Patents Assigned to Abbott Cardiovascular Systems, Inc.
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Publication number: 20210128874Abstract: A guidewire for use in intravascular procedures has an elongated core member including a proximal core section having a uniform diameter. One or more parabolic grind profile sections extend distally from the distal end of the proximal core section and provide a linear change in bending stiffness and a high degree of torque to the distal portion of the guidewire.Type: ApplicationFiled: October 31, 2019Publication date: May 6, 2021Applicant: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventor: Raymundo Rodriguez
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Patent number: 10980531Abstract: A closure device for closing an opening in tissue is provided. The closure device includes an elongate member through which needles may be deployed. The closure device also includes a foot portion having one or more feet slidably mounted relative thereto. The feet are movable between a deployed position and a delivery position. The feet include cuffs removably mounted therein, with sutures connected between the cuffs. When the feet are in the deployed position and the needles are advanced, the needles securely engage the cuffs and draw the cuffs and suture through the lumen wall so that the opening in the lumen wall can be closed with the sutures.Type: GrantFiled: August 1, 2018Date of Patent: April 20, 2021Assignee: ABBOTT CARDIOVASCULAR SYSTEMS, INC.Inventors: Wouter E. Roorda, Douglas H. Mehl, Rizza A. Garcia, Timothy C. Reynolds, Dinorah V. Merrill, Dawn Ma, David J. Milazzo, Aaron M. Fortson
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Patent number: 10980981Abstract: A procedural sheath and methods of use that assists in maintaining a fluid path while the procedural sheath is positioned within a vascular conduit of a patient. The procedural sheath includes one or more channels extending longitudinally along a working length of the body of the sheath. Each channel includes one or more fluid paths configured to allow blood to flow from the vascular conduit into a device receiving lumen of the sheath. One or more elongate members selectively coupled to the body operatively cooperate with the channels to fluidly control fluid access into the device receiving lumen through the fluid paths.Type: GrantFiled: May 1, 2018Date of Patent: April 20, 2021Assignee: ABBOTT CARDIOVASCULAR SYSTEMS, INCInventor: Aaron M. Fortson
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Patent number: 10967556Abstract: A medical device includes a balloon expanded scaffold (or stent) crimped to a catheter having a balloon. The scaffold is crimped to the balloon by a process that includes using protective polymer sheaths or sheets during crimping, and resetting the sheaths or sheets during the crimping to avoid or minimize interference between the polymer material and scaffold struts as the scaffold is reduced in size. Balloon pressure is adjusted when the polymer material is reset.Type: GrantFiled: June 11, 2018Date of Patent: April 6, 2021Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Karen J. Wang, Boyd V. Knott, Edward P. Garcia
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Patent number: 10952852Abstract: The invention provides medical devices, systems and methods for tissue approximation and repair and in particular to reduce mitral regurgitation by means of improved coaptation. 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 cardiovascular system, heart, 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.Type: GrantFiled: February 24, 2017Date of Patent: March 23, 2021Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Casey M. Barbarino, Benjamin L. Lee, Chad Abunassar
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Publication number: 20210031001Abstract: A method for managing a guidewire in preparation for a surgical operation, comprising attaching a block of resilient polymer to a coiled tube which contains a guidewire; attaching to the block of resilient polymer a card having printed information concerning the guidewire on a planar surface of the card; removing the guidewire from the coiled tube; removing the block of resilient polymer from the coiled tube while keeping the card having printed information attached to the block of resilient polymer; coiling the guidewire into a flat spiral form; capturing, in a slot formed in the block of resilient polymer, a plurality of portions of the guidewire, which portions are adjacent to and parallel with each other, thereby maintaining the guidewire in the flat spiral form.Type: ApplicationFiled: August 2, 2019Publication date: February 4, 2021Applicant: Abbott Cardiovascular Systems Inc.Inventors: Lauren Coatsworth, Jimmy L. Quijas
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Patent number: 10893941Abstract: The present disclosure describes tissue gripping devices, systems, and methods for gripping mitral valve tissue during treatment of a mitral valve and while a tissue fixation device is implanted in the mitral valve. The tissue gripping device includes a flexible member and one or more tissue gripping members coupled to one or more arms of the flexible member. The flexible member is formed from a shape-memory material, such as nitinol, and the tissue gripping member(s) are formed from a material that is more rigid than the shape-memory material. The tissue gripping member(s) are attached to the flexible member by threading or looping suture lines around and/or through the tissue gripping member(s) and the flexible member and/or by applying a cover material to the tissue gripping device to hold the tissue gripping member(s) against the flexible member.Type: GrantFiled: July 31, 2018Date of Patent: January 19, 2021Assignee: Abbott Cardiovascular Systems, Inc.Inventor: Michael F. Wei
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Publication number: 20210000625Abstract: An expandable stent for implantation in a body lumen, such as an artery, is disclosed. The stent consists of a plurality of radially expandable cylindrical rings generally aligned on a common longitudinal stent axis and interconnected by one or more interconnecting links placed so that the stent is flexible in the longitudinal direction. The link pattern is optimized to enhance longitudinal flexibility and high longitudinal strength compression of the stent.Type: ApplicationFiled: July 3, 2019Publication date: January 7, 2021Applicant: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Diem Ta, Erik Eli, Senthil Eswaran
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Publication number: 20200398031Abstract: A torque device for gripping and manipulating a guidewire for advancing the guidewire into a patient's vascular system. The torque device is configured for single-handed use and can be opened for repositioning the torque device relative to the guidewire and closed for gripping the guidewire to prevent axial and rotational movement relative to the guidewire. The torque device grips the guidewire at multiple spaced apart locations on the guidewire.Type: ApplicationFiled: June 19, 2019Publication date: December 24, 2020Applicant: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Puneet Kamal Singh Gill, Raymundo Rodriguez, Jonathan Durcan, Robert Hayzelden, Michael Green
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Patent number: 10856985Abstract: A device for adjusting a shape of a coronary sinus in a heart of a patient, the device comprising a flexible tube having: an outer wall extending between a proximal end and a distal end; a first bore extending from the proximal end to the distal end; a proximal flange attached to the proximal end; a distal flange attached to the distal end; wherein, the outer wall includes at least one accordion-like hinge region.Type: GrantFiled: November 21, 2017Date of Patent: December 8, 2020Assignee: Abbott Cardiovascular Systems Inc.Inventor: Michael F. Wei
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Publication number: 20200360018Abstract: 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: ApplicationFiled: August 7, 2020Publication date: November 19, 2020Applicant: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Kent DELL, Theodore KETAI, Tanmay MISHRA, Stephanie JONES, Jacob GREENBERG, Michael HONG, Daniel HALE, Francisco VALENCIA, Steven TYLER
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Patent number: 10806439Abstract: Devices for closing a passage through tissue communicating with a body lumen. The device may include an elongate body, a sheath disposed at the distal end of the device for disposition within a body lumen, a hollow needle disposed within a needle lumen of the body, the needle being selectively advancable through the needle lumen, a suture-anchor ejection mandrel disposed within the hollow needle that is also selectively advancable through the hollow needle, a suture-anchor and suture disposed within the hollow needle, a distal end of the suture attached to the suture anchor for ejection out the hollow needle by the mandrel. A needle guide disposed between the sheath and proximal end of the body may include a needle port through which the needle can exit. A hemostatic plug is disposed over the needle port so as to be penetrated by the needle upon exiting the port.Type: GrantFiled: September 7, 2017Date of Patent: October 20, 2020Assignee: Abbott Cardiovascular Systems, Inc.Inventor: Aaron M. Fortson
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Patent number: 10792039Abstract: 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: GrantFiled: November 18, 2019Date of Patent: October 6, 2020Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Kent Dell, Theodore Ketai, Tanmay Mishra, Stephanie Jones, Jacob Greenberg, Michael Hong, Daniel Hale, Francisco Valencia, Steven Tyler
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Patent number: 10772621Abstract: A suture management member including a body being elongate in a first direction and having a suture-receiving recess in a second direction transverse to the first direction. The suture-receiving recess extends partially through the body and separates the body into a first portion and a second portion. The first portion is being biased towards the second portion to securely retaining a suture within the suture-receiving recess.Type: GrantFiled: February 2, 2018Date of Patent: September 15, 2020Assignee: Abbott Cardiovascular Systems, Inc.Inventors: Aaron M. Fortson, David J. Milazzo
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Patent number: 10748659Abstract: Assessing a risk associated with implantation of a drug delivery device configured to treat blood vessels, is described. Particularly, devices, methods, and systems for assessing the risk of stent thrombosis, prior to implantation, for determining the appropriate stent and/or medication regimen for a particular patient, and continuing to assess the risk of stent thrombosis after implantation, thereby improving the efficacy of the therapy, are described. Other embodiments are described and claimed.Type: GrantFiled: March 10, 2015Date of Patent: August 18, 2020Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Weiying Zhao, Dong Li
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Patent number: 10743876Abstract: 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: GrantFiled: August 14, 2019Date of Patent: August 18, 2020Assignee: Abbott Cardiovascular Systems Inc.Inventors: Kent Dell, Theodore Ketai, Tanmay Mishra, Stephanie Jones, Jacob Greenberg, Michael Hong, Daniel Hale, Francisco Valencia, Steven Tyler
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Patent number: 10743864Abstract: A suturing system is provided. In an embodiment, the suturing system includes a sheath having a proximal end and a distal end. A needle is disposed distal the sheath in a pre-deployed configuration with a needle tip of the needle being orientated proximally towards the sheath. A body is disposed within the sheath, the body comprising a guide reducing an outer cross-sectional dimension of the body at the guide and forming a space between the body and the sheath, the guide being configured to receive the needle and direct the needle proximally toward the proximal end of the sheath. A suture is attached to the needle.Type: GrantFiled: April 10, 2018Date of Patent: August 18, 2020Assignee: Abbott Cardiovascular Systems, Inc.Inventors: Laveille Kao Voss, Aaron M. Fortson, Wouter E. Roorda, Stephanie Henze, Kristopher M. Konawalik, Leah M. Davis
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Patent number: 10717145Abstract: The present disclosure is directed to a multi-segment device, such as an intravascular guide wire. The multi-segment device includes an elongate first portion comprising a first metallic material, an elongate second portion comprising a different metallic material, the first and second elongate portions being directly joined together end to end by a solid-state weld, and a heat affected zone surrounding an interface of the weld where the first and second portions are joined together, wherein the heat affected zone has an average thickness of less than about 0.20 mm.Type: GrantFiled: April 24, 2017Date of Patent: July 21, 2020Assignee: Abbott Cardiovascular Systems, Inc.Inventors: John A. Simpson, Jeffrey F. Dooley, Matthew J. Gillick
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Publication number: 20200222067Abstract: A guidewire for use in penetrating through complex and stenosed lesions. The distal tip of the guidewire has a roughened surface to increase frictional engagement with calcified and fibrous tissue to increase the penetration of the distal tip and the guidewire into and through the lesion and reduce the likelihood of deflection of the guidewire tip. The average surface roughness of the distal tip is in the range from 1 micron to 200 microns.Type: ApplicationFiled: January 10, 2019Publication date: July 16, 2020Applicant: Abbott Cardiovascular Systems Inc.Inventors: Puneet Kamal Singh Gill, Jonathan Durcan, Jakub Truty, Matthew J. Chludzinski, John Simpson
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Patent number: 10709876Abstract: Catheter includes an outer shaft member having a proximal section and a distal outer member. The outer shaft has an inflation lumen defined therethrough. A balloon is in fluid communication with the inflation lumen and has a proximal balloon shaft, a proximal cone portion, a working length, a distal cone portion, and a distal balloon shaft. Catheter also includes a monolithic inner tubular member extending from the outer shaft proximal section through the distal outer member and through the balloon to form a tip. The distal balloon shaft has an inner diameter and comprises a distal seal portion coupled to the inner tubular member and a proximal portion free of attachment to the inner tubular member. The length of the proximal portion of the distal balloon shaft is at least about two times the inner diameter of the distal balloon shaft. Methods of making a catheter are also provided.Type: GrantFiled: September 7, 2018Date of Patent: July 14, 2020Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Hector Torres, Bruce Wilson, Thomas Haslinger