Devices, Systems, and Methods for a Heart-Valve Annulus Reinforcer
Devices, systems, and methods for heart-valve annulus repair techniques, comprising a reinforcing device with one or both of a heating mechanism or clamping mechanism. The heating mechanism may function by heating a localized portion of the annulus so as to reduce the circumference of the annulus and/or increase the stiffness of the tissue. The clamping mechanism may function by gathering or pinching an area of tissue to then reduce the circumference of the annulus and/or increase the stiffness of the tissue.
1 . A heart-valve annulus reinforcing device, comprising:
a hollow cylindrical structure with a top end and a bottom end, wherein both the top end and the bottom end are open;
a plurality of arms extending down from the top end, wherein the plurality of arms end with a penetrating element and wherein the plurality of arms are configured to bend out away from the device.
2 . The device of claim 1 , wherein the plurality of arms comprises a plurality of elongated slot openings, wherein the plurality of elongated slot openings extends along a portion of the plurality of arms between the top end and the bottom end.
3 . The device of claim 1 , wherein the penetrating element comprises a rounded blade with a pointed end, wherein the rounded blade is curved inwards towards the center of the cylindrical structure.
4 . The device of claim 1 , comprising a hinge connection between a first and a second arm of the plurality of arms.
5 . A heart-valve annulus reinforcing device, comprising:
a hollow cylindrical-shaped structure with radial symmetry when flattened, comprising a first end and a second end when not flattened;
wherein the second end ends with a penetrating element.
6 . The device of claim 5 , wherein the first end ends with a penetrating element.
7 . The device of claim 5 , wherein the first end comprises a circular-opening end.
8 . A method for reducing the circumference of an annulus, comprising:
inserting a reinforcing device into a delivery catheter system, wherein the reinforcing device comprises at least one of a heating reinforcer and a clamping reinforcer;
delivering, by the delivery system, the reinforcing device to a tissue; and
deploying the reinforcing device to an area of the tissue by a deployment mechanism of the delivery system, wherein the deployment mechanism is one or both of a coaxial pusher and a pusher platform.
9 . The method of claim 8 , wherein the clamping reinforcer is a hollow cylindrical structure with a top end and a bottom end, wherein both the top end and the bottom end are open, wherein a plurality of arms extend down from the top end, wherein the plurality of arms end with a penetrating element, and wherein the plurality of arms are configured to bend out away from the device;
wherein inserting a reinforcing device into a delivery catheter system comprises inserting the clamping reinforcer with the plurality of arms bent out; and
wherein deploying the reinforcing device further comprises:
positioning the clamping reinforcer against the tissue at a desired location;
deploying the clamping reinforcer at the desired location of the tissue such that the bent plurality of arms are straightened;
penetrating the tissue with the penetrating element;
grasping a portion of the tissue with the penetrating element;
pulling together the grasped portion of the tissue with the penetrating element, and
releasing the clamping reinforcer from the delivery system.
10 . The method of claim 9 , wherein the plurality of arms comprises a plurality of elongated slot openings, wherein the plurality of elongated slot openings extends along a portion of the plurality of arms between the top end and the bottom end.
11 . The method of claim 9 , wherein the penetrating element comprises a rounded blade with a pointed end, wherein the rounded blade is curved inwards towards the center of the cylindrical structure.
12 . The method of claim 9 , comprising a hinge connection between a first and a second arm of the plurality of arms.
13 . The method of claim 9 , wherein the penetrating element is coated with a tissue-absorbable chemical composition.
14 . The method of claim 8 , wherein the clamping reinforcer is a hollow cylindrical-shaped structure with radial symmetry when flattened, comprising a first end and a second end when not flattened, wherein the second end ends with a penetrating element;
wherein deploying the reinforcing device further comprises:
positioning the clamping reinforcer against the tissue at a desired location;
penetrating the tissue with the penetrating element;
grasping a portion of the tissue with the penetrating element;
pulling together the grasped portion of the tissue with the penetrating element, and
releasing the clamping reinforcer from the delivery system.
15 . The method of claim 14 , wherein the first end ends with a penetrating element.
16 . The method of claim 14 , wherein the first end comprises a circular-opening end.
17 . The method of claim 8 , wherein the heating reinforcer is a heat-producing device, wherein deploying the reinforcing device further comprises:
positioning the heating reinforcer against the tissue at a desired location; and
deploying heat to the tissue at the desired location.
18 . The method of claim 17 , wherein the heat-producing device is one of an electric-heating mechanism, an electromagnetism-heating mechanism, or a laser-heating mechanism.
19 . The method of claim 8 , further comprising:
retracting the deployment mechanism through a second reinforcing device; and
deploying the second reinforcing device to the area of the tissue by the deployment mechanism of the delivery system after deployment of a first reinforcing device.
20 . The method of claim 19 , wherein the first-deployed reinforcing device is the clamping reinforcer and the second reinforcing device is the heating reinforcer.