GLENOID IMPLANT FOR REVERSE SHOULDER PROSTHESIS
20230404767 ยท 2023-12-21
Assignee
Inventors
- Hassan WAHAB (Angers, FR)
- Carlos TORRENS (Castelldefels, FR)
- Herrick SIEGEL (Mountain Brook, AL, US)
- Umasuthan SRIKUMARAN (Ellicott City, MD, US)
- Raul Barco (Madrid, ES)
Cpc classification
A61B17/1725
HUMAN NECESSITIES
A61F2002/4085
HUMAN NECESSITIES
International classification
Abstract
A glenoid implant for reverse shoulder prosthesis, having a base for anchoring the implant to a bone formed by a rod configured to extend through the thickness of the bone from a glenoid fossa, the rod including through-holes, and by screws for anchoring the rod configured to cross radially the rod, via the through-holes, and the bone, when the glenoid implant is implanted on the bone.
Claims
1. A glenoid implant for reverse shoulder prosthesis comprising a base for anchoring the implant to a bone formed by a rod configured to extend through the thickness of the bone from a glenoid fossa, the rod comprising through-holes, and by screws for anchoring the rod configured to cross radially the rod, via the through-holes, and the bone, when the glenoid implant is implanted on the bone.
2. The glenoid implant according to claim 1, further comprising a glenosphere added to the rod.
3. The glenoid implant according to claim 1, wherein the rod comprises a surface for receiving a spacer for attaching the rod to the glenosphere.
4. The glenoid implant according to claim 3, wherein the receiving surface comprises a bore configured to collaborate with the spacer and a groove surrounding the bore, the groove being configured to interact with a tool for gripping and guiding the rod.
5. The glenoid implant according to claim 3, wherein the spacer is formed by a first portion for attaching the spacer to the rod and a second portion for attaching the spacer to the glenosphere, the first portion and the second portion being offset with respect to each other.
6. The glenoid implant according to claim 5, wherein the first portion and the second portion are inclined with respect to each other.
7. The glenoid implant according to claim 1, further comprising a part for stabilizing the glenoid implant with respect to the bone when the glenoid implant is implanted on the bone.
8. The glenoid implant according to claim 7, wherein the stabilizing part comprises two stabilizing ends configured to extend each side of the bone when the glenoid implant is implanted on the bone.
9. A reverse shoulder prosthesis comprising a glenoid implant according to claim 1.
10. A tool for gripping and guiding a glenoid implant according to claim 1, comprising an end for locking to the rod and a gripping end, the gripping end extending at least partly parallel to the rod when the gripping and guiding tool is attached to the rod, the gripping end comprising at least one guiding hole to insert the anchor screws.
11. The gripping and guiding tool according to claim 10, comprising at least one guiding element to insert the anchor screws that is removable with respect to the gripping end and which can extend between the guiding hole and a through-hole.
12. The gripping and guiding tool according to claim 10, wherein the gripping end is movable in rotation with respect to the locking end.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0026] The invention will be better understood on reading the following description, given solely by way of example and with reference to the accompanying drawings in which:
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DETAILED DESCRIPTION
[0042] We now refer to
[0043] This glenoid implant 2 comprises an anchoring base formed by a rod 4 configured to extend through the thickness of a bone 6 (a scapula shown on
[0044] The rod 4, shown alone on
[0045] The rod 4 may comprise a face 10 for receiving a spacer 12, the receiving face 10 possibly comprising a bore 14, for example tapped, to attach the spacer 12 via a screw and/or a cone or a clip, for example by screwing if the bore 14 is tapped, possibly completed by a groove 16 forming a surface for interacting with a gripping and guiding tool 36 described below.
[0046] The rod 4 further comprises through-holes 18 for inserting the anchor screws 8, in this case three. Preferably, the through-holes 18 are made in areas of the rod 4 which will be located at the thickest areas of the bone 6. Thus, the anchor screws 8 will go through a thickness of bone 6 that is as large as possible. In addition, the rod 4 can be locked by soliciting the acromion and the coracoid.
[0047] As outlined above, the rod 4 can receive a spacer (or added ring) 12. The latter is used to form a remote link between the rod 4 and the glenosphere 20.
[0048] This spacer 12 may be formed in one piece or consist of several parts assembled to each other. It may be completely coaxial with the rod 4 or have an axis for attaching the glenosphere 20 that is offset with respect to the axis for attaching the spacer 12 to the rod 4. These attachment axes may or may not be parallel with each other. These various configurations can be used to adapt the glenoid implant 2 to the patient receiving it. The spacer 12 is added to the rod 4 once the latter has been locked to the bone 6.
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[0051] As for the rod 4, the spacer 12 is made of a biocompatible material having an optimum lifetime that is as long as possible, allowing good distribution of the mechanical stresses. The spacer 12 can in particular be made entirely or partially of metal, plastic or ceramic. It can also be made of several different materials, including a composition of the above-mentioned materials.
[0052] In the examples described, the spacer 12 is a part added to the rod 4. It could also be made in one piece with the latter and form an end of the rod 4.
[0053] The glenosphere 20 is shown on
[0054] The glenosphere 20 can be centered or not and can be lateralized if necessary (as described above, in particular depending on the shape of the spacer 12). Centering means that a protrusion 28 that is used to attach the glenosphere 20 to the spacer 12 extends from the center of the flat surface of the hemisphere in a direction perpendicular to the plane in which the flat surface of the hemisphere extends. Off-centering, for example between 1 and 4 millimeters, means that a protrusion 28 that is used to attach the glenosphere 20 to the spacer 12 does not extend from the center of the flat surface of the hemisphere. The protrusion 28 may comprise an external thread in order to screw the glenosphere 20 onto the spacer 12, more particularly in the hole of the second portion 24 or 24 of the spacer 12, threaded in this case as described above.
[0055] The glenosphere 20 can be marked, for example by engraving, to indicate its diameter, the fact that it is centered or off-centered or, and if necessary, to write text identifying the portion of the glenosphere 20 to be placed at an angle towards the upper position of the scapula, in other words UP in the example shown on
[0056] The possibility of using a glenosphere 20 of variable diameter, centered of off-centered, provides an additional possibility for adapting the glenoid implant 2 to the patient, in addition to the choice of the shape of the spacer 12 and the size of the rod 4.
[0057] The glenoid implant 2 may further comprise a stabilizing part 30 (or stabilizing fork). The latter, shown alone on
[0058] This stabilizing part 30 may comprise an end 32, advantageously drilled, for locking the stabilizing part 30 to the rod 4 and two stabilizing ends 34. The latter are arranged opposite each other so as to extend each side of the bone 6 (in this case the scapula) when the glenoid implant 2 is positioned. At least one stabilizing end 34 could rest against the bone 6 when the glenoid implant 2 is positioned. In this case, it can have a flat surface extending parallel to the bone 6 in order to rest against a large area. The number and shape of the stabilizing ends 34 may vary.
[0059] The stabilizing part 30 could also provide additional bone anchoring for the glenoid implant 2. At least one stabilizing end 34 (or the stabilizing end if there is only one) may in this case comprise a through-hole to attach it to the bone 6, for example by screwing, and thus create an additional anchor point.
[0060] As described above for other elements, the stabilizing part 30 is made of a biocompatible material having an optimum lifetime that is as long as possible, allowing good distribution of the forces. It may for example be made of a titanium alloy, stainless steel, cobalt chromium or a polymer material.
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[0062] The locking end 38 and the gripping end 40 are advantageously two separate parts of the gripping and guiding tool 36. Consequently, the locking end 38 is firstly added to the rod 4 (whether or not the latter is provided with the stabilizing part 30). This locking end 38 is advantageously hollow and partially tapped in order to insert an intermediate part 39 comprising at least an external thread in order to lock by screwing the locking end 38 onto the rod 4 (see
[0063] The gripping end 40 is then added to the locking end 38 (see
[0064] The gripping end 40 comprises a part extending parallel to the rod 4 when the latter is held by the gripping and guiding tool 36 and comprises holes 46 that can be aligned with the through-holes 18. These guiding holes 46 are used to guide a surgeon when positioning the rod 4. The alignment allows the surgeon to know where to drill the bone 6 to reach a through-hole 18. To do this, the surgeon can position a guiding element 48, in this case of cylindrical shape, that extends from the guiding holes 46 and perpendicularly to the rod 4 and to the part of the gripping end 40 that has the guiding holes 46 (see
[0065]
[0066] As shown on
LIST OF REFERENCES
[0067] 2: glenoid implant [0068] 4: rod [0069] 6: bone [0070] 8: anchor screw [0071] 10: receiving surface [0072] 12: spacer [0073] 14: bore [0074] 16: groove [0075] 18: through-holes [0076] 20: glenosphere [0077] 22, 22: first portions of the spacer [0078] 24, 24: second portions of the spacer [0079] 26: protuberance [0080] 28: protrusion [0081] 30: stabilizing part [0082] 32: locking end [0083] 34: stabilizing end [0084] 36: gripping and guiding tool [0085] 38: locking end [0086] 39: intermediate part [0087] 40: gripping end [0088] 42: attachment slot [0089] 44: knurled head screw [0090] 46: guiding holes [0091] 48: guiding element [0092] A: longitudinal axis of the rod