Devices and methods for the treatment of heart valve insufficiencies
Disclosed herein are various embodiments directed to a device for minimally invasive medical treatment. The device being a hollow tube with a first end, a second end, and one or more anchors configured to extend outward from the exterior of the hollow tube. The hollow tube having a plurality of cutouts on the exterior, wherein the cutouts allow the hollow tube to be flexible. Additionally, the hollow tube may have at least one snap mechanism configured to connect the first end and the second end together.
1. An annuloplasty ring comprising:
a hollow tube with a first end and a second end, wherein the first end is configured to couple to the second end;
a plurality of windows disposed in an exterior of the hollow tube;
an anchor rail comprising a plurality of anchors configured to extend outward from the hollow tube through the plurality of windows,
wherein the anchor rail comprises an anchor stop mechanism with a projection that projects a predetermined height from the anchor rail, the anchor stop mechanism is configured to hold the plurality of anchors in place and prevent premature deployment of the plurality of anchors.
2. The annuloplasty ring of claim 1 , wherein the plurality of anchors are disposed along a length of the anchor rail.
3. The annuloplasty ring of claim 1 , further comprising a plurality of anchor rails each with a plurality of anchors, wherein each anchor rail of the plurality of anchor rails comprises an anchor stop mechanism with a projection that projects a predetermined height from the anchor rail.
4. The annuloplasty ring of claim 3 , wherein a first anchor from a first anchor rail of the plurality of anchor rails and a second anchor from a second anchor rail of the plurality of anchor rails are configured to deploy out of a same window of the plurality of windows.
5. The annuloplasty ring of claim 4 , wherein the first anchor and the second anchor deploy out of the same window in an opposite direction.
6. The annuloplasty ring of claim 3 , wherein the annuloplasty ring comprises a plurality of deployment zones, wherein each anchor rail of the plurality of anchor rails is associated with one of the plurality of deployment zones and the plurality of anchors of the anchor rail deploys out of the associated deployment zone of the plurality of deployment zones.
7. The annuloplasty ring of claim 6 , wherein two or more anchor rails of the plurality of anchor rails are associated with one of the plurality of deployment zones such that the two or more anchor rails deploy out of the associated deployment zone of the plurality of deployment zones.
8. The annuloplasty ring of claim 6 , wherein the anchor stop mechanism of each anchor rail of the plurality of anchor rails is associated with one of the plurality of deployment zones.
9. The annuloplasty ring of claim 6 , wherein the plurality of deployment zones are selected from at least one of: a first anterior anchoring zone, a second anterior anchoring zone, a first posterior anchoring zone, and a second posterior anchoring zone when the annuloplasty ring is impacted in a mitral annulus.
10. The annuloplasty ring of claim 6 , wherein the plurality of deployment zones are selected from at least one of: a septal anchoring zone, an AV node anchoring zone, a posterior anchoring zone, and an anterior anchoring zone when the annuloplasty ring is implanted in a tricuspid annulus.
11. The annuloplasty ring of claim 1 , wherein the anchor stop mechanism comprises a connecting strut that couples the anchor stop mechanism to the anchor rail.
12. The annuloplasty ring of claim 11 , wherein the connecting strut comprises a weak point in which the strut decreases in width relative to a rest of the connecting strut.
13. The annuloplasty ring of claim 11 , wherein the projection projects from the connecting strut.
14. The annuloplasty ring of claim 11 , wherein the anchor stop mechanism and the connecting strut extend at an acute angle relative to the anchor rail.
15. The annuloplasty ring of claim 1 , wherein the anchor stop mechanism comprises one or more deployment holes.
16. The annuloplasty ring of claim 1 , wherein the hollow tube is configured to form a geometric D shape when the first end and the second end are connected.
17. The annuloplasty ring of claim 16 , wherein the hollow tube is configured to allow a stabilizing mechanism to modify the geometric D shape.
18. The annuloplasty ring of claim 1 , further comprising at least one stabilizing mechanism configured to be disengaged from the hollow tube after insertion.
19. The annuloplasty ring of claim 1 , further comprising a at least one snap mechanism configured to connect the first end and the second end together.