IP Library › Granted Patent US 10,426,711
Granted Patent B2
US 10,426,711 · App. 14/272,566 · Granted Oct 1, 2019

Dental implant framework

Inventors: Drew Schulter (Memphis, TN); Carl Schulter (Germantown, TN); Kyle Fraysur (Cordova, TN); Daryl Newman (Williston, TN); Belal Hamadeh (Memphis, TN)
A61K6/04A61B6/032A61B6/14A61C5/77A61C8/0027A61C8/0048A61C8/0054A61C9/0053A61C13/0004A61C13/0006A61C13/01A61C13/34A61C8/0001A61C13/0013
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,426,711
App. No.
14/272,566
Granted
Oct 1, 2019
Kind
B2
Abstract

An improved method of a dental framework design and manufacturing, incorporating a dental framework design volume to eliminate framework or denture teeth modification post framework manufacturing.

Claims (65)

1. A dental prosthesis and a plurality of implants and abutments to which the dental prosthesis mates, wherein the dental prosthesis comprises:

a plurality of support posts, a plurality of crowns and a dental implant framework;

where the position of the plurality of support posts and the plurality of crowns is determined from digital data defining the appropriate tooth position for the dental prosthesis;

where the plurality of support posts and the plurality of crowns consist of predefined dimensions;

a plurality of fittings to mate with the corresponding plurality of implants and abutments when inserted in the patient's mouth;

where the position of the plurality of fittings has been determined through the use of digital data identifying the location of the plurality of implants and abutments in the patient's mouth;

a bridging structure or plurality of bridging structures attaching the support posts and fittings to one another; and

the combination of the bridging structure or plurality of bridging structures, plurality of support posts, and plurality of fittings providing the complete embodiment of the dental implant framework.

2. The dental prosthesis of claim 1 , where the plurality of crowns are intended to intimately mate to the plurality of support posts of the dental implant framework.

3. The dental prosthesis of claim 2 , wherein the design of the plurality of support posts is based upon at least one of the contours of each crown of the plurality of crowns and the contours of the tooth that each crown of the plurality of crowns is intended to replace.

4. The dental prosthesis of claim 2 , where in the design of the plurality of support posts includes at least one of a planar margin where each crown of the plurality of crowns will mate and a non-planar margin where each crown of the plurality of crowns will mate.

5. The dental prosthesis of claim 2 , wherein the design of each crown of the plurality of crowns is based upon at least one of the contours and dimensions of the tooth it is intended to replace, the contours of denture teeth and a standardized library of crown files.

6. The dental prosthesis of claim 2 , where the plurality of crowns and plurality of support posts are fully parametric and easily edited during the design phase.

7. The dental prosthesis of claim 6 , where each crown of the plurality of crowns have features, each support post of the plurality of support posts have features and where the features of each crown of the plurality of crowns and the features of each support post of the plurality of support posts are dependent upon one another; and

this dependency allows for changes in orientation, dimensions or features in any one of the support posts of the plurality of the support posts or any one of the crowns of the plurality of crowns as a result of modifications to the associated support post or crown.

8. The dental prosthesis of claim 7 , where each crown of the plurality of crowns include at least one of a separate CAD body for a coping, a separate CAD body for a cutback coping, a selectable feature to reduce each crown of the plurality of crowns body to a coping, and a selectable feature to reduce each crown of the plurality of crowns body to a cutback coping.

9. The dental prosthesis of claim 2 , where the plurality of crowns are united to create a bridge.

10. The dental prosthesis of claim 9 , where the bridge includes the gingiva contours captured from at least one of the digital data defining the appropriate tooth position for the final dental prosthesis and contours as designed by the operator.

11. The dental prosthesis of claim 2 , where each crown of the plurality of crowns include the gingiva contours captured from at least one of the digital data defining the appropriate tooth position for the final dental prosthesis and contours as designed by the operator.

12. The dental prosthesis of claim 2 , where the support posts of the plurality of support posts are united into a larger singular support post intended to support a bridge.

13. The dental prosthesis of claim 12 , where the larger singular support post is modified in order to support a bridge.

14. The dental prosthesis of claim 1 , where the plurality of crowns and dental implant framework can be manufactured simultaneously.

15. The dental prosthesis of claim 14 , where each crown of the plurality of crowns is fabricated out of at least one of a metallic material, a ceramic material, an acrylic material, and a biocompatible material.

16. The dental prosthesis of claim 14 , where the dental implant framework is fabricated out at least one of titanium or other metallic materials, Zirconia or other ceramic materials, acrylic or other composite materials, and a biocompatible material.

17. The dental prosthesis of claim 1 , where in the digital data defining the appropriate tooth position is derived from at least one of scanning a diagnostic wax up or denture tooth set up, the alignment of tooth or crown CAD models in a virtual set up, the alignment of the plurality of support post and plurality of crown assemblies in a virtual set up, an intraoral scan of a diagnostic wax up or denture tooth set up taken in the patient's mouth, a CT scan or series of CT scans of the patient's mouth, and a CT scan or series of CT scans with the use of a radiographic stent in the patient's mouth.

18. The dental prosthesis of claim 1 , where in the digital data for locations of the plurality of implants and abutments have been derived from at least one of scanning analogs in a stone cast of the patient, an intraoral scan of the plurality of implants and abutments in the patient's mouth, digital surgical planning of the proposed implant positions on the basis of a CT scan or series of CT scans, and a CT scan or series of CT scans.

19. The dental prosthesis of claim 1 , where the gingiva structures of the prosthesis can be constructed out of at least one of acrylic and ceramic material.

20. A dental implant framework intended to mate with plurality of crowns and a plurality of implants and abutments comprising:

a plurality of support posts for supporting and mating with a plurality of crowns;

where the position of each of the support posts of the plurality of support posts is determined from digital data defining the appropriate tooth position for the dental prosthesis;

where each support post of the plurality of support posts consist of predefined dimensions;

a plurality of fittings to mate with the corresponding plurality of implants and abutments when in the patient's mouth;

where the position of each of the fittings of the plurality of fittings has been determined through the use of digital data identifying the location of the plurality of implants and abutments in the patient's mouth;

a bridging structure or plurality of bridging structures attaching the plurality of support posts and the plurality of fittings to one another; and

the combination of the bridging structure or plurality of bridging structures, the plurality of support posts, and the plurality of fittings provides the complete embodiment of the dental implant framework.

21. The dental implant framework of claim 20 , where in the digital data defining the appropriate tooth position is derived from at least one of scanning a diagnostic wax up or denture tooth set up, the alignment of tooth or crown CAD models in a virtual set up, the alignment of the plurality of support posts and the plurality of crowns in a virtual set up, an intraoral scan of a diagnostic wax up or denture tooth set up taken in the patient's mouth, a CT scan or series of CT scans of the patient's mouth, and a CT scan or series of CT scans with the use of a radiographic stent in the patient's mouth.

22. The dental implant framework of claim 20 , wherein the design of each of the support posts of the plurality of support posts is based upon at least one of the contours of each of the crowns of the plurality of the crowns it is intended to mate to and the tooth that each crown of the plurality of crowns is intended to replace.

23. The dental implant framework of claim 20 , where in the design of the plurality of support posts includes at least one of a planar margin where the plurality of crowns will mate and a non-planar margin where the plurality of crowns will mate.

24. The dental implant framework of claim 20 , where the design of the framework is performed concurrently with the design of each crown of the plurality of crowns that are intended to mate with the framework.

25. The dental implant framework of claim 20 , where each support post of the plurality of support posts are fully parametric and easily edited during the design phase.

26. The dental implant framework of claim 20 , where in the digital data for locations of the plurality of implants and abutments have been derived from at least one of the scanning the analogs in the stone cast of the patient, an intraoral scan of the plurality of implants and abutments in the patient's mouth, digital surgical planning of the proposed implant positions on the basis of a CT scan or series of CT scans, and a CT scan or series of CT scans.

27. The dental implant framework of claim 20 , where the dental implant framework is fabricated out of at least one of titanium or other metallic materials, zirconia or other ceramic materials, acrylic or other composite materials, and a biocompatible material.

28. A method for designing and fabricating a dental prosthesis comprising of a dental implant framework and a plurality of crowns intended to mate to a plurality of implants and abutments comprising:

providing digital data of the tooth orientation or to determine the tooth orientation for the dental prosthesis;

aligning each crown of the plurality of crowns and each support post of a plurality of support posts relative to the digital data of the tooth orientation or determined tooth orientation for the proposed final prosthesis;

providing digital data of the position of the plurality of implants and abutments in the patients mouth;

aligning a plurality of fittings relative to the digital data which captures the position of the plurality of implants and abutments in the patient's mouth;

utilizing bridging structures to attach the plurality of support posts and the plurality of fittings to one another;

combining the plurality of fittings, plurality of support posts, and bridging structures to define a final CAD model of the dental implant framework; and

exporting the CAD models of the framework and the plurality of crowns to be simultaneously manufactured.

29. The method of claim 28 , where in the digital data defining the appropriate tooth position is derived from at least one of scanning a diagnostic wax up or denture tooth set up, the alignment of tooth or crown CAD models in a virtual set up, the alignment of each support post of the plurality of support posts and each crown of the plurality of crowns in a virtual set up, an intraoral scan of a diagnostic wax up or denture tooth set up taken in the patient's mouth, a CT scan or series of CT scans of the patient's mouth, and a CT scan or series of CT scans with the use of a radiographic stent in the patient's mouth.

30. The method of claim 29 , where support post of the plurality of support posts and each crown of the plurality of crowns are imported from at least one of a CAD library of support posts and crowns, are imported and aligned together and are imported and aligned separately.

31. The method of claim 30 , where in the design of each support post of the plurality of support posts is based upon at least one of the contours of each crown of the plurality of crowns and the tooth each crown of the plurality of crowns is intended to replace.

32. The method of claim 31 , where in the design of each support post of the plurality of support posts includes at least one of a planar margin where the plurality of crowns will mate and a non-planar margin where the plurality of crowns will mate.

33. The method of claim 32 , where the design of each crown of the plurality of crowns is based upon at least one of the contours and dimensions of the tooth it is intended to replace, the contours of denture teeth and standardized library of crown files.

34. The method of claim 33 , where each crown of the plurality of crowns and each support post of the plurality of support posts are fully parametric and easily edited during the design phase.

35. The method of claim 34 , where each crown of the plurality of crowns have features, each support post of the plurality of support posts have features and the features of the plurality of crowns and the features of the plurality of support posts are dependent upon one another; and

this dependency allows for changes in orientation, dimensions or features in any of the crowns of the plurality of crowns or any of the supports of the plurality of support posts will result in modifications to the second dependent body.

36. The method of claim 35 , where the each crown of the plurality of crowns include at least one of a separate CAD body for a coping, a separate CAD body for a cutback coping, a selectable feature to reduce the body of each crown of the plurality of crowns to a coping and a selectable feature to reduce the body of each crown of the plurality of crowns to a cutback coping.

37. The method of claim 36 , where the plurality of crowns are united to one another in creating a bridge.

38. The method of claim 37 , where the gingiva contours captured in the digital data defining the appropriate tooth position for the final dental prosthesis are included from at least one of design of each crown of the plurality of crowns and in the design of each crown of the plurality of crowns as designated by the operator.

39. The method of claim 38 , where in the digital data for locations of the plurality of implants and abutments have been derived from at least one of scanning the analogs in the stone cast of the patient, an intraoral scan of the plurality of implants and abutments in the patient's mouth, digital surgical planning of the proposed implant positions on the basis of a CT scan or series of CT scans, and a CT scan or series of CT scans.

40. The method of claim 39 , where the gingiva structures of the prosthesis can be constructed out of at least one of acrylic and ceramic material.

41. The method of claim 40 , where the plurality of crowns are fabricated out of at least one of a metallic material and a ceramic material.

42. The method of claim 41 , where the dental implant framework is fabricated out of at least one of titanium or other metallic materials, zirconia or other ceramic materials, acrylic or other composite materials, and a biocompatible material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2014
From: SCHULTER, DREW, MR.; SCHULTER, CARL, DR.; FRAYSUR, KYLE, MR.; NEWMAN, DARYL, MR.; HAMADEH, BELAL, MR.
To: CAGENIX, INC.
Reel/Frame 032847/0601 →
Continuity (1)
Related Publication 20150320520A1 · Nov 12, 2015