TIBIAL PROSTHESIS FOR TIBIA WITH VARUS RESECTION
20230036807 · 2023-02-02
Inventors
Cpc classification
A61F2/30749
HUMAN NECESSITIES
A61F2002/30616
HUMAN NECESSITIES
A61F2002/30878
HUMAN NECESSITIES
A61F2002/30884
HUMAN NECESSITIES
International classification
Abstract
Methods, systems and apparatuses are disclosed including apparatuses that can be used in a total knee replacement procedure. According to one example, a tibial implant is disclosed. The tibial implant can be configured for attachment to a tibia in a knee arthroplasty and can include a baseplate having a lateral portion and a medial portion oriented relative to an anteroposterior axis and a fixation member. Each of the lateral portion and the medial portion can have a distal surface configured to interface with a resected proximal surface of a tibia. The fixation member can be coupled to and extend both distally and medially from the baseplate such that the fixation member is oriented at an acute angle relative to the distal surface of the medial portion.
Claims
1. A tibial implant configured for attachment to a tibia in a knee arthroplasty, the tibial implant comprising: a baseplate having a lateral portion and a medial portion oriented relative to an anteroposterior axis, each of the lateral portion and the medial portion having a distal surface configured to interface with a resected proximal surface of the tibia; and a fixation member coupled to and extending both distally and medially from the baseplate such that the fixation member is oriented at an acute angle relative to the distal surface of the medial portion, wherein the acute angle is 86.9 degrees to 82 degrees of varus as measured between the distal surface of the baseplate and an axis of symmetry of the fixation member such that the fixation member is configured to generally align with a central axis of a tibial diaphysis of the tibia when the tibia is coupled to the distal surface of the baseplate.
2. The tibial implant of claim 1, wherein the fixation member comprises one or both of a keel and a stem.
3. The tibial implant of claim 2, wherein one or both of the keel and stem are configured to be removably attached to the baseplate.
4. The tibial implant of claim 3, wherein one or both of the keel and stem are configured to be adjustable 180° relative to the baseplate such that the tibial implant is configured for use with both a left tibia and a right tibia.
5. The tibial implant of claim 2, wherein the stem and keel are configured to couple together, and wherein the stem is configured to couple to the baseplate at the acute angle and coupling of the keel with the stem orients the keel at substantially a same acute angle relative to the distal surface of the medial portion as the acute angle.
6. The tibial implant of claim 2, wherein the stem and keel are configured to couple together, and wherein the keel is configured to couple to the baseplate at the acute angle and coupling of the stem with the keel orients the stem at substantially a same acute angle relative to the distal surface of the medial portion as the acute angle.
7. The tibial implant of claim 1, wherein the fixation member includes a symmetric feature having an axis of symmetry, and wherein the acute angle is measured between the axis of symmetry and the distal surface of the medial portion.
8. The tibial implant of claim 1, wherein the fixation member includes a lateral portion and a medial portion, and wherein the medial portion has a greater surface area than the lateral portion.
9. The tibial implant of claim 1, wherein the baseplate and fixation member are configured such that the fixation member is adjustable 180° relative to the baseplate such that the tibial implant is configured for use with both a left tibia and a right tibia.
10-17. (canceled)
18. The tibial implant of claim 1, wherein the fixation member comprises both of a keel and a stem, wherein the stem is one of a plurality of stems all of the plurality of stems are configured to universally couple with the keel.
19. A tibial implant configured for attachment to a tibia in a knee arthroplasty, the tibial implant comprising: a baseplate having a lateral portion and a medial portion oriented relative to an anteroposterior axis, each of the lateral portion and the medial portion having a distal surface configured to interface with a resected proximal surface of the tibia; and a fixation member coupled to and extending both distally and medially from the baseplate such that the fixation member is oriented at an acute angle relative to the distal surface of the medial portion, wherein the fixation member includes a lateral portion and a medial portion, and wherein the medial portion has a greater surface area than the lateral portion.
20. The tibial implant of claim 19, wherein the acute angle is 86.9 degrees to 82 degrees of varus as measured between the distal surface of the baseplate and an axis of symmetry of the fixation member such that the fixation member is configured to generally align with a central axis of a tibial diaphysis of the tibia when the tibia is coupled to the distal surface of the baseplate.
21. The tibial implant of claim 19, wherein the fixation member comprises one or both of a keel and a stem.
22. The tibial implant of claim 21, wherein one or both of the keel and stem are configured to be removably attached to the baseplate.
23. The tibial implant of claim 22, wherein one or both of the keel and stem are configured to be adjustable 180° relative to the baseplate such that the tibial implant is configured for use with both a left tibia and a right tibia.
24. The tibial implant of claim 19, wherein the baseplate and fixation member are configured such that the fixation member is adjustable 180° relative to the baseplate such that the tibial implant is configured for use with both a left tibia and a right tibia.
25. The tibial implant of claim 1, wherein the fixation member comprises both of a keel and a stem, wherein the stem is one of a plurality of stems all of the plurality of stems are configured to universally couple with the keel.
26. A tibial implant configured for attachment to a tibia in a knee arthroplasty, the tibial implant comprising: a baseplate having a lateral portion and a medial portion oriented relative to an anteroposterior axis, each of the lateral portion and the medial portion having a distal surface configured to interface with a resected proximal surface of the tibia; and a fixation member coupled to and extending both distally and medially from the baseplate such that the fixation member is oriented at an acute angle relative to the distal surface of the medial portion, wherein the fixation member comprises both of a keel and a stem, wherein the stem is one of a plurality of stems all of the plurality of stems are configured to universally couple with the keel.
27. The tibial implant of claim 26, wherein the acute angle is 86.9 degrees to 82 degrees of varus as measured between the distal surface of the baseplate and an axis of symmetry of the fixation member such that the fixation member is configured to generally align with a central axis of a tibial diaphysis of the tibia when the tibia is coupled to the distal surface of the baseplate.
28. The tibial implant of claim 26, wherein the fixation member includes a lateral portion and a medial portion, and wherein the medial portion has a greater surface area than the lateral portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In the drawings, which are not necessarily drawn to scale, like numerals can describe similar components in different views. Like numerals having different letter suffixes can represent different instances of similar components. The drawings illustrate generally, by way of example, but not by way of limitation, various examples discussed in the present document.
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DETAILED DESCRIPTION
[0042] It has been established that a kinematically aligned TKA can improve the results of the TKA, including overall patient satisfaction and mobility. Primary goals of kinematically aligned TKA are (1) positioning the femoral and tibial components of a knee prosthesis such that the angles and levels of the distal and posterior femoral and tibial joint lines are restored to the patient's natural joint line, (2) restoration of the patient's natural or constitutional alignment prior to the patient having developed osteoarthritis, and (3) restoration of the patient's natural soft tissue laxity and envelope. The kinematically aligned TKA can include a determination of three kinematic axes.
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[0044] The present application does not include a description of the surgical procedure for performing a kinematically aligned TKA. Such procedures are discussed, for example, in relation to application Ser. No. 14/809,810, entitled “INSTRUMENTS AND METHODS IN PERFORMING KINEMATICALLY-ALIGNED TOTAL KNEE ARTHROPLASTY” filed Jul. 27, 2015, and Ser. No. 13/819,528, entitled “FEMORAL PROSTHESIS WITH MEDIALIZED PATELLAR GROOVE”, filed Sep. 9, 2011, the entire disclosures of which are incorporated herein by reference and are co-owned by the Applicant. Rather,
[0045]
[0046] Disposition of the femoral component 112 relative to the femoral anatomical axis 120 is indicated by a as measured between a line 124 across the bottom of the femoral condyles 113A and 113B the femoral shaft axis (superimposed with the femoral anatomical axis 120). Disposition of the tibial component 116 relative to the tibial anatomical axis 122 is indicated by β as measured between a line 126 across a base of a tibial plate 128 of the tibial component 116 and a tibial shaft axis (superimposed with the tibial anatomical axis 122). An angle Δ (a tibiofemoral axis) is also indicated and comprises a measure between the femoral shaft axis and the tibial shaft axis.
[0047] An a of 90° comprises a neutral placement of the femoral component 112, α<90° corresponds to varus placement of the femoral component 12, and α>900 corresponds to valgus placement of the femoral component 112. Similarly, if β=900 corresponds to a neutral placement of the tibial component 116, β<900 corresponds to varus placement of placement of the tibial component 116, and β>90° corresponds to valgus placement of the tibial component 116. If Δ=180° this corresponds to a neutral alignment, Δ<180° corresponds to varus alignment, and Δ>180° corresponds to valgus alignment.
[0048] With regard to coronal alignment of the femoral component 112, it has generally been shown that an optimal distal femoral cut is typically 2-7° of valgus. With regard to coronal alignment of the tibial component 116, a certain degree of varus tibial alignment with a varus cut is generally desirable. With the kinematically aligned TKA it has generally been found that tibial component 116 placement of a few more degrees varus (e.g., about 0.1 degrees to about 5 degrees) and the femoral component 112 placed in a few more degrees valgus (e.g., about 0.1 degrees to about 5 degrees) than traditional mechanically aligned TKA results in improved patient outcomes.
[0049] The present inventor has recognized that especially with the additional varus disposition of the tibial component 116 in the kinematically aligned TKA, traditional fixation members for the tibial component 116 such as a stem, keel, or fins (e.g., a keel and stem 130 as shown in
[0050]
[0051] In the example provided, the baseplate 212 and fixation member 214 are coupled together. As shown in
[0052] As shown in
[0053] As shown in the example of
[0054] As shown in the example of
[0055] As shown in
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[0057] Furthermore,
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[0059] The assemblies 308, 408 also can include at least one of a plurality of fixation members 314, 414. Each of the plurality of fixation members 314, 414 can be configured to attach to and extend both distally and medially from the distal surface 318, 418 such that each fixation member 314, 414 of the plurality of fixation members 314, 414 is oriented at an acute angle θ.sub.1, θ.sub.2 relative to the distal surface 318A, 418A of the medial portion 326, 426 when viewed in the frontal or coronal plane. Each of the plurality of fixation members 314, 414 can be configured to differ from others of the plurality of fixation members 314, 414 such that the acute angle θ.sub.2, θ.sub.1 formed by each of the plurality of fixation members 314, 414 when coupled to the baseplate 312, 412 would differ in degree.
[0060] More particular, a keel 330, 430 can be coupled to and extend both distally and medially relative to the distal surface 318, 412 such that the keel 330, 430 creates the acute angle θ.sub.1, θ.sub.2 between the keel 330, 430 and the distal surface 318A, 418A of the medial portion 326, 426 when viewed in the frontal or coronal plane. A stem 340 can be configured to couple with one or both of the keel 330, 430 and the baseplate 312, 412 and can be configured to removably insert within a receptacle 338, 438 of the keel 330, 430.
[0061] It should be noted that although illustrated as assemblies 308, 408 that include almost entirely separate components, in some examples a component such as one or more of the baseplates 312, 412, keels 330, 430, and/or stem 340 can be configured to universally couple with others of the components. For example, in
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[0063] According to the examples of
[0064] The assemblies 508, 608 also can include at least one of a plurality of fixation members 514, 614. Each of the plurality of fixation members 514, 614 can be configured to attach to and extend both distally and medially from the distal surface 518, 618 such that each fixation member 514, 614 of the plurality of fixation members 514, 614 is oriented at an acute angle δ.sub.1, δ.sub.2 relative to the distal surface 518A, 618A of the medial portion 526, 626 when viewed in the frontal or coronal plane. Each of the plurality of fixation members 514, 614 can be configured to differ from others of the plurality of fixation members 514, 614 such that the acute angle δ.sub.1, δ.sub.2 formed by each of the plurality of fixation members 514, 614 when mounted to the baseplate 512, 612 would differ in degree. The examples of
[0065] It should be noted similar to assemblies 308, 408 the assemblies 508, 608 can be have one or more components configured to universally couple with others of the components of the assemblies 508, 608. For example, in
[0066] An example method of performing a knee arthroplasty using a tibial implant such as those discussed herein can include resecting a proximal surface of a tibia to expose a tibial metaphysis, and attaching a tibial implant to the resected surface at a distal surface of a baseplate of the tibial implant. The tibial implant can have a fixation member which is configured to generally align with a central axis of the tibial diaphysis (e.g., indicated by tibial anatomical axis 122 of
[0067]
[0068] The coupling feature 720 can be configured to couple with a base 722 (
[0069] More particularly, the coupling feature 720 can comprise fixation mechanisms known in the art such as those that use a slot, groove, flange, male/female connection, interference, tab, fastener, pin, or other mechanisms to couple the base 722 to the baseplate 712. According to the example of
Additional Notes
[0070] The above detailed description includes references to the accompanying drawings, which form a part of the detailed description. The drawings show, by way of illustration, specific embodiments in which the invention can be practiced. These embodiments are also referred to herein as “examples.” Such examples can include elements in addition to those shown or described. However, the present inventors also contemplate examples in which only those elements shown or described are provided. Moreover, the present inventors also contemplate examples using any combination or permutation of those elements shown or described (or one or more aspects thereof), either with respect to a particular example (or one or more aspects thereof), or with respect to other examples (or one or more aspects thereof) shown or described herein.
[0071] In this document, the terms “a” or “an” are used, as is common in patent documents, to include one or more than one, independent of any other instances or usages of “at least one” or “one or more.” In this document, the term “or” is used to refer to a nonexclusive or, such that “A or B” includes “A but not B,” “B but not A,” and “A and B,” unless otherwise indicated. In this document, the terms “including” and “in which” are used as the plain-English equivalents of the respective terms “comprising” and “wherein.” Also, in the following claims, the terms “including” and “comprising” are open-ended, that is, a system, device, article, composition, formulation, or process that includes elements in addition to those listed after such a term in a claim are still deemed to fall within the scope of that claim. Moreover, in the following claims, the terms “first,” “second,” and “third,” etc. are used merely as labels, and are not intended to impose numerical requirements on their objects.
[0072] The above description is intended to be illustrative, and not restrictive. For example, the above-described examples (or one or more aspects thereof) can be used in combination with each other. Other examples can be used, such as by one of ordinary skill in the art upon reviewing the above description. The Abstract is provided to comply with 37 C.F.R. § 1.72(b), to allow the reader to quickly ascertain the nature of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims. Also, in the above detailed description, various features can be grouped together to streamline the disclosure. This should not be interpreted as intending that an unclaimed disclosed feature is essential to any claim. Rather, inventive subject matter can lie in less than all features of a particular disclosed example. Thus, the following claims are hereby incorporated into the detailed description as examples or embodiments, with each claim standing on its own as a separate example, and it is contemplated that such examples can be combined with each other in various combinations or permutations. The scope of the invention should be determined with reference to the appended claims, along with the full scope of equivalents to which such claims are entitled.