IP Library Granted Patent US 8,244,390
Granted Patent B2
US 8,244,390 · App. 12/961,818 · Granted Aug 14, 2012

System and method for improved dental geometry representation

Assignee: Align Technology, Inc.
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Quick Facts
Patent No.
US 8,244,390
App. No.
12/961,818
Granted
Aug 14, 2012
Kind
B2
Abstract

A digital data set representing a pre-scanned tooth geometry, including digital data representing a digitally-mirrored contralateral digital tooth model including a crown component, is merged with data representing a scanned patient tooth crown image which lacks sufficient data to completely represent a complete tooth crown to create a complete digital tooth crown model.

Claims (26)

1. A computer-implemented method for modeling a complete tooth of a patient to facilitate dental and/or orthodontic treatment comprising:

generating a first set of digital data representing a first digital tooth model of a first patient tooth including a first crown component, said first set of digital data representing only a partial portion of a surface of said first crown component;

generating a second set of digital data representing a digitally mirrored contralateral tooth model of a second patient tooth that is a contralateral patient tooth to the first patient tooth, the contralateral tooth model including a second crown component, said second set of digital data representing a complete surface of said second crown component; and

combining said first set of digital data and said second set of digital data to create a third set of digital data representing a complete digital tooth crown model of the first patient tooth.

2. The computer-implemented method according to claim 1 , wherein generating the second set of digital data representing the digitally mirrored contralateral tooth model including the second crown component comprises:

providing the digitally mirrored contralateral tooth model including a root component and the second crown component; and

segmenting said second crown component from said root component within said digitally mirrored contralateral digital tooth model.

3. The computer-implemented method according to claim 1 , wherein the combining comprises smoothing a transition area between the combined first set of digital data and the second set of digital data to create the complete digital tooth crown model of the first patient tooth.

4. The computer-implemented method according to claim 1 , wherein the combining further comprises conducting interactive adjustment of the combined first set of digital data and the second set of digital data to create the complete digital tooth crown model of the first patient tooth.

5. The computer-implemented method according to claim 1 , wherein the combining further comprises:

using crown landmarks from said digitally mirrored contralateral tooth model and said first digital tooth model to calculate an initial morphing function used to determine a morphed central axis;

repositioning a central axis of said digitally mirrored contralateral tooth model to be tangent to said morphed central axis;

scaling said repositioned central axis of said digitally mirrored contralateral tooth model to be substantially equal to said morphed central axis in a z-direction; and

calculating a final morphing function through use of the crown landmarks from said digitally mirrored contralateral tooth model and said first digital tooth model.

6. A computer-implemented method for modeling a complete tooth of a patient to facilitate dental and/or orthodontic treatment comprising:

generating a first set of digital data representing a first digital tooth model of a first patient tooth including a first crown component, said first set of digital data representing only a partial portion of a surface of said first crown component;

generating a second set of digital data representing a digitally mirrored contralateral tooth model of a second patient tooth that is a contralateral patient tooth to the first patient tooth, the contralateral tooth model including a root component and a second crown component, said second set of digital data representing a complete surface of said second crown component;

combining said first set of digital data and said second set of digital data to create a third set of digital data representing a complete digital tooth crown model of the first patient tooth; and

segmenting said second crown component from said root component within said digitally mirrored contralateral digital tooth model.

7. The computer-implemented method according to claim 6 , wherein the combining comprises smoothing a transition area between the combined first set of digital data and the second set of digital data to create the complete digital tooth crown model of the first patient tooth.

8. The computer-implemented method according to claim 6 , wherein the combining further comprises conducting interactive adjustment of the combined first set of digital data and the second set of digital data to create the complete digital tooth crown model of the first patient tooth.

9. The computer-implemented method according to claim 6 , wherein the combining further comprises:

using crown landmarks from said digitally mirrored contralateral tooth model and said first digital tooth model to calculate an initial morphing function used to determine a morphed central axis;

repositioning a central axis of said digitally mirrored contralateral tooth model to be tangent to said morphed central axis;

scaling said repositioned central axis of said digitally mirrored contralateral tooth model to be substantially equal to said morphed central axis in a z-direction; and

calculating a final morphing function through use of the crown landmarks from said digitally mirrored contralateral tooth model and said first digital tooth model.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2023
From: KUO, ERIC; MATOV, VADIM; CHENG, JIHUA
To: ALIGN TECHNOLOGY, INC.
Reel/Frame 062612/0543 →
Continuity (2)
Division 11951812 · Dec 6, 2007
Related Publication 20110077913A1 · Mar 31, 2011