IP Library › Granted Patent US 11,559,378
Granted Patent B2
US 11,559,378 · App. 15/816,120 · Granted Jan 24, 2023

Scanning dental impressions

Inventors: Sergey Nikolskiy (Coto De Caza, CA); David Christopher Leeson (North Tustin, CA); Shih-Kai Lai (Irvine, CA); Loraine Allessandra Queji Silva (Huntington Beach, CA)
Assignee: James R. Glidewell Dental Ceramics, Inc.
A61C13/0004A61C9/0006A61C9/0046A61C19/05G06F30/00G06T7/0012G06T17/00A61B6/032A61B6/14G06T2207/10028G06T2207/10081G06T2207/30036G06T2210/41
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Quick Facts
Patent No.
US 11,559,378
App. No.
15/816,120
Granted
Jan 24, 2023
Kind
B2
Abstract

Systems and methods are provided for scanning a dental impression to obtain a digital model of a patient's dentition as an input to computer aided design (CAD) and computer aided manufacturing (CAM) methods for producing dental prostheses.

Claims (29)

1. A computer-implemented method of designing a dental restoration for a patient, comprising:

providing a physical negative impression of at least a portion of the patient's dentition, the physical negative impression comprising an impression tray containing impression material previously molded to the at least a portion of the patient's dentition;

using a computed tomography (CT) scanner system, scanning the physical negative impression to create a three dimensional (3D) virtual image corresponding to the physical negative impression, the 3D virtual image comprising a volumetric density file;

using the 3D virtual image of the physical negative impression, directly constructing a surface image of the at least a portion of the patient's dentition from the 3D virtual image of the physical negative impression without constructing a surface image of the physical negative impression; and

designing a dental restoration for the patient based upon the surface image of the at least a portion of the patient's dentition,

wherein the step of directly constructing a surface image of the at least a portion of the patient's dentition from the 3D virtual image of the physical negative impression further includes:

defining isosurfaces having the same volumetric density value within the 3D virtual image; and

identifying density gradient vectors from the defined isosurfaces.

2. The computer-implemented method of claim 1 , wherein the CT scanner system includes a source of x-ray radiation, an x-ray detector, and a processor connected to the detector, and wherein the step of scanning the physical negative impression further includes:

locating the physical negative impression between the source of x-ray radiation and the x-ray detector; and

rotating the physical negative impression in place as a series of images is captured by the CT scanner system.

3. The computer-implemented method of claim 2 , further including a step of reconstructing the series of images to create the 3D virtual image.

4. The computer-implemented method of claim 1 , wherein the step of directly constructing a surface image further includes constructing a surface image that corresponds with void spaces of the physical negative impression.

5. The computer-implemented method of claim 4 , wherein the surface image includes an upper dentition surface image, a lower dentition surface image, and bite registration information between the upper dentition and lower dentition.

6. The computer-implemented method of claim 5 , wherein the surface image is in .STL file format.

7. A system for designing a dental restoration for a patient, the system comprising:

a source of x-ray radiation;

an x-ray detector;

a processor; and

a non-transitory computer-readable storage medium comprising instructions executable by the processor to perform steps comprising:

reconstructing a series of two dimensional (2D) images collected by the x-ray detector to create a three dimensional (3D) virtual image comprising a volumetric density file corresponding to a physical negative impression of at least a portion of the patient's dentition;

using the 3D virtual image of the physical negative impression, directly constructing a surface image of the at least a portion of the patient's dentition from the 3D virtual image of the physical negative impression without constructing a surface image of the physical negative impression; and

designing a dental restoration for the patient based upon the surface image of the at least a portion of the patient's dentition,

wherein the step of directly constructing a surface image of the at least a portion of the patient's dentition from the 3D virtual image of the physical negative impression further comprises:

defining isosurfaces having the same volumetric density value within the 3D virtual image; and

identifying density gradient vectors from the defined isosurfaces.

8. The system of claim 7 , wherein the step of directly constructing a surface image further includes constructing a surface image that corresponds with void spaces of the physical negative impression.

9. The system of claim 8 , wherein the surface image includes an upper dentition surface image, a lower dentition surface image, and bite registration information between the upper dentition and lower dentition.

10. The system of claim 9 , wherein the surface image is in .STL file format.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2018
From: NIKOLSKIY, SERGEY; LEESON, DAVID CHRISTOPHER; LAI, SHIH-KAI; QUEJI SILVA, LORAINE ALESSANDRA
To: JAMES R. GLIDEWELL DENTAL CERAMICS, INC.
Reel/Frame 045033/0580 →
Continuity (2)
Provisional Application 62423460 · Nov 17, 2016
Related Publication 20180132982A1 · May 17, 2018
Cited By (3)
US 12,496,030 US 12,575,915 US 12,594,151