WO2003051231A2 - Delivery mechanism for embolic filter - Google Patents
Delivery mechanism for embolic filter Download PDFInfo
- Publication number
- WO2003051231A2 WO2003051231A2 PCT/US2002/038764 US0238764W WO03051231A2 WO 2003051231 A2 WO2003051231 A2 WO 2003051231A2 US 0238764 W US0238764 W US 0238764W WO 03051231 A2 WO03051231 A2 WO 03051231A2
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- adaptor
- accordance
- guidewire
- coupling
- struts
- Prior art date
Links
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
- A61F2/01—Filters implantable into blood vessels
- A61F2/0108—Both ends closed, i.e. legs gathered at both ends
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
- A61F2/01—Filters implantable into blood vessels
- A61F2002/018—Filters implantable into blood vessels made from tubes or sheets of material, e.g. by etching or laser-cutting
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2230/00—Geometry of prostheses classified in groups A61F2/00 - A61F2/26 or A61F2/82 or A61F9/00 or A61F11/00 or subgroups thereof
- A61F2230/0002—Two-dimensional shapes, e.g. cross-sections
- A61F2230/0028—Shapes in the form of latin or greek characters
- A61F2230/005—Rosette-shaped, e.g. star-shaped
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2230/00—Geometry of prostheses classified in groups A61F2/00 - A61F2/26 or A61F2/82 or A61F9/00 or A61F11/00 or subgroups thereof
- A61F2230/0063—Three-dimensional shapes
- A61F2230/0073—Quadric-shaped
- A61F2230/008—Quadric-shaped paraboloidal
Definitions
- the present invention pertains to field of distal protection devices. More particularly, the present invention pertains to devices and methods for coupling a distal protection filter to an elongate shaft.
- Heart disease is a major problem in the United States and throughout the world. Conditions such as atherosclerosis result in blood vessels becoming blocked or narrowed. This blockage can result in lack of oxygenation of the heart, which has significant consequences since the heart muscle must be well oxygenated in order to maintain its blood pumping action.
- Occluded, stenotic, or narrowed blood vessels may be treated with a number of relatively non-invasive medical procedures including percutaneous transluminal angioplasty (PTA), percutaneous transluminal coronary angioplasty (PTCA), and atherectomy.
- Angioplasty techniques typically involve the use of a balloon catheter. The balloon catheter is advanced over a guidewire such that the balloon is positioned adjacent a stenotic lesion. The balloon is then inflated and the restriction of the vessel is opened. During an atherectomy procedure, the stenotic lesion may be mechanically cut away from the blood vessel wall using an atherectomy catheter.
- embolic debris can be separated from the wall of the blood vessel. If this debris enters the circulatory system, it could block other vascular regions including the neural and pulmonary vasculature, both of which are highly undesirable. During angioplasty procedures, stenotic debris may also break loose due to manipulation of the blood vessel. Because of this debris, a number of devices, termed distal protection devices, have been developed to filter out this debris.
- the present invention pertains to adaptors for coupling devices to an elongate shaft. More particularly, the present invention pertains to adaptors for coupling a distal protection filter to a guidewire. In addition, the use of an adaptor in accordance with the present disclosure may allow a user to couple a distal protection filter to a number of different guidewires.
- the adaptor may include a proximal end, a distal end, and a lumen adapted and configured to receive a guidewire.
- the adaptor may be coupled to the guidewire by a number of methods such as solder, bronze, adhesive or other technique.
- the adaptor may also be placed on the wire such that it can be slide along the wire to provide a floating filter.
- a holding receptacle may be disposed proximate of the distal end of the adaptor.
- the holding receptacle includes one or more grooves adapted to receive struts of a distal protection filter.
- a cap can be slidably disposed about the adaptor such that the cap can be disposed over the holding receptacle to substantially fix the struts in place and, thus, couple the filter to the guidewire.
- Figure 1 is a perspective view of a tubular adaptor for coupling a distal protection filter to an elongate shaft;
- Figure 2 is a perspective view of a tubular adaptor having a distal protection filter coupled thereto;
- Figure 3 is a perspective view of the tubular adaptor and filter in Figure 2, wherein a cap is disposed over a portion of the struts;
- Figure 4 is a partial cross sectional view of an alternate adaptor for coupling a distal protection filter to an elongate shaft.
- FIG. 1 is a perspective view of a tubular adaptor 10 for coupling a distal protection filter to an elongate shaft.
- Adaptor 10 simplifies the process of coupling devices to a guidewire by permitting a user to couple a device to a number of different guidewires.
- Adaptor 10 may be generally cylindrical in shape and includes a proximal end 12, a distal end 14, and a lumen 16 extending therethrough.
- Lumen 16 can be adapted and configured for having an elongate shaft or guidewire disposed therein.
- the guidewire may be disposed within the lumen of a seal tube 22 as discussed below.
- Adaptor 10 may be comprised of a generally polymeric material, a metal or metal alloy, combinations thereof, or other suitable materials.
- adaptor 10 can be coupled to a guidewire by using one of several known techniques. For example, adaptor 10 may be crimped on the guidewire, soldered, brazed, laser or heat bonded, adhesively bonded, etc. If adaptor 10 is not fixedly attached to a wire or guidewire by adhesive or the like, adaptor 10 may be merely slidably and/or rotatably attached to the guidewire.
- the inside diameter of lumen 16 may be sized to allow a particular guidewire to be disposed therein.
- lumen 16 may having an inside diameter of about 0.005 to 0.020 inches or more.
- the overall profile of adaptor 10 should be sufficiently small to allow navigation through the vasculature of a patient, and may be sufficiently small enough to fit within the lumen of a guide catheter or other suitable device for delivery.
- Adaptor 10 can include a holding receptacle 18.
- Holding receptacle 18 is generally cylindrical and includes one or more grooves 20 formed therein. Grooves 20 are adapted to receive at least a portion of a strut of a distal protection filter.
- a seal tube 22 having an inner lumen 24 extending therethrough may be disposed within lumen 16.
- Seal tube 22 may be comprised of a thermoplastic elastomer such as Kraton® or other suitable materials that may substantially prevent fluid flow through lumen 16 (or inner lumen 24). Seal tube 22 may allow adaptor 10 to become substantially sealed to a guidewire, for example by friction fit. In addition, the inclusion of seal tube 22 may prevent fluid from passing through open portions of adaptor 10.
- seal tube 22 may be used to accommodate a number of wire or guidewires.
- FIG. 2 is a perspective view of tubular adaptor 10 coupling a distal protection filter 26 to a guidewire 28.
- Filter 26 may be comprised of a polyurethane sheet disposed over a filter frame 27.
- the polyurethane sheet has at least one opening that may be, for example, formed by known laser techniques. The holes or openings are sized to allow blood flow therethrough but restrict flow of debris or emboli floating in the body lumen or cavity.
- Filter 26 may be generally cone-shaped, and have a proximal end 30 and a distal end 32.
- Distal end 32 may be a narrow, "V- shaped end and proximal end 30 may have a relatively wide opening or mouth.
- Filter 26 operates between a closed collapsed profile and an open radially- expanded deployed profile for collecting debris in a body lumen. In an expanded profile, the mouth is opened and the frame expands radially outwardly to support the mouth. A number of differing configurations of filter 26 may be substituted without departing from the spirit of the invention.
- a portion of the filter frame 27 may include radiopaque materials.
- Radiopaque materials are understood to be capable of producing a relatively bright image on a fluoroscopy screen or another imaging technique during an intravascular procedure. This relatively bright image aids the user of distal protection assembly 10 in determining the location of filter 26.
- Radiopaque materials may include, but are not limited to, gold, platinum, tungsten alloy, and plastic material loaded with a radiopaque filler.
- Filter frame 27 includes one or more struts 34.
- Struts 34 are adapted and configured to have at least a portion thereof disposed within grooves 20.
- struts 34 may include flared proximal ends 36 that may extend proximally of holding receptacle 18 when struts 34 are disposed within grooves 20.
- flared proximal ends 36 may serve to help hold struts 34 in grooves 20 and otherwise prevent distal movement of struts 34 (and, thus, movement of filter 26) relative to adaptor 10.
- a cap 38 can be slidably disposed along the length of adaptor 10.
- Cap 38 may be generally conical and be adapted and configured to slide along adaptor 10 until cap 38 engages holding receptacle 18. Sliding cap 38 over holding receptacle 18 couples filter 26 to guidewire 28.
- adaptor 10 If adaptor 10 is placed on wire 28 as shown in Figure 2, but is not fixedly attached thereto, it will be free to rotate and slide along the wire.
- This floating filter type design allows wire 28 to be rotated or translated without rotating or translating filter 26 when deployed in a body lumen.
- Figure 3 is a perspective view of tubular adaptor 10 and filter 26 wherein cap 38 is disposed over a portion of struts 34 to couple filter 26 to guidewire 28.
- cap 38 may be fixed in place, for example by adhesive.
- cap 38 may be fixed by crimping, laser or heat bonding, etc.
- cap 38 may include a deflectable flange adapted to mate with a ring shank of holding receptacle 18.
- a number different methods may be used to fix cap 38 relative to holding receptacle 18 without departing from the spirit of the invention.
- struts 34 may help to securely couple filter 26 to guidewire 28.
- flared proximal ends 36 would substantially prevent struts 34 from being displaced from grooves 20.
- struts 34 may have a second set of flared surfaces spaced from ends 36 a distance greater than or equal to the length of channels defined by grooves 20.
- struts 34 may be fixed within grooves 20 by multiple sets of flares on opposite ends of grooves 20.
- grooves 20 may include one or more depressions and struts 34 may include an equal number of projections. According to this embodiment, the projections and the depression would be designed to mate and, thus, couple filter 26 to guidewire 28.
- Figure 4 is a partial cross-sectional view of an alternate adaptor 110 that is essentially the same in form and function as adaptor 10 but further including one or more bearings 140 disposed proximate seal tube 122. More particularly, bearings 140 may be disposed near where holding receptacle 118 and cap 138 couple struts 34 to adaptor 110. Bearings 140 allow adaptor 110 to rotate (along with filter 26) about seal tube 122. Analogously, bearings 140 may allow guidewire 28 and seal tube 122 (i.e., when guidewire 28 and seal tube 122 are coupled) to rotate within adaptor 110 without altering the position of filter 26.
Abstract
Description
Claims
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
AU2002346657A AU2002346657A1 (en) | 2001-12-18 | 2002-12-05 | Delivery mechanism for embolic filter |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US10/025,705 US6793666B2 (en) | 2001-12-18 | 2001-12-18 | Distal protection mechanically attached filter cartridge |
US10/025,705 | 2001-12-18 |
Publications (2)
Publication Number | Publication Date |
---|---|
WO2003051231A2 true WO2003051231A2 (en) | 2003-06-26 |
WO2003051231A3 WO2003051231A3 (en) | 2004-02-12 |
Family
ID=21827609
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/US2002/038764 WO2003051231A2 (en) | 2001-12-18 | 2002-12-05 | Delivery mechanism for embolic filter |
Country Status (3)
Country | Link |
---|---|
US (3) | US6793666B2 (en) |
AU (1) | AU2002346657A1 (en) |
WO (1) | WO2003051231A2 (en) |
Cited By (11)
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WO2006076890A1 (en) * | 2005-01-20 | 2006-07-27 | Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. | Catheter for the transvascular implantation of prosthetic heart valves |
US9510947B2 (en) | 2011-10-21 | 2016-12-06 | Jenavalve Technology, Inc. | Catheter system for introducing an expandable heart valve stent into the body of a patient |
US9867694B2 (en) | 2013-08-30 | 2018-01-16 | Jenavalve Technology Inc. | Radially collapsible frame for a prosthetic valve and method for manufacturing such a frame |
US9878127B2 (en) | 2012-05-16 | 2018-01-30 | Jenavalve Technology, Inc. | Catheter delivery system for heart valve prosthesis |
US10709555B2 (en) | 2015-05-01 | 2020-07-14 | Jenavalve Technology, Inc. | Device and method with reduced pacemaker rate in heart valve replacement |
US10993805B2 (en) | 2008-02-26 | 2021-05-04 | Jenavalve Technology, Inc. | Stent for the positioning and anchoring of a valvular prosthesis in an implantation site in the heart of a patient |
US11065138B2 (en) | 2016-05-13 | 2021-07-20 | Jenavalve Technology, Inc. | Heart valve prosthesis delivery system and method for delivery of heart valve prosthesis with introducer sheath and loading system |
US11197754B2 (en) | 2017-01-27 | 2021-12-14 | Jenavalve Technology, Inc. | Heart valve mimicry |
US11357624B2 (en) | 2007-04-13 | 2022-06-14 | Jenavalve Technology, Inc. | Medical device for treating a heart valve insufficiency |
US11564794B2 (en) | 2008-02-26 | 2023-01-31 | Jenavalve Technology, Inc. | Stent for the positioning and anchoring of a valvular prosthesis in an implantation site in the heart of a patient |
US11589981B2 (en) | 2010-05-25 | 2023-02-28 | Jenavalve Technology, Inc. | Prosthetic heart valve and transcatheter delivered endoprosthesis comprising a prosthetic heart valve and a stent |
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2002
- 2002-12-05 AU AU2002346657A patent/AU2002346657A1/en not_active Abandoned
- 2002-12-05 WO PCT/US2002/038764 patent/WO2003051231A2/en not_active Application Discontinuation
-
2004
- 2004-08-30 US US10/929,897 patent/US7001407B2/en not_active Expired - Lifetime
-
2005
- 2005-12-08 US US11/297,491 patent/US20060089664A1/en not_active Abandoned
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US10492906B2 (en) | 2005-01-20 | 2019-12-03 | Jenavalve Technology, Inc. | Catheter system for implantation of prosthetic heart valves |
GB2433700B (en) * | 2005-01-20 | 2007-12-12 | Fraunhofer Ges Forschung | Catheter for the transvascular implantation of prosthetic heart valves |
WO2006076890A1 (en) * | 2005-01-20 | 2006-07-27 | Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. | Catheter for the transvascular implantation of prosthetic heart valves |
US8679174B2 (en) | 2005-01-20 | 2014-03-25 | JenaValve Technology, GmbH | Catheter for the transvascular implantation of prosthetic heart valves |
US11517431B2 (en) | 2005-01-20 | 2022-12-06 | Jenavalve Technology, Inc. | Catheter system for implantation of prosthetic heart valves |
US9775705B2 (en) | 2005-01-20 | 2017-10-03 | Jenavalve Technology, Inc. | Methods of implanting an endoprosthesis |
US9788945B2 (en) | 2005-01-20 | 2017-10-17 | Jenavalve Technology, Inc. | Systems for implanting an endoprosthesis |
GB2433700A (en) * | 2005-01-20 | 2007-07-04 | Fraunhofer Ges Forschung | Catheter for the transvascular implantation of prosthetic heart valves |
US11357624B2 (en) | 2007-04-13 | 2022-06-14 | Jenavalve Technology, Inc. | Medical device for treating a heart valve insufficiency |
US11564794B2 (en) | 2008-02-26 | 2023-01-31 | Jenavalve Technology, Inc. | Stent for the positioning and anchoring of a valvular prosthesis in an implantation site in the heart of a patient |
US10993805B2 (en) | 2008-02-26 | 2021-05-04 | Jenavalve Technology, Inc. | Stent for the positioning and anchoring of a valvular prosthesis in an implantation site in the heart of a patient |
US11154398B2 (en) | 2008-02-26 | 2021-10-26 | JenaValve Technology. Inc. | Stent for the positioning and anchoring of a valvular prosthesis in an implantation site in the heart of a patient |
US11589981B2 (en) | 2010-05-25 | 2023-02-28 | Jenavalve Technology, Inc. | Prosthetic heart valve and transcatheter delivered endoprosthesis comprising a prosthetic heart valve and a stent |
US9510947B2 (en) | 2011-10-21 | 2016-12-06 | Jenavalve Technology, Inc. | Catheter system for introducing an expandable heart valve stent into the body of a patient |
US9878127B2 (en) | 2012-05-16 | 2018-01-30 | Jenavalve Technology, Inc. | Catheter delivery system for heart valve prosthesis |
US11185405B2 (en) | 2013-08-30 | 2021-11-30 | Jenavalve Technology, Inc. | Radially collapsible frame for a prosthetic valve and method for manufacturing such a frame |
US9867694B2 (en) | 2013-08-30 | 2018-01-16 | Jenavalve Technology Inc. | Radially collapsible frame for a prosthetic valve and method for manufacturing such a frame |
US10433954B2 (en) | 2013-08-30 | 2019-10-08 | Jenavalve Technology, Inc. | Radially collapsible frame for a prosthetic valve and method for manufacturing such a frame |
US11337800B2 (en) | 2015-05-01 | 2022-05-24 | Jenavalve Technology, Inc. | Device and method with reduced pacemaker rate in heart valve replacement |
US10709555B2 (en) | 2015-05-01 | 2020-07-14 | Jenavalve Technology, Inc. | Device and method with reduced pacemaker rate in heart valve replacement |
US11065138B2 (en) | 2016-05-13 | 2021-07-20 | Jenavalve Technology, Inc. | Heart valve prosthesis delivery system and method for delivery of heart valve prosthesis with introducer sheath and loading system |
US11197754B2 (en) | 2017-01-27 | 2021-12-14 | Jenavalve Technology, Inc. | Heart valve mimicry |
Also Published As
Publication number | Publication date |
---|---|
US6793666B2 (en) | 2004-09-21 |
US7001407B2 (en) | 2006-02-21 |
US20050033266A1 (en) | 2005-02-10 |
US20060089664A1 (en) | 2006-04-27 |
AU2002346657A8 (en) | 2003-06-30 |
AU2002346657A1 (en) | 2003-06-30 |
WO2003051231A3 (en) | 2004-02-12 |
US20030114880A1 (en) | 2003-06-19 |
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