Joint repair system
A joint stabilization (reduction) system and associated methods and tools for placement of the system in an open or minimally invasive technique. The joint stabilization system includes a flexible prosthetic band for stabilizing the bones in proper position and a connector mechanism for joining the two ends of the prosthetic band around the bones. One end of the prosthetic band can be permanently attached to the connector.
1. A passing device, comprising:
a cannula;
a shape memory element having a distal end portion that has a constrained configuration when disposed within the cannula and a curved deployed configuration when extended from the cannula; and
a passing element attached to a distal tip portion of the distal end portion and attached to an anchor at a proximal end of the shape memory element, the anchor mounted and configured to move with the shape memory element as the distal end portion is extended from the cannula, the passing element extending from the anchor to the distal tip portion outside of the cannula;
wherein the distal tip portion comprises a passing element retention feature for retaining a distal end of the passing element.
2. The passing device of claim 1 , further comprising an extension mechanism for extending the distal end portion from the cannula.
3. The passing device of claim 2 , further comprising a retraction mechanism for retracting the distal end portion into the cannula.
4. The passing device of claim 2 , wherein the extension mechanism is configured to incrementally extend the distal end portion from the cannula.
5. The passing device of claim 1 , wherein the shape memory element comprises nitinol.
6. The passing device of claim 5 , wherein the nitinol comprises an Austenite Finish (Af) Temperature in the range of approximately 0° C. to approximately 20° C.
7. The passing device of claim 1 , wherein the anchor further comprises a spool for receiving and tightening the passing element onto the loop.
8. The passing device of claim 1 , further comprising a bone positioning feature at a distal end of the cannula, the bone positioning feature aiding in positioning of the distal end of the cannula against a bone.
9. The passing device of claim 1 , further comprising a passing element control feature at a distal end of the cannula, with the passing element control feature guiding the passing element to a center of the cannula and a center of the distal end portion.
10. The passing device of claim 1 , wherein the distal end portion has a distal tip portion that extends in a straight line.
11. The passing device of claim 1 , wherein the passing element retention feature comprises opposing slots on opposite sides of the distal tip portion.
12. The passing device of claim 1 , wherein the passing element retention feature comprises a notch at a distal tip of the distal tip portion.
13. The passing device of claim 1 , wherein the passing element comprises anchoring elements at opposite ends for attaching to the anchor and the passing element retention feature, respectively.
14. The passing device of claim 13 , wherein the anchoring elements comprise opposite ends of a single loop forming the passing element.
15. A method for placing a passing element around a bone of an animal, comprising:
using a passing device, positioning a shape memory element disposed within a cannula adjacent one side of a bone of the animal, the shape memory element carrying a passing element that extends from an anchor for the passing element to the shape memory element outside of the cannula, the shape memory element comprising a distal end portion having a curved shape when the distal end portion is disposed outside of the cannula, the distal end portion being formed of a material flexible enough to conform to the shape of the cannula while retracted, and the distal end portion having a resilience to return to the curved shape upon extending out of the cannula;
incrementally extending the distal end portion from the cannula so as to extend at least partially around the bone, the distal end portion curving around the bone due to resilience of the distal end portion;
detaching the passing element from the shape memory element; and
retrieving the passing element from generally a side of the bone opposite the one side.
16. The method of claim 15 , further comprising retracting the distal end portion back into the cannula, wherein at least a portion of the distal end portion flexes to conform to the cannula.
17. The method of claim 15 , wherein the first bone is a coracoid, and the second bone is a clavicle.
18. The method of claim 15 , wherein the first bone is a tibia, and the second bone is a fibula.
19. A passing device, comprising:
a cannula;
a shape memory element having a distal end portion that has a constrained configuration when disposed within the cannula and a curved deployed configuration when disposed distal to the cannula, such that, when the distal end portion is disposed within the cannula, the distal end portion has a strain more than 2%; the distal end portion having sufficient radial stiffness to resist bending of the distal end portion while being deployed through tissue around a bone via extension of the distal end portion from the cannula, the distal end portion having a distal tip portion configured for attachment of a distal end of a passing element to the distal tip portion; and
an anchor configured to maintain tension in the passing element as the distal end portion is extended from the cannula with the passing element extending from the anchor to the distal tip portion outside of the cannula.
20. The passing device of claim 19 , wherein the distal end portion has a distal tip portion that extends in a straight line.