SYSTEM FOR CRIMPING A PROSTHETIC HEART VALVE
20260020955 ยท 2026-01-22
Inventors
- David Maimon (Atlit, IL)
- Ron Sharoni (Hadera, IL)
- Tamir S. Levi (Zikhron Yaakov, IL)
- Emil Karapetian (Huntington Beach, CA, US)
- Tri D. Tran (Fountain Valley, CA, US)
- Tung T. Le (Costa Mesa, CA, US)
Cpc classification
Y10T29/5367
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
A61F2/0095
HUMAN NECESSITIES
A61F2/9522
HUMAN NECESSITIES
B23P19/04
PERFORMING OPERATIONS; TRANSPORTING
A61F2/2427
HUMAN NECESSITIES
B21D41/00
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/53578
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B23P11/00
PERFORMING OPERATIONS; TRANSPORTING
A61B50/30
HUMAN NECESSITIES
A61B17/06
HUMAN NECESSITIES
International classification
A61F2/24
HUMAN NECESSITIES
A61B17/06
HUMAN NECESSITIES
A61B50/30
HUMAN NECESSITIES
A61F2/00
HUMAN NECESSITIES
B21D41/00
PERFORMING OPERATIONS; TRANSPORTING
B23P11/00
PERFORMING OPERATIONS; TRANSPORTING
B23P19/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A system for crimping a prosthetic valve can include a radially compressible collet positioned around the prosthetic valve, a housing positioned around the collet, and a pusher at least partially disposed within the housing. The collet can include a first axial end portion, a second axial end portion, and an intermediate portion therebetween. The first axial end portion can have an outer diameter adjacent the intermediate portion that is greater than an outer diameter of the intermediate portion. The second axial end portion can have an outer diameter adjacent the intermediate portion that is greater than the outer diameter of the intermediate portion. The housing can include a housing internal annular ledge configured to slidably engage the second axial end portion of the collet. The pusher can include a pusher internal annular ledge configured to slidably engage the first axial end portion of the collet.
Claims
1. A system comprising: a radially expandable and compressible prosthetic heart valve; a radially compressible collet positioned around the prosthetic heart valve, the collet comprising a first axial end portion, a second axial end portion, and an intermediate portion disposed therebetween, wherein the first axial end portion of the collet has an outer diameter adjacent the intermediate portion of the collet that is greater than an outer diameter of the intermediate portion, and wherein the second axial end portion of the collet has an outer diameter adjacent the intermediate portion of the collet that is greater than the outer diameter of the intermediate portion; a housing positioned around the collet, wherein the housing comprises a housing internal annular ledge configured to slidably engage an external surface of the second axial end portion of the collet; and a pusher at least partially fitting within the housing, wherein the pusher comprises a pusher internal annular ledge configured to slidably engage an external surface of the first axial end portion of the collet.
2. The system of claim 1, wherein the first axial end portion of the collet tapers from the outer diameter adjacent the intermediate portion of the collet to a lesser outer diameter proximate a first axial end of the collet.
3. The system of claim 2, wherein the pusher internal annular ledge is not tapered.
4. The system of claim 1, wherein the first axial end portion of the collet is not tapered.
5. The system of claim 4, wherein the pusher internal annular ledge is tapered.
6. The system of claim 1, wherein the housing internal annular ledge is tapered.
7. The system of claim 1, wherein the housing internal annular ledge is not tapered.
8. A system comprising: a radially compressible collet configured to be positioned around a radially expandable and compressible prosthetic heart valve, the collet comprising a first axial end portion, a second axial end portion, and an intermediate portion disposed therebetween, wherein the first axial end portion of the collet has an outer diameter adjacent the intermediate portion of the collet that is greater than an outer diameter of the intermediate portion, and wherein the second axial end portion of the collet has an outer diameter adjacent the intermediate portion of the collet that is greater than the outer diameter of the intermediate portion; a housing positioned around the collet, wherein the housing comprises a housing internal annular ledge configured to slidably engage an external surface of the second axial end portion of the collet; a pusher at least partially fitting within the housing, wherein the pusher comprises a pusher internal annular ledge configured to slidably engage an external surface of the first axial end portion of the collet, and wherein the collet is configured to be pinched between the housing internal annular ledge and the pusher internal annular ledge; and a knob coupled to the housing and the pusher such that rotation of the knob in a first direction causes axial movement of the pusher relative to the housing to radially compress the collet.
9. The system of claim 8, wherein the housing comprises an externally threaded first end portion, wherein the knob is internally threaded, and wherein the internally threaded knob is positioned around and engaged with the externally threaded first end portion.
10. The system of claim 9, wherein the internally threaded knob is engaged with the externally threaded first end portion of the housing such that rotation of the knob in the first direction causes axial movement of the knob and the pusher toward the housing.
11. The system of claim 9, wherein the internally threaded knob is engaged with the externally threaded first end portion of the housing such that rotation of the knob in a second direction opposite the first direction causes axial movement of the knob and the pusher away from the housing.
12. The system of claim 8, wherein the knob surrounds the pusher.
13. The system of claim 8, wherein at least one of the first axial end portion of the collet and the pusher internal annular ledge is tapered.
14. The system of claim 8, wherein at least one of the second axial end portion of the collet and the housing internal annular ledge is tapered.
15. The system of claim 8, wherein the collet is configured to be positioned around the radially expandable and compressible prosthetic heart valve in a partially crimped configuration, and wherein the system is configured to crimp the prosthetic heart valve from the partially crimped configuration to a crimped delivery configuration.
16. A system comprising: a radially compressible collet configured to receive a radially expandable and compressible prosthetic heart valve, the collet comprising a first axial end portion, a second axial end portion, and an intermediate portion disposed therebetween, wherein the first axial end portion of the collet has an outer diameter adjacent the intermediate portion of the collet that is greater than an outer diameter of the intermediate portion, and wherein the second axial end portion of the collet has an outer diameter adjacent the intermediate portion of the collet that is greater than the outer diameter of the intermediate portion; a housing positioned around the collet, wherein the housing comprises a housing internal annular ledge configured to slidably engage an external surface of the second axial end portion of the collet, and wherein at least one of the second axial end portion of the collet and the housing internal annular ledge is tapered; and a pusher at least partially fitting within the housing, wherein the pusher comprises a pusher internal annular ledge configured to slidably engage an external surface of the first axial end portion of the collet, and wherein at least one of the second axial end portion of the collet and the pusher internal annular ledge is tapered.
17. The system of claim 16, further comprising a stop coupled to the housing.
18. The system of claim 17, wherein the stop comprises a tapered wall configured to restrict axial movement of the radially compressible collet relative to the housing and the stop.
19. The system of claim 18, wherein the second axial end portion of the collet is tapered, and wherein the tapered wall of the stop is configured to match the shape of the tapered second axial end portion of the collet.
20. The system of claim 17, further comprising a casing coupled to the housing and the stop, wherein the casing is fixed relative to the housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
DETAILED DESCRIPTION
[0017]
[0018] The exemplary system shown in
[0019] These systems can come pre-assembled in a sterile package 16 such that the system can be removed from the package just prior to the crimping device 10 being used to crimp the valve 12 to a delivery configuration onto the delivery catheter 14 and then delivering the valve into a patient. The components can be sealed within the sterile package 16 in a wet state or a dry state. In a wet state, a sterilization fluid can be included within the sterile package 16. In a dry state, the leaflets of the valve 12 (typically made from bovine pericardium tissue or other natural or synthetic tissues) desirably are completely or substantially dehydrated and the package 16 desirably is free of any liquid.
[0020] The prosthetic valve 12 can comprise any radially collapsible and expandable prosthetic valve, such as a prosthetic heart valve. The valve 12 can be radially collapsible and expandable between an expanded configuration and a delivery configuration. The valve 12 can be self-expandable or balloon (plastically) expandable. In some embodiments, the valve 12 can be in a partially crimped configuration prior to being assembled within the crimping device 10. For example, the valve can be pre-crimped to the partially crimped configuration using another crimping instrument, prior to being assembled into crimping device 10. In the partially crimped configuration, the valve 12 has an outer diameter that is between that of the expanded configuration and that of the delivery configuration. In some embodiments, the valve 12 can have an outer diameter in the partially crimped configuration that is closer to the outer diameter in the delivery configuration than to the outer diameter in the expanded configuration. For example, the valve 12 in the partially crimped configuration can be crimped about 75% of the way from the expanded configuration to the delivery configuration. The crimping device 10 can also be configured to crimp the valve 12 to the delivery configuration from the expanded configuration without first pre-crimping the valve to an intermediate partially crimped configuration.
[0021] After the valve 12 is crimped onto the delivery catheter 14 in the delivery configuration, the valve can be removed from the crimping device 10. In some embodiments, the valve 12 and catheter 14 can be retracted proximally out of and separated from the crimping device 10. In other embodiments, the valve 12 and the delivery catheter 14 can be advanced distally through a distal outlet 86 of the crimping device 10 such that the crimping device remains positioned around a portion of the delivery catheter that is proximal to the valve 12. In other embodiments, the crimping device 10 can be configured to separate into pieces or open, such as like a clam shell, such that the crimping device 10 can be removed laterally from the catheter 14 and valve 12. After the valve 12 is removed from the crimping device 10, the valve and catheter 14 can be introduced into a patient.
[0022]
[0023] As shown in
[0024] As shown in
[0025] The crimping device 10 can further comprise a stop 60 that is secured to the flared portion 44 of the housing 40 via a pair of screws 62. The stop 60 can comprise a tapered wall 66 that is configured to restrict the axial position of the collet 20 in the proximal direction relative to the housing 40 and the stop 60. The wall 66 can be configured to match the tapered shape of the proximal end portion 30 of the collet 20.
[0026] The crimping device 10 can further comprise a pusher 70 that is generally cylindrical and fits within the distal end 42 of the housing 40. The pusher 70 defines an opening at its proximal end that is configured to receive the distal end portion 32 of the collet 20. As shown in
[0027] As shown in
[0028] In the embodiment of the crimping device 10 shown in
[0029] The crimping device 10 can further comprise a rotatable knob 80 that is internally threaded and positioned around and engaged with the externally threaded end portion 42 of the housing 40. The knob 80 can surround the pusher 70 such that axial movement of the knob 80 in the proximal direction causes corresponding axial movement of the pusher 70. The engagement of the inner threads 82 of the knob 80 with the external threads 42 of the housing 40 can be such that rotation of the knob 80 in one direction relative to the housing 40 causes the knob to move proximally relative to the housing. Rotation of the knob 80 in the opposite direction can cause the knob to move distally relative to the housing 40. Thus, rotation of the knob 80 relative to the housing 40 can urge the pusher 70 against the collet 20 thereby pinching the collet between the internal annular ledges 48, 72 and causing the collet to radially compress.
[0030] The crimping device 10 can further comprise an external casing 90 that is secured around the proximal flared end 44 of the housing 40. The casing 90 can be fixed relative to the housing 40 and serve as hand grip for a user. The casing 90 can be generally cylindrical and can be secured to the housing 40 and the stop 60 via the screws 62.
[0031] The crimping device 10 can further comprise a releasable holding mechanism configured to releasably grip a shaft of a delivery catheter 14 to maintain a position of the crimping device relative to the shaft. An exemplary holding mechanism comprises a pair of clamping jaws 100 that are pivotable about the flared end 44 of the housing 40, as shown in
[0032] The crimping device 10 can further comprise a set of pushrods 50 positioned between the knob 80 and the jaws 100 that can provide the separation force needed to open the jaws 100, as shown in
[0033]
[0034] In the initial configuration of
[0035]
[0036] As shown in
[0037] As shown in
[0038] In the embodiment shown in
[0039]
[0040]
[0041]
[0042] Each of the crimping devices 200, 300 and 400 can be pre-assembled in a sterile package with a valve positioned within the device. At least part of a delivery catheter can also be pre-assembled with the crimping devices 200, 300, 400 within a sterile package.
[0043] In view of the many possible embodiments to which the principles of the disclosed invention may be applied, it should be recognized that the illustrated embodiments are only preferred examples of the invention and should not be taken as limiting the scope of the invention. Rather, the scope of the invention is defined by the following claims. We therefore claim as our invention all that comes within the scope and spirit of these claims.