IP Library › Granted Patent US 10,646,317
Granted Patent B2
US 10,646,317 · App. 15/861,125 · Granted May 12, 2020

Occlusal state identifying method, occlusal state identifying apparatus, and storage medium

Inventors: Ryosuke Ohtake (Atsugi, JP); Katsumi Umekawa (Yokohama, JP); Tatsukiyo Ishimura (Kawasaki, JP)
Assignee: FUJITSU LIMITED
A61C19/05G06T19/20A61C2007/004G16H50/50
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Quick Facts
Patent No.
US 10,646,317
App. No.
15/861,125
Granted
May 12, 2020
Kind
B2
Abstract

An occlusal state identifying method executed by a processor included in an occlusal state identifying apparatus, the occlusal state identifying method includes obtaining maxillary shape data and mandibular shape data; arranging a maxillary image including a plurality of maxillary teeth corresponding to the obtained maxillary shape data and a mandibular image including a plurality of mandibular teeth corresponding to the obtained mandibular shape data such that corresponding teeth oppose each other; executing a moving process of moving at least one of the arranged maxillary image and mandibular image by executing a dynamic simulation; and identifying a positional relationship between the maxillary image and the mandibular image after the moving process as a positional relationship corresponding to an occlusal state of the maxillary teeth included in the maxillary image and the mandibular teeth included in the mandibular image.

Claims (41)

1. An occlusal state identifying method executed by a processor included in an occlusal state identifying apparatus, the occlusal state identifying method comprising:

obtaining maxillary shape data and mandibular shape data;

arranging a maxillary image including a plurality of maxillary teeth corresponding to the obtained maxillary shape data and a mandibular image including a plurality of mandibular teeth corresponding to the obtained mandibular shape data such that a center of gravity of corresponding predetermined teeth match each other;

defining a state where maxillary teeth included in the maxillary image, which has fallen naturally, collide with mandibular teeth included in the mandibular image and stop, by executing a dynamic simulation based on the arranged maxillary image and the arranged mandibular image; and

identifying a positional relationship between the maxillary image and the mandibular image obtained by the defined state as a positional relationship corresponding to an occlusal state of the maxillary teeth included in the maxillary image and the mandibular teeth included in the mandibular image.

2. The occlusal state identifying method according to claim 1 , further comprising

outputting an occlusal image including the maxillary image and the mandibular image arranged respectively in the positional relationship between the maxillary image and the mandibular image after the moving process.

3. The occlusal state identifying method according to claim 1 ,

wherein the maxillary shape data and the mandibular shape data are scan data generated by a 3D scanner device.

4. The occlusal state identifying method according to claim 1 , wherein the defining includes

moving the maxillary image, where the mandibular image is fixed, until the maxillary image contacts and stops on the mandibular image.

5. The occlusal state identifying method according to claim 1 , wherein the defining includes

moving the mandibular image, where the mandibular image is fixed, until the maxillary image contacts and stops on the mandibular image.

6. The occlusal state identifying method according to claim 1 ,

wherein the dynamic simulation is executed under a condition where a frictional force between the mandibular image and the maxillary image is substantially zero.

7. The occlusal state identifying method according to claim 1 , further comprising

outputting movement/rotation information indicating a movement amount and/or a rotation amount of the mandibular image and/or the maxillary image moved by executing the dynamic simulation.

8. An occlusal state identifying apparatus comprising:

a memory; and

a processor coupled to the memory and configured to:

obtain maxillary shape data and mandibular shape data,

arrange a maxillary image including a plurality of maxillary teeth corresponding to the obtained maxillary shape data and a mandibular image including a plurality of mandibular teeth corresponding to the obtained mandibular shape data such that corresponding a center of gravity of corresponding predetermined teeth match each other,

define a state where maxillary teeth included in the maxillary image, which has fallen naturally, collide with mandibular teeth included in the mandibular image and stop, by executing a dynamic simulation based on the arranged maxillary image and the arranged mandibular image, and

identify a positional relationship between the maxillary image and the mandibular image obtained by the defined state as a positional relationship corresponding to an occlusal state of the maxillary teeth included in the maxillary image and the mandibular teeth included in the mandibular image.

9. The occlusal state identifying apparatus according to claim 8 , wherein the processor is configured to

output an occlusal image including the maxillary image and the mandibular image arranged respectively in the positional relationship between the maxillary image and the mandibular image after the moving process.

10. The occlusal state identifying apparatus according to claim 8 ,

wherein the maxillary shape data and the mandibular shape data are scan data generated by a 3D scanner device.

11. The occlusal state identifying apparatus according to claim 8 , wherein the processor is configured to

move the maxillary image until the maxillary image contacts the mandibular image which is fixed and stops.

12. The occlusal state identifying apparatus according to claim 8 , wherein the processor is configured to

move the mandibular image until the mandibular image contacts the maxillary image which is fixed and stops.

13. The occlusal state identifying apparatus according to claim 8 ,

wherein the dynamic simulation is executed under a condition where a frictional force between the mandibular image and the maxillary image is substantially zero.

14. The occlusal state identifying apparatus according to claim 8 , wherein the processor is configured to

output movement/rotation information indicating a movement amount and/or a rotation amount of the mandibular image and/or the maxillary image moved by executing the dynamic simulation.

15. A non-transitory computer-readable storage medium storing a program that causes a processor included in an occlusal state identifying apparatus to execute a process, the process comprising:

obtaining maxillary shape data and mandibular shape data;

arranging a maxillary image including a plurality of maxillary teeth corresponding to the obtained maxillary shape data and a mandibular image including a plurality of mandibular teeth corresponding to the obtained mandibular shape data such that a center of gravity of corresponding predetermined teeth match each other;

defining a state where maxillary teeth included in the maxillary image, which has fallen naturally, collide with mandibular teeth included in the mandibular image and stop, by executing a dynamic simulation based on the arranged maxillary image and the arranged mandibular image; and

identifying a positional relationship between the maxillary image and the mandibular image obtained by the defined state as a positional relationship corresponding to an occlusal state of the maxillary teeth included in the maxillary image and the mandibular teeth included in the mandibular image.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2018
From: OHTAKE, RYOSUKE; UMEKAWA, KATSUMI; ISHIMURA, TATSUKIYO
To: FUJITSU LIMITED
Reel/Frame 044626/0817 →
Priority Claims (1)
JP 2017-011106 · Jan 25, 2017 · national
Continuity (1)
Related Publication 20180206958A1 · Jul 26, 2018