Expandable fastener for orthopaedic applications
The present disclosure relates to an expandable fastener for orthopaedic applications. The fastener is arranged for fastening when positioned in a bore hole in bone and comprises a body having an axis. The fastener further comprises an expansion portion moveable between a contracted configuration and an expanded configuration and arranged such that the expansion portion urges outwardly from the axis of the body towards the bone surrounding the bore hole when moving towards the expanded configuration. In addition, the fastener comprises a coupling member for coupling to the expansion portion. The coupling member is moveable along the axis of the body. The fastener also comprises an actuator movable along the axis of the body and arranged to move the coupling member along the axis of the body. One of the coupling member and the expansion portion comprises a recess and the other one of the coupling member and the expansion portion comprises a projection. The projection and the recess are arranged such that a hinge is formed when the projection is received in the recess and the expansion portion is movable about an axis through the projection. The projection is insertable into the recess in a first angular orientation of an axis of the expansion portion relative to the axis of the body and is prevented from retracting out of the recess in a second angular orientation of the axis of the expansion portion relative to the axis of the body.
1 . An expandable fastener for orthopaedic applications, the fastener being arranged for fastening when positioned in a bore hole in bone and comprising:
a body having an axis;
an expansion portion moveable between a contracted configuration and an expanded configuration and arranged such that the expansion portion is configured to urge outwardly from the axis of the body towards the bone surrounding the bore hole when moving towards the expanded configuration;
a coupling member for coupling to the expansion portion, the coupling member being moveable along the axis of the body; and
an actuator movable along the axis of the body and arranged to move the coupling member along the axis of the body;
wherein one of the coupling member and the expansion portion comprises a recess and the other one of the coupling member and the expansion portion comprises a projection, and wherein the projection and the recess are arranged such that a hinge is formed when the projection is received in the recess and the expansion portion is movable about an axis through the projection, and wherein the projection is insertable into the recess in a first angular orientation of an axis of the expansion portion relative to the axis of the body and is prevented from retracting out of the recess in a second angular orientation of the axis of the expansion portion relative to the axis of the body, and
a blocking portion configured to be moveable relative to the coupling member into a blocking configuration, wherein the blocking portion is positioned to block movement of the expansion portion into the first angular orientation when the expansion portion is in the expanded configuration thereby preventing that the expansion portion can de-couple from the coupling member, the blocking portion being arranged for blocking the expansion portion from over-expanding when in the blocking configuration.
2 . The fastener of claim 1 comprising an actuating element positioned such that, when the coupling member and the expansion portion are moved towards the actuating element and the expansion portion contacts the actuating element, further movement of the expansion portion towards the actuating element urges an end of the expansion portion away from the axis of the body to transfer the expansion portion into the expanded configuration.
3 . The fastener of claim 2 wherein the actuating element has an actuating surface and the expansion portion has an inner expansion surface that glides on the actuating surface when the expansion portion transitions from the contracted configuration, or from a configuration of minimal or no expansion, towards the expanded configuration, and wherein the actuating surface and the inner expansion surface have matching shapes at a contact area within which the inner expansion surface glides over the actuating surface whereby likelihood of penetration of the bone between the inner expansion surface and the actuating surface is configured to be reduced or the penetration of the bone is configured to be avoided when the expansion portion is moved towards the expanded configuration in the bone, and wherein the fastener is arranged such that the actuating surface and the inner expansion surface are always in contact when the expansion portion transitions to the expanded configuration.
4 . The fastener of claim 2 wherein the blocking portion is shaped to frictionally engage with an inner surface of the expansion portion when the expansion portion is in the expanded configuration and, because of the frictional engagement, the expansion portion is moved from the expanded configuration towards the contracted configuration when the actuator is moved along the axis of the body in a direction out of the body and away from the actuating element.
5 . The fastener of claim 1 wherein the body comprises a slot and the expansion portion projects through the slot when the expansion portion is in the expanded configuration and wherein the expansion portion and the slot are shaped such that the expansion portion contacts the slot or wherein the slot and the expansion portion form a gap of 20-500 μm thereby configured to reduce likelihood of, or to prevent, ingrowth of bone.
6 . The fastener of claim 5 wherein
the expansion portion is shaped such that the bone is configured to be pushed away by the expansion portion when moved towards the expanded configuration whereby the expansion portion and/or the slot are arranged such that bone accumulation at the expansion portion inside the slot is substantially avoided.
7 . The fastener of claim 5 wherein
the expansion portion has an outer surface that is curved in a plane perpendicular to the axis of the expansion portion and shaped to approximate a curvature of the body of the fastener in a plane perpendicular to the axis of the body whereby the expansion portion is arranged such that, when in the contracted configuration catching of the bone by the expansion portion or portions of the slot is substantially avoided when the fastener is removed from the bore hole in the bone.
8 . The fastener of claim 1 wherein the expansion portion is one of a plurality of expansion portions.
9 . The fastener of claim 1 wherein in the contracted configuration, the axis of the expansion portion is oriented along the axis of the body and wherein the fastener is configured such that movement of the expansion portion from the contracted configuration to an orientation across the axis of the body is necessary to reach the first angular orientation at which the expansion portion can be decoupled from the coupling member.
10 . The fastener of claim 1 wherein the recess and/or the projection are shaped such that surfaces of the projection and the recess frictionally engage with each other when the projection is positioned within the recess and friction between the projection and the recess increases when the expansion portion is moved towards the expanded configuration from the contracted configuration.
11 . The fastener of claim 1 wherein the blocking portion is provided in the form of an end portion of the actuator which is insertable into the body of the fastener and which is in the blocking configuration when inserted and positioned adjacent to the expansion portion.
12 . The fastener of claim 1 wherein the fastener is arranged for projecting through a portion of an orthopaedic nail or another orthopaedic device and the expansion portion has an outer recess arranged to reduce likelihood of jamming with a wall portion of the orthopaedic nail or the another orthopaedic device when the expansion portion moves from the expanded configuration towards the contracted configuration to enable retraction of the fastener out of the bore hole and through the portion of the orthopaedic nail or the another orthopaedic device.
13 . The fastener of claim 1 wherein
the expansion portion comprises a lock-stop portion at which the expansion portion abuts with another portion of the fastener when the expansion portion is in the expanded configuration, wherein the lock-stop portion is arranged to avoid over expansion of the expansion portion and configured to minimize a gap between the expansion portion and the another portion of the fastener thereby reducing likelihood of ingrowth of bone.
14 . The fastener of claim 1 comprising
a spring-loaded mechanism which biases the expansion portion away from the expanded configuration towards the contracted configuration.
15 . The fastener of claim 1 wherein the expansion portion has a distal portion or tip that is shaped such that the bone is configured to be compacted at the distal portion when the expansion portion is moved from the contracted configuration to the expanded configuration when the fastener is positioned in the bore hole in the bone.
16 . The fastener of claim 1 wherein the expansion portion has a modified external surface at a distal end or tip of the expansion portion and the modified external surface is configured to promote growth of bone at the distal end or tip to prevent migration of the fastener, and/or an orthopaedic device which the fastener in use is configured to fasten in the bone, further into the bone than desired when pressure is applied.
17 . The fastener of claim 1 wherein
the expansion portion has a surface that abuts against another surface of the fastener and is shaped such that the expansion portion is moved from the expanded configuration towards the contracted configuration when the coupling member with the actuator is moved along the axis of the body and in a direction out of the body of the fastener.