Patents Assigned to Evalve, Inc.
  • Patent number: 7682369
    Abstract: The invention comprises a surgical instrument including an external tube (2) and two elongated members (4) positioned in said tube (2), each of which includes a distal end (10a) for capturing one of the two tissue zones (M1, M2) to be attached. The instrument (1) may further comprise a catching member (22, 25) for each tissue (M1, M2) to be attached; a rod (15, 16) linked to each catching member (22, 25) enabling tension to move axially, said rod (15, 16) being separable from said catching member (22, 25) when a tension is exerted on it beyond a certain threshold; and a member (17a) forming a stop for locking axially each catching member (22, 25) during said tension.
    Type: Grant
    Filed: February 14, 2006
    Date of Patent: March 23, 2010
    Assignee: Evalve, Inc.
    Inventor: Jacques Séguin
  • Patent number: 7682319
    Abstract: The present invention provides devices, systems, methods and kits for endoscopically accessing a body cavity and providing a directed pathway toward a target tissue within the cavity. The directed pathway is provided by an access sheath which is positioned in a desired configuration, generally directed toward the target tissue. Depending on the location of the target tissue and the desired angle of approach, the access sheath may be required to maintain one or more curves in one or more planes to properly direct the interventional devices. In addition, the access sheath has a locking feature to hold the sheath in place and maintain the desired configuration. Interventional devices may then be passed through the sheath to the target tissue.
    Type: Grant
    Filed: February 25, 2009
    Date of Patent: March 23, 2010
    Assignee: Evalve, Inc.
    Inventors: Brian B. Martin, Amy R. Raatikka, Troy L. Thornton, Ferolyn T. Powell
  • Patent number: 7666204
    Abstract: Devices, systems, methods and kits are provided for endoscopically accessing a body cavity and providing a directed pathway toward a target tissue within the cavity. The directed pathway is provided by a multi-catheter guiding system which is positioned in a desired configuration, generally directed toward the target tissue. Interventional devices may then be passed through the guiding system to the target tissue. Depending on the location of the target tissue and the desired angle of approach, the guiding system may be required to maintain one or more curves in one or more planes to properly direct the interventional devices. The multi-catheter guiding system of the present invention comprises an outer guiding catheter and a coaxially positioned inner guiding catheter, each of which independently form curvatures so that together the curves properly direct the interventional device.
    Type: Grant
    Filed: May 19, 2003
    Date of Patent: February 23, 2010
    Assignee: Evalve, Inc.
    Inventors: Troy L. Thornton, Brian B. Martin, Amy R. Raatikka, Yen C. Liao, William D. Kolosi, Pedro Lucatero
  • Patent number: 7655015
    Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.
    Type: Grant
    Filed: December 21, 2007
    Date of Patent: February 2, 2010
    Assignee: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Alfred H. Raschdorf, Jr., Jaime E. Sarabia, Sylvia Wen Chin Fan, Kent D. Dell, Jan Komtebedde, Ferolyn T. Powell
  • Publication number: 20100022823
    Abstract: Devices, systems and methods are provided for stabilizing and grasping tissues such as valve leaflets, assessing the grasp of these tissues, approximating and fixating the tissues, and assessing the fixation of the tissues to treat cardiac valve regurgitation, particularly mitral valve regurgitation.
    Type: Application
    Filed: October 7, 2009
    Publication date: January 28, 2010
    Applicant: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Troy L. Thornton, Alfred H. Raschdorf, Jaime E. Sarabia, John P. Madden, Ferolyn T. Powell, Brian B. Martin, Sylvia Wen-Chin Fan, Jan Komtebedde, Yen C. Liao
  • Publication number: 20100016958
    Abstract: The methods, devices, and systems are provided for performing endovascular repair of atrioventricular and other cardiac valves in the heart. Regurgitation of an atrioventricular valve, particularly a mitral valve, can be repaired by modifying a tissue structure selected from the valve leaflets, the valve annulus, the valve chordae, and the papillary muscles. These structures may be modified by suturing, stapling, snaring, or shortening, using interventional tools which are introduced to a heart chamber. Preferably, the tissue structures will be temporarily modified prior to permanent modification. For example, opposed valve leaflets may be temporarily grasped and held into position prior to permanent attachment.
    Type: Application
    Filed: September 24, 2009
    Publication date: January 21, 2010
    Applicant: Evalve, Inc.
    Inventors: Frederick G. St. Goar, James I-Lin Fann, Mark E. Deem, Hanson S. Gifford, III, Martin S. Dieck, Brian B. Martin, Sylvia Wen-Chin Fan, Eric A. Goldfarb, Kent D. Dell, Ferolyn T. Powell
  • Publication number: 20090326567
    Abstract: Devices and methods are provided for tissue approximation and repair. Fixation devices comprise a pair of elements each having a first end, a free end opposite the first end, and an engagement surface therebetween for engaging the tissue, the first ends being moveable between an open position wherein the free ends are spaced apart and a closed position wherein the free ends are closer together with the engagement surfaces generally facing each other. The fixation devices also include a locking mechanism coupled to the elements for locking the elements in place. The devices and methods find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions. The invention is particularly useful in procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site.
    Type: Application
    Filed: September 4, 2009
    Publication date: December 31, 2009
    Applicant: Evalve, Inc.
    Inventors: ERIC A. GOLDFARB, JAIME E. SARABIA, ALFRED H. RASCHDORF, JOHN P. MADDEN
  • Patent number: 7635329
    Abstract: Devices, systems and methods are provided for stabilizing and grasping tissues such as valve leaflets, assessing the grasp of these tissues, approximating and fixating the tissues, and assessing the fixation of the tissues to treat cardiac valve regurgitation, particularly mitral valve regurgitation.
    Type: Grant
    Filed: September 27, 2005
    Date of Patent: December 22, 2009
    Assignee: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Troy L. Thornton, Alfred H. Raschdorf, Jaime E. Sarabia, John P. Maddan, Ferolyn Powell, Brian B. Martin, Sylvia Wen-Chin Fan, Jan Komtebedde, Yen C. Liao
  • Patent number: 7608091
    Abstract: The methods, devices, and systems are provided for performing endovascular repair of atrioventricular and other cardiac valves in the heart. Regurgitation of an atrioventricular valve, particularly a mitral valve, can be repaired by modifying a tissue structure selected from the valve leaflets, the valve annulus, the valve chordae, and the papillary muscles. These structures may be modified by suturing, stapling, snaring, or shortening, using interventional tools which are introduced to a heart chamber. Preferably, the tissue structures will be temporarily modified prior to permanent modification. For example, opposed valve leaflets may be temporarily grasped and held into position prior to permanent attachment.
    Type: Grant
    Filed: July 3, 2003
    Date of Patent: October 27, 2009
    Assignee: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Mark E. Deem, Kent D. Dell, Martin S. Dieck, Sylvia Wen-Chin Fan, Hanson S. Gifford, III, Brain B. Martin, Ferolyn T. Powell, Frederick G. St. Goar
  • Patent number: 7604646
    Abstract: Devices, systems and methods are provided for tissue approximation and repair at treatment sites. In particular, fixation devices are provided comprising a pair of elements each having a first end, a free end opposite the first end, and an engagement surface therebetween for engaging the tissue, the first ends being moveable between an open position wherein the free ends are spaced apart and a closed position wherein the free ends are closer together with the engagement surfaces generally facing each other. The fixation devices also include a locking mechanism coupled to the elements for locking the elements in place. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues.
    Type: Grant
    Filed: May 16, 2005
    Date of Patent: October 20, 2009
    Assignee: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Jaime E. Sarabia, Alfred H. Raschdorf, John P. Madden
  • Patent number: 7563273
    Abstract: The present invention provides methods and devices for grasping, and optional repositioning and fixation of the valve leaflets to treat cardiac valve regurgitation, particularly mitral valve regurgitation. Such grasping will typically be atraumatic providing a number of benefits. For example, atraumatic grasping may allow repositioning of the devices relative to the leaflets and repositioning of the leaflets themselves without damage to the leaflets. However, in some cases it may be necessary or desired to include grasping which pierces or otherwise permanently affects the leaflets. In some of these cases, the grasping step includes fixation.
    Type: Grant
    Filed: March 17, 2004
    Date of Patent: July 21, 2009
    Assignee: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Kent D. Dell, Sylvia Wen-Chin Fan, Brian B. Martin, Ferolyn T. Powell, Alfred H. Raschdorf, Troy L. Thornton
  • Patent number: 7563267
    Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.
    Type: Grant
    Filed: May 19, 2003
    Date of Patent: July 21, 2009
    Assignee: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Alfred H. Raschdorf, Jr., Jaime E. Sarabia, Sylvia Wen Chin Fan, Kent D. Dell, Jan Komtebedde, Ferolyn T. Powell
  • Publication number: 20090163934
    Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.
    Type: Application
    Filed: February 26, 2009
    Publication date: June 25, 2009
    Applicant: Evalve, Inc.
    Inventors: Alfred H. Raschdorf, JR., Troy L. Thornton, Theodore W. Ketai
  • Publication number: 20090156995
    Abstract: The present invention provides devices, systems, methods and kits for endoscopically accessing a body cavity and providing a directed pathway toward a target tissue within the cavity. The directed pathway is provided by an access sheath which is positioned in a desired configuration, generally directed toward the target tissue. Depending on the location of the target tissue and the desired angle of approach, the access sheath may be required to maintain one or more curves in one or more planes to properly direct the interventional devices. In addition, the access sheath has a locking feature to hold the sheath in place and maintain the desired configuration. Interventional devices may then be passed through the sheath to the target tissue.
    Type: Application
    Filed: February 25, 2009
    Publication date: June 18, 2009
    Applicant: Evalve, Inc.
    Inventors: Brian B. Martin, Amy R. Raatikka, Troy L. Thornton, Ferolyn T. Powell
  • Publication number: 20080183194
    Abstract: The present invention provides methods and devices for grasping, and optional repositioning and fixation of the valve leaflets to treat cardiac valve regurgitation, particularly mitral valve regurgitation. Such grasping will typically be atraumatic providing a number of benefits. For example, atraumatic grasping may allow repositioning of the devices relative to the leaflets and repositioning of the leaflets themselves without damage to the leaflets. However, in some cases it may be necessary or desired to include grasping which pierces or otherwise permanently affects the leaflets. In some of these cases, the grasping step includes fixation.
    Type: Application
    Filed: October 30, 2007
    Publication date: July 31, 2008
    Applicant: Evalve, Inc.
    Inventors: Eric A. Goldfarb, Kent D. Dell, Sylvia Wen-Chin Fan, Brian B. Martin, Ferolyn T. Powell, Alfred H. Raschdorf, Troy L. Thornton
  • Publication number: 20080167714
    Abstract: The methods, devices, and systems are provided for performing endovascular repair of atrioventricular and other cardiac valves in the heart. Regurgitation of an atrioventricular valve, particularly a mitral valve, can be repaired by modifying a tissue structure selected from the valve leaflets, the valve annulus, the valve chordae, and the papillary muscles. These structures may be modified by suturing, stapling, snaring, or shortening, using interventional tools which are introduced to a heart chamber. Preferably, the tissue structures will be temporarily modified prior to permanent modification. For example, opposed valve leaflets may be temporarily grasped and held into position prior to permanent attachment.
    Type: Application
    Filed: March 24, 2008
    Publication date: July 10, 2008
    Applicant: Evalve, Inc.
    Inventors: Frederick G. St. Goar, James I-Lin Fann, Mark E. Deem, Hanson S. Gifford, Martin S. Dieck, Brian B. Martin, Sylvia Wen-Chin Fan, Eric A. Goldfarb, Kent D. Dell, Ferolyn T. Powell
  • Publication number: 20080097489
    Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.
    Type: Application
    Filed: December 21, 2007
    Publication date: April 24, 2008
    Applicant: Evalve, Inc.
    Inventors: ERIC GOLDFARB, Alfred Raschdorf, Jaime Sarabia, Sylvia Wen Chin Fan, Kent Dell, Jan Komtebedde, Ferolyn Powell
  • Publication number: 20080051807
    Abstract: The methods, devices, and systems are provided for performing endovascular repair of atrioventricular and other cardiac valves in the heart. Regurgitation of an atrioventricular valve, particularly a mitral valve, can be repaired by modifying a tissue structure selected from the valve leaflets, the valve annulus, the valve chordae, and the papillary muscles. These structures may be modified by suturing, stapling, snaring, or shortening, using interventional tools which are introduced to a heart chamber. Preferably, the tissue structures will be temporarily modified prior to permanent modification. For example, opposed valve leaflets may be temporarily grasped and held into position prior to permanent attachment.
    Type: Application
    Filed: October 29, 2007
    Publication date: February 28, 2008
    Applicant: Evalve, Inc.
    Inventors: Frederick St. Goar, James I-Lin Fann, Mark Deem, Hanson Gifford, Martin Dieck, Brian Martin, Sylvia Fan, Eric Goldfarb, Kent Dell, Ferolyn Powell
  • Publication number: 20080051703
    Abstract: Devices, systems, methods and kits are provided for endoscopically accessing a body cavity and providing a directed pathway toward a target tissue within the cavity. The directed pathway is provided by a multi-catheter guiding system which is positioned in a desired configuration, generally directed toward the target tissue. Interventional devices may then be passed through the guiding system to the target tissue. Depending on the location of the target tissue and the desired angle of approach, the guiding system may be required to maintain one or more curves in one or more planes to properly direct the interventional devices. The multi-catheter guiding system of the present invention comprises an outer guiding catheter and a coaxially positioned inner guiding catheter, each of which independently form curvatures so that together the curves properly direct the interventional device.
    Type: Application
    Filed: October 30, 2007
    Publication date: February 28, 2008
    Applicant: Evalve, Inc.
    Inventors: Troy Thornton, Brian Martin, Amy Raatikka, Yen Liao, Williiam Kolosi, Pedro Lucatero
  • Patent number: 7288097
    Abstract: The invention comprises a surgical instrument including an external tube (2) and two elongated members (4) positioned in said tube (2), each of which includes a distal end (10a) for capturing one of the two tissue zones (M1, M2) to be attached. The instrument (1) may further comprise a catching member (22, 25) for each tissue (M1, M2) to be attached; a rod (15, 16) linked to each catching member (22, 25) enabling tension to move axially, said rod (15, 16) being separable from said catching member (22, 25) when a tension is exerted on it beyond a certain threshold; and a member (17a) forming a stop for locking axially each catching member (22, 25) during said tension.
    Type: Grant
    Filed: June 24, 2004
    Date of Patent: October 30, 2007
    Assignee: Evalve, Inc.
    Inventor: Jacques Séguin