MEDICAL SYSTEM FOR ANNULOPLASTY
20200281722 · 2020-09-10
Inventors
Cpc classification
A61F2250/0003
HUMAN NECESSITIES
A61F2/2445
HUMAN NECESSITIES
A61F2/2451
HUMAN NECESSITIES
International classification
Abstract
An annuloplasty device is disclosed for treating a defective mitral valve having an annulus, comprising a removable and flexible elongate displacement unit for temporary insertion into a coronary sinus (CS) adjacent the valve, wherein the displacement unit has a delivery state for delivery into the CS, and an activated state to which the displacement unit is temporarily and reversibly transferable from said delivery state, the displacement unit comprises a proximal reversibly expandable portion, a distal anchoring portion being movable in relation to the proximal expandable portion in a longitudinal direction of the displacement unit to said activated state in which the shape of the annulus is modified to a modified shape, wherein the proximal expandable portion is reversibly foldable to an expanded state for positioning against a tissue wall at the entrance of the CS, and wherein the distal anchoring portion comprises an inflatable unit.
Claims
1. An annuloplasty device for treating a defective mitral valve having an annulus, comprising a removable and flexible elongate displacement unit for temporary insertion into a coronary sinus adjacent the valve, wherein the displacement unit has a delivery state for delivery into the coronary sinus, and an activated state to which the displacement unit is temporarily and reversibly transferable from said delivery state, the displacement unit comprises a proximal reversibly expandable portion, a distal anchoring portion being movable in relation to the proximal expandable portion in a longitudinal direction of the displacement unit to said activated state in which the shape of the annulus is modified to a modified shape, wherein the proximal expandable portion is reversibly foldable to an expanded state for positioning against a tissue wall at the entrance of the coronary sinus, and wherein the distal anchoring portion comprises an inflatable unit.
2. The annuloplasty device according to claim 1, wherein the proximal expandable portion comprises expandable bows extending in the longitudinal direction.
3. The annuloplasty device according to claim 2, wherein the expandable bows are connected to a sheath and are configured to be expanded in a radial direction, perpendicular to the longitudinal direction, by pushing a proximal portion of the sheath towards the distal anchoring portion.
4. The annuloplasty device according to claim 2, wherein the bows comprise elongated ribs formed in the sheath by elongated cuts in the sheath, extending in the longitudinal direction.
5. The annuloplasty device according to claim 3, wherein the bows are placed equidistantly around a circumference of the sheath.
6. The annuloplasty device according to claim 2, wherein, when the proximal expandable portion is folded to the expanded state, the bows extend with a curvature forming an apex positioned at a maximum expanded diameter (D) of the proximal expandable portion, whereby each of the bows extend with two expanded sections towards the apex, wherein the two expanded sections comprises a proximal expanded section and a distal expanded section, the distal expanded section is configured to be arranged against said tissue wall at the entrance of the coronary sinus, wherein at least a portion of the distal expanded section extends in a first direction forming a first angle with the radial direction, and at least a portion of the proximal expanded section extends in a second direction forming a second angle with the radial direction, wherein the first angle is less than the second angle.
7. The annuloplasty device according to claim 6, wherein the first direction is substantially parallel with the radial direction.
8. The annuloplasty device according to claim 2, wherein, when the proximal expandable portion is folded to the expanded state, the bows extend with a curvature forming an apex positioned at a maximum expanded diameter of the proximal expandable portion, wherein the maximum expanded diameter of the proximal expandable portion is at least three times the diameter of the coronary sinus.
9. The annuloplasty device according to claim 8, wherein a ratio of the maximum expanded diameter of the proximal expandable portion to the diameter of the coronary sinus is in the range 3-5.
10. The annuloplasty device according to claim 1, wherein the elongate displacement unit comprises a lumen extending in the longitudinal direction and having a distal opening arranged distally of the inflatable unit, and at least one proximal opening arranged between the inflatable unit and the proximal expandable portion.
11. The annuloplasty device according to claim 10, comprising a guide wire arranged to extend inside the lumen and to exit the lumen at the distal opening.
12. The annuloplasty device according to claim 1, wherein the elongate displacement unit comprises at least one radiopaque marker arranged inside the inflatable unit.
13. The annuloplasty device according to claim 1, comprising an inflation lumen connected to inflatable unit and configured to deliver an inflation medium to the inflatable unit.
14. The annuloplasty device according to claim 1, wherein a distance between the proximal expandable portion and the distal anchoring portion in the longitudinal direction decreases to a reduced distance when the displacement unit is transferred from the delivery state to the activated state.
15. A medical system for treating a defective mitral valve having an annulus, said system comprising in combination: an annuloplasty device for treating a defective mitral valve having an annulus, comprising a removable and flexible elongate displacement unit for temporary insertion into a coronary sinus adjacent the valve, wherein the displacement unit has a delivery state for delivery into the coronary sinus, and an activated state to which the displacement unit is temporarily and reversibly transferable from said delivery state, the displacement unit comprises a proximal reversibly expandable portion, a distal anchoring portion being movable in relation to the proximal expandable portion in a longitudinal direction of the displacement unit to said activated state in which the shape of the annulus is modified to a modified shape, wherein the proximal expandable portion is reversibly foldable to an expanded state for positioning against a tissue wall at the entrance of the coronary sinus, and wherein the distal anchoring portion comprises an inflatable unit, an annuloplasty implant for permanent fixation at the mitral valve annulus by annuloplasty of the valve when said modified shape is obtained, wherein said annuloplasty implant comprises a loop structure, such as a helix-shaped loop structure, configured to be positioned on either side of said valve to retain said modified shape of the annulus, wherein at least a portion of the loop structure conforms to a curvature of said annulus.
16. Method A method for treating a defective mitral valve having an annulus, said method comprising: inserting a flexible and removable elongate displacement unit in a delivery state into a coronary sinus adjacent said valve, positioning a proximal expandable portion against a tissue wall at the entrance of said coronary sinus, anchoring a distal anchoring portion comprising an inflatable unit inside the coronary sinus by expanding of the inflatable unit, activating the displacement unit in an activated state whereby the distal anchoring portion is moved in a longitudinal direction of the displacement unit to reduce a distance between the distal anchoring portion and the proximal expandable portion such that the shape of the annulus is modified to a modified shape, fixating an annuloplasty implant at the mitral valve annulus when said modified shape is obtained, whereby said annuloplasty implant comprises a loop structure, such as a helix-shaped loop structure, positioned on either side of the valve to retain the modified shape of the annulus, wherein at least a portion of the loop structure is conformed to a curvature of said annulus, removing the elongate displacement unit after temporary activation in the activated state.
17. The method according to claim 16, wherein positioning of the proximal expandable portion comprises expanding bows extending in the longitudinal direction for apposition against the tissue wall, whereby the method further comprises exerting of a force against the tissue wall in the longitudinal direction towards the distal anchoring portion.
18. The method according to claim 16, wherein anchoring the distal anchoring portion comprises inflating the inflatable unit in the great cardiac vein and/or, in the anterior interventricular branch or vein, and/or in the posterior vein and/or in the posterior ventricular vein of the heart.
19. The method according to claim 16, comprising guiding the elongate displacement unit along a guide wire arranged to extend inside a lumen of the elongate displacement unit and to exit the lumen at an opening distally of the inflatable unit, wherein the lumen has a proximal opening arranged between the inflatable unit and the proximal expandable portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] These and other aspects, features and advantages of which embodiments of the invention are capable of will be apparent and elucidated from the following description of embodiments of the present invention, reference being made to the accompanying drawings, in which
[0019]
[0020]
[0021]
[0022]
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[0026]
[0027]
DESCRIPTION OF EMBODIMENTS
[0028] Specific embodiments of the invention will now be described with reference to the accompanying drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art. The terminology used in the detailed description of the embodiments illustrated in the accompanying drawings is not intended to be limiting of the invention. In the drawings, like numbers refer to like elements.
[0029] The following description focuses on an embodiment of the present invention applicable to cardiac valve implants such as annuloplasty rings. However, it will be appreciated that the invention is not limited to this application but may be applied to many other annuloplasty implants and cardiac valve implants including for example replacement valves, and other medical implantable devices.
[0030]
[0031] The proximal expandable portion 102 may comprise expandable bows 105 extending in the longitudinal direction 104, as schematically illustrated in e.g.
[0032] The expandable bows 105 may be connected to a sheath 106 and may be configured to be expanded in a radial direction 115, perpendicular to the longitudinal direction 104, by pushing a proximal portion 107 of the sheath 106 towards the distal anchoring portion 103, as indicated in
[0033] The bows 105 may comprise elongated ribs 108 formed in the sheath 106 by elongated cuts 108 in the sheath 106, extending in the longitudinal direction 104, as schematically illustrated in
[0034] The bows 105 may be placed equidistantly around a circumference of the sheath 106. As elucidated above, this may provide for an even distribution of the anchoring force.
[0035] When the proximal expandable portion 102 is folded to the expanded state, the expandable bows 105 may extend with a curvature forming an apex 116 positioned at a maximum expanded diameter (D) of the proximal expandable portion 102. Each of the bows 105 may extend with two expanded sections 118, 118, towards the apex 116, as illustrated in
[0036] The maximum expanded diameter (D) of the proximal expandable portion 102 may be at least three times the diameter of the CS. In some examples the ratio of the maximum expanded diameter (D) of the proximal expandable portion 102 to the diameter of the CS is in the range 3-5. In some examples the aforementioned ratio may be in the range 3.5-4.5, which provides for a particular advantageous anchoring of the proximal expandable portion 102, while maintaining a compact and easy to use device 100.
[0037] The elongate displacement unit 101 may comprise a lumen 109 extending in the longitudinal direction 104. The lumen may have a distal opening 110 arranged distally of the inflatable unit 103, and at least one proximal opening 111, 111, arranged between the inflatable unit 103 and the proximal expandable portion 102, as schematically illustrated in
[0038] The annuloplasty device 100 may comprise a guide wire 114 arranged to extend inside the lumen 109 and to exit the lumen 109 at the distal opening 110. This provides for facilitated positioning of the elongate displacement unit 101. The lumen 109 may thus allow for both guiding of the guide wire 114 and for transport of blood between proximal openings 111, 111, and the distal opening 110, which provides for a robust and compact annuloplasty device 100.
[0039] The elongate displacement unit 101 may comprise at least one radiopaque marker 112, 112, arranged inside the inflatable unit 103, as schematically illustrated in
[0040] The annuloplasty device 100 may comprise an inflation lumen 113 connected to inflatable unit 103 and configured to deliver an inflation medium to the inflatable unit 103, as schematically illustrated in
[0041] As mentioned, the distance (L) between the proximal expandable portion 102 and the distal anchoring portion 103 in the longitudinal direction 104 may be decreased to a reduced distance (L) when the displacement unit 101 is transferred from the delivery state to the activated state, as schematically illustrated in
[0042] A medical system 200 is provided for treating a defective mitral valve having an annulus, as schematically illustrated in
[0043] The annuloplasty implant 301 may comprise a first support ring and a second support ring, being arranged in a coiled configuration around an axial direction. The first and second support rings may be adapted to be arranged on opposite sides of native heart valve leaflets to pinch said leaflets. The annuloplasty implant 301 may have shape-memory properties, such that the first and second supports may assume an elongated configuration when delivered in a catheter, whereupon the first and second supports may assume the coiled configuration when ejected from the delivery catheter. The annuloplasty implant 301 may also comprise closed single-loop rings, such as D-shaped rings, or open single-loop rings, such as C-shaped annuloplasty rings.
[0044]
[0045]
[0046] Positioning of the proximal expandable portion 102 may comprise expanding 402 bows 105 extending in the longitudinal direction 104 for apposition against the tissue wall. The method 400 may further comprise exerting 404 of a force against the tissue wall in the longitudinal direction 104 towards the distal anchoring portion 103.
[0047] Anchoring the distal anchoring portion 103 may comprise inflating 403 the inflatable unit 103 in the great cardiac vein and/or, in the anterior interventricular branch or vein, and/or in the posterior vein and/or in the posterior ventricular vein of the heart. This provides for improving the anchoring force of the distal anchoring portion 103.
[0048] The method 400 may comprise guiding 401 the elongate displacement unit 101 along a guide wire 114 arranged to extend inside a lumen 109 of the elongate displacement unit 101. The guide wire 114 may be arranged to exit the lumen at an opening 110 distally of the inflatable unit 103. The lumen 109 may have a proximal opening 111 arranged between the inflatable unit 103 and the proximal expandable portion 102.
[0049] The present invention has been described above with reference to specific embodiments. However, other embodiments than the above described are equally possible within the scope of the invention. The different features and steps of the invention may be combined in other combinations than those described. The scope of the invention is only limited by the appended patent claims.
[0050] More generally, those skilled in the art will readily appreciate that all parameters, dimensions, materials, and configurations described herein are meant to be exemplary and that the actual parameters, dimensions, materials, and/or configurations will depend upon the specific application or applications for which the teachings of the present invention is/are used.