Patient-specific augmented glenoid systems and methods
US-2018303618-A1 · Oct 25, 2018 · US
US11311301B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11311301-B2 |
| Application number | US-202016749684-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 22, 2020 |
| Priority date | Aug 14, 2014 |
| Publication date | Apr 26, 2022 |
| Grant date | Apr 26, 2022 |
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A bone reamer is provided and may include a shaft and a cutting element. The shaft may include a proximal end, a distal end, and a flexible portion. The flexible portion may be disposed between the proximal and distal ends. The cutting element may be carried by the shaft and may include a cutting surface facing the distal end of the shaft. The distal end of the shaft may be offset from the cutting surface.
Opening claim text (preview).
What is claimed is: 1. A bone reaming system comprising: a bone reamer including a shaft and a cutting element carried by the shaft, the shaft including an outer surface extending from a proximal end to a distal end of the shaft, the distal end including a distal shaft opening, the cutting element including a distally-facing cutting surface positioned adjacent to the distal end and comprising a plurality of cutting teeth extending therefrom, the cutting surface extending along a cutting plane that is substantially perpendicular to the outer surface of the shaft at the distal end; and a guide including a flange portion supported by a body portion of the guide, the flange portion extending radially from the body portion and including a bone-contacting support surface and an opposite guide surface, the body portion including a boss extending away from the support surface along a first longitudinal axis and configured for insertion within a bone, a hub extending away from the guide surface along a second longitudinal axis and configured to be at least partially received within the distal shaft opening such that the cutting element is rotatable about the second longitudinal axis, and a cannula formed within the boss and the hub and extending along the first longitudinal axis, the second longitudinal axis forming an acute angle with the first longitudinal axis. 2. The bone reaming system of claim 1 , wherein the guide surface extends in a direction substantially perpendicular to the second longitudinal axis. 3. The bone reaming system of claim 2 , wherein the support surface defines a substantially spherical profile. 4. The bone reaming system of claim 1 , wherein the hub includes a tapered cute surface. 5. The bone reaming system of claim 1 , wherein the guide surface includes a channel disposed about the hub, the channel extending in a direction substantially parallel to the second longitudinal axis. 6. The bone reaming system of claim 5 , wherein the channel includes a stop surface extending in a direction substantially perpendicular to the second longitudinal axis. 7. The bone reamer of claim 1 , wherein the shaft defines a cannula. 8. The bone reamer of claim 7 , wherein the cannula includes a first portion having a first diameter and a second portion having a second diameter greater than the first diameter. 9. The bone reamer of claim 8 , wherein the shaft includes a flexible onion disposed between the proximal and distal ends, and wherein at least a portion of the second portion is aligned with the flexible portion of the shaft. 10. The bone reamer of claim 1 , wherein the cutting element is monolithically formed with the shaft. 11. The bone reamer of claim 1 , wherein the cutting surface is offset proximally from the distal end of the shaft. 12. A bone reaming system comprising: a bone reamer including a shaft and a cutting element affixed to and rotatable with the shaft, the shaft including a proximal end and a distal end, the cutting element being offset proximally from the distal end, and the distal end including a distal shaft opening; and a guide including a flange portion supported by a body portion of the guide, the flange portion extending radially from the body portion and including a bone-contacting support surface and an opposite guide surface, the body portion including a boss extending away from the support surface along a first longitudinal axis and configured for insertion within a bone, a hub extending away from the guide surface along a second longitudinal axis and configured to be at least partially received within the distal shaft opening such that the cutting element is rotatable about the second longitudinal axis, and a cannula formed within the boss and the hub and extending along the first longitudinal axis, the second longitudinal axis forming an acute angle with the first longitudinal axis, wherein the guide surface includes a channel disposed about the hub, the channel extending in a direction substantially parallel to the second longitudinal axis and configured to receive the distal end of the shaft when the hub is at least partially received within the distal shaft opening. 13. The bone reaming system of claim 12 , wherein the shaft of the bone reamer is cannulated. 14. The bone reaming system of claim 13 , wherein the cutting element includes a plurality of radially extending cutting arms. 15. The bone reaming system of claim 12 , wherein the guide surface extends in a direction substantially perpendicular to the second longitudinal axis. 16. The bone reaming system of claim 15 , wherein the support surface defines a substantially spherical profile. 17. A bone reaming system comprising: a bone reamer including a shaft and a cutting element affixed to and rotatable with the shaft, the shaft including a proximal end and a distal end, the cutting element being offset proximally from the distal end, and the distal end including a distal shaft opening; and a guide including a flange portion supported by a body portion of the guide, the flange portion extending radially from the body portion and including a bone-contacting support surface and an opposite guide surface, the body portion including a boss extending away from the support surface along a first longitudinal axis and configured for insertion within a bone, a hub extending away from the guide surface along a second longitudinal axis and configured to be at least partially received within the distal shaft opening such that the cutting element is rotatable about the second longitudinal axis, a channel defined in the guide surface about the hub extending in a direction substantially parallel to the second longitudinal axis, and a cannula formed within the boss and the hub and extending along the first longitudinal axis, the second longitudinal axis forming an acute angle with the first longitudinal axis; wherein the distal end of the shaft is configured to be received within the channel to control a cutting depth of the cutting element.
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