Anatomically guided instrumentation for trochlear groove replacement
US-2015374386-A1 · Dec 31, 2015 · US
US9351739B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9351739-B2 |
| Application number | US-201314145532-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 31, 2013 |
| Priority date | Dec 31, 2013 |
| Publication date | May 31, 2016 |
| Grant date | May 31, 2016 |
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A tunneling device ( 10 ) for introduction into a body via a linearly extending guide ( 100 ) is formed as an elongated tunneling device ( 10 ) having an end portion ( 10 E) bent to a predefined curvature. The elongated tunneling device ( 10 ) when confined in the linearly extending guide ( 100 ) is confined lengthwise in the guide ( 100 ). Upon movement of the tunneling device, advancing past the guide ( 100 ) into the body, the end portion ( 10 E) of the tunneling device ( 10 ) returns to the predefined curvature without requiring any external physical resistance of load forces to initiate the bending.
Opening claim text (preview).
What is claimed is: 1. A tunneling device for introduction into a body via a linearly extending guide, the device comprising: an elongated tunneling device having an end portion with a predefined curvature, the elongated tunneling device when confined in the linearly extending guide is confined lengthwise in the guide; wherein upon movement of the tunneling device advancing past the guide into the body, the end portion of the tunneling device returns to the predefined curvature without requiring any external physical resistance or external load forces to initiate the bending, wherein the tunneling device is an elongated rod, and wherein the rod includes a plurality of cut slots spaced along the rod along the entry portion wherein the slots are on an exterior side of the rod opposite the radius of curvature, wherein the inside surface of the rod adjacent the radius of curvature is smooth and the outside surface aligned with the curvature has the cut slots and upon bending the cut slots open wider. 2. The tunneling device of claim 1 wherein the elongated rod is non-hollow. 3. The tunneling device of claim 1 wherein the predefined curvature of the entry end position has one or more predetermined radius of curvature. 4. The tunneling device of claim 3 wherein the radius of curvature is a constant. 5. The tunneling device of claim 3 wherein a tangent to a maximum curvature at the end or tip is inclined at an angle of 45 degrees or more relative to the straight guide. 6. The tunneling device of claim 3 wherein the final position of a tip of the end portion of the tunneling device is offset from a straight projected path of the linearly extending guide. 7. The tunneling device of claim 1 wherein at least the entry end portion of the tunneling device is made from a shape memory material, the shape memory device having a pre-set memory to bend the entry end portion to the predefined curvature. 8. The tunneling device of claim 7 wherein the shape memory material has a pre-set memory pre-set by heat to the predefined curvature. 9. The tunneling device of claim 8 wherein the shape memory material is a metal or polymer. 10. The tunneling device of claim 9 wherein the shape memory material is a metal alloy. 11. The tunneling device of claim 10 wherein the metal alloy is NiTi (Nickel titanium). 12. The tunneling device of claim 11 wherein the metal alloy is nitinol. 13. The tunneling device of claim 7 wherein the shape memory material is a ferromagnetic shape memory alloy that changes shape under a magnetic field.
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