assignee: AngioDynamics, Inc.
    Inventors: Gad Keren, Ascher Shmulewitz, Benjamin Spenser, Michael Arad, Randy J. Kesten, Sophia Pesotchinsky, Michael H. Rosenthal, Andrew W. Kramer, Sam G. Payne
  • Patent number: 7766892
    Abstract: Methods and apparatus are provided for treating congestive heart by actively or passively enhancing perfusion to the renal arteries. A first embodiment comprises a specially configured balloon catheter and extracorporeal pump, wherein the pump operates in a “once-through” fashion or alternating volume displacement mode. In another embodiment the catheter includes a pair of balloons to isolate a region of the aorta, and a third balloon that directs flow into the renal arteries. In still further embodiments, a stent or cuff having a constricted region is deployed in or around the aorta, respectively, to create a backpressure upstream of the stent or cuff. Methods of enhancing renal perfusion also are provided.
    Type: Grant
    Filed: May 21, 2002
    Date of Patent: August 3, 2010
    Inventors: Gad Keren, Ascher Shmulewitz, Benjamin Spenser, Michael Arad, Randy J. Kesten, Sophia Pesotchinsky, Michael H. Rosenthal, Andrew W. Kramer, Sam G. Payne
  • Publication number: 20090044814
    Abstract: Devices, systems, and methods are provided by maintaining tissue regions in desired orientation in or along an airway, e.g., for reducing or preventing snoring and/or sleep disordered breathing events, such as sleep apnea.
    Type: Application
    Filed: June 17, 2008
    Publication date: February 19, 2009
    Applicant: Koninklijke Philips Electronics N.V.
    Inventors: Octavian Iancea, Andrew W. Kramer, Richard S. Lilly, John E. Ortiz, Andres D. Tomas
  • Patent number: 7335192
    Abstract: Methods and apparatus are provided for treating congestive heart by actively or passively enhancing perfusion to the renal arteries. A first embodiment comprises a specially configured balloon catheter and extracorporeal pump, wherein the pump operates in a “once-through” fashion or alternating volume displacement mode. In another embodiment the catheter includes a pair of balloons to isolate a region of the aorta, and a third balloon that directs flow into the renal arteries. In still further embodiments, a stent or cuff having a constricted region is deployed in or around the aorta, respectively, to create a backpressure upstream of the stent or cuff. Methods of enhancing renal perfusion also are provided.
    Type: Grant
    Filed: May 13, 2003
    Date of Patent: February 26, 2008
    Assignee: FlowMedica, Inc.
    Inventors: Gad Keren, Ascher Shmulewitz, Benjamin Spenser, Michael Arad, Randy J Kesten, Sophia Pesotchinsky, Michael H. Rosenthal, Andrew W. Kramer, Sam G. Payne
  • Patent number: 7329236
    Abstract: A catheter for delivering a therapeutic or diagnostic agent to a branch blond vessel of a major blood vessel comprises an elongated shaft having at least one lumen in fluid communication with an agent delivery port in a distal section of the shaft, an expandable tubular member on the distal section of the shaft, and a radially expandable member on the tubular member. The tubular member is configured to extend within the blood vessel up-stream and down-stream of a branch vessel, and has an interior passageway which is radially expandable within the blood vessel to separate blood flow through the blood vessel into an outer blood flow stream exterior to the tubular member and an inner blood flow stream within the interior passageway of the tubular member.
    Type: Grant
    Filed: September 7, 2005
    Date of Patent: February 12, 2008
    Assignee: FlowMedica, Inc.
    Inventors: Randy J. Kesten, Michael H. Rosenthal, Sam G. Payne, Andrew W. Kramer, Sophia Pesotchinsky
  • Publication number: 20040064091
    Abstract: Methods and apparatus are provided for treating congestive heart by actively or passively enhancing perfusion to the renal arteries. A first embodiment comprises a specially configured balloon catheter and extracorporeal pump, wherein the pump operates in a “once-through” fashion or alternating volume displacement mode. In another embodiment the catheter includes a pair of balloons to isolate a region of the aorta, and a third balloon that directs flow into the renal arteries. In still further embodiments, a stent or cuff having a constricted region is deployed in or around the aorta, respectively, to create a backpressure upstream of the stent or cuff. Methods of enhancing renal perfusion also are provided.
    Type: Application
    Filed: May 13, 2003
    Publication date: April 1, 2004
    Inventors: Gad Keren, Ascher Schmulewitz, Benjamin Spenser, Michael Arad, Randy J. Kesten, Sophia Pesotchinsky, Michael H. Rosenthal, Andrew W. Kramer, Sam G. Payne
  • Publication number: 20040064090
    Abstract: Methods and apparatus are provided for treating congestive heart by actively or passively enhancing perfusion to the renal arteries. A first embodiment comprises a specially configured balloon catheter and extracorporeal pump, wherein the pump operates in a “once-through” fashion or alternating volume displacement mode. In another embodiment the catheter includes a pair of balloons to isolate a region of the aorta, and a third balloon that directs flow into the renal arteries. In still further embodiments, a stent or cuff having a constricted region is deployed in or around the aorta, respectively, to create a backpressure upstream of the stent or cuff. Methods of enhancing renal perfusion also are provided.
    Type: Application
    Filed: April 23, 2003
    Publication date: April 1, 2004
    Inventors: Gad Keren, Ascher Schmulewitz, Benjamin Spenser, Michael Arad, Randy J. Kesten, Sophia Pesotchinsky, Michael H. Rosenthal, Andrew W. Kramer, Sam G. Payne
  • Publication number: 20020169413
    Abstract: Methods and apparatus are provided for treating congestive heart by actively or passively enhancing perfusion to the renal arteries. A first embodiment comprises a specially configured balloon catheter and extracorporeal pump, wherein the pump operates in a “once-through” fashion or alternating volume displacement mode. In another embodiment the catheter includes a pair of balloons to isolate a region of the aorta, and a third balloon that directs flow into the renal arteries. In still further embodiments, a stent or cuff having a constricted region is deployed in or around the aorta, respectively, to create a backpressure upstream of the stent or cuff. Methods of enhancing renal perfusion also are provided.
    Type: Application
    Filed: May 21, 2002
    Publication date: November 14, 2002
    Applicant: Libra Medical Systems, Inc.
    Inventors: Gad Keren, Ascher Shmulewitz, Benjamin Spenser, Michael Arad, Randy J. Kesten, Sophia Pesotchinsky, Michael H. Rosenthal, Andrew W. Kramer, Sam G. Payne