Wrist stabilization systems
Devices, systems, and methods for bone stabilization, especially ulna head stabilization. The stabilization system may include a bone plate having an elongated portion extending along a longitudinal axis between a proximal end and a distal end. The bone plate defines a plurality of through holes extending through the elongated portion. A plurality of fasteners are configured to extend through one or more of the plurality of through holes in the bone plate and configured to secure the bone plate to the bone. The proximal end of the elongate portion has an arcuate configuration.
1. A stabilization system for stabilizing a bone, the system comprising:
a first bone plate having an upper surface and a lower surface configured to contact the bone, wherein the first bone plate further has a first portion and a second portion, the second portion extending at an angle relative to the first portion; and
a second bone plate configured to attach to the first bone plate, wherein the second bone plate includes an elongated portion extending along a longitudinal axis, an enlarged head portion extending along a second axis from a first end to a second end, and a transition region connecting the elongated portion to the enlarged head portion, the second end of the enlarged head portion is a free end, wherein the transition region is curved and connects to the first end of the enlarged head portion,
the first portion of the first bone plate comprising an opening for receiving a fixation member; and
the second portion of the first bone plate including at least one hook having an arcuate configuration, and
wherein the opening extends along at least a majority of a length of the first portion.
2. The stabilization system of claim 1 , wherein the second portion includes at least two hooks, each having an arcuate configuration.
3. The stabilization system of claim 1 , wherein the arcuate configuration is configured to complement a curvature of a lunate facet rim to which the first bone plate is configured to be secured.
4. The stabilization system of claim 1 , wherein the first portion of the first bone plate is configured and dimensioned to be able to slide under the second bone plate.
5. The stabilization system of claim 1 , wherein the second bone plate includes a plurality of through holes extending through the elongated portion.
6. The stabilization system of claim 5 , wherein at least one of the through holes is a locking through hole which defines an upper tapered portion extending from the upper surface and a lower tapered portion extending from the lower surface with a deformation area defined between the upper tapered portion and the lower tapered portion.
7. The stabilization system of claim 6 , wherein the deformation area has a smooth surface.
8. The stabilization system of claim 6 , wherein the deformation area includes a textured portion.
9. The stabilization system of claim 8 , wherein the textured portion includes a windswept cut design comprised of a plurality of shallow cuts where each cut overlaps the next.
10. The stabilization system of claim 8 , wherein the textured portion includes a plurality of shallow knurled grooves set in a diamond pattern.
11. The stabilization system of claim 8 , wherein the textured portion includes a plurality of 360° circular swept cuts and a series of triangular cuts.
12. The stabilization system of claim 6 , wherein the locking through hole is also configured to receive a non-locking fastener.
13. The stabilization system of claim 1 , wherein the elongated portion includes an elongated slot for receiving a sliding fastener for provisional alignment of the second bone plate, and wherein the elongated slot is sized for proximal-distal and medial-lateral adjustment of the second bone plate.