IP Library › Granted Patent US 9,730,776
Granted Patent B2
US 9,730,776 · App. 13/031,282 · Granted Aug 15, 2017

Display method and system for enabling an operator to visualize and correct alignment errors in imaged data sets

Inventors: Rakesh M. Lal (Irving, TX); James D. Susinno (Dallas, TX)
Assignee: D4D Technologies, LLC
A61C13/0004A61B6/14A61B6/463A61B6/465A61B6/466A61C9/0053
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Quick Facts
Patent No.
US 9,730,776
App. No.
13/031,282
Granted
Aug 15, 2017
Kind
B2
Abstract

A method to visualize and correct alignment errors between paired 2D and 3D data sets is described. In a representative embodiment, a display interface used for dental implant planning includes one or more display areas that enable the operator to visualize alignment errors between the paired 2D and 3D data sets. A first display area renders 3D cone beam data. A second display area renders one or more (and preferably three (3) mutually orthogonal views) slices of the cone beam data. A third display area displays a view of a 2D scanned surface map (obtained from an intra-oral scan, or the scan of a model). According to a first aspect, the view of the 2D scanned surface map in the third display area is “textured” by coloring the 2D surface model based on the intensity of each 3D pixel (or “voxel”) that it intersects.

Claims (29)

1. A method of visualizing and correcting alignment errors between 2D and 3D data sets in an implant planning tool, comprising:

receiving a 2D data set;

receiving a 3D data set comprising one or more spatial points each having an intensity;

displaying a textured view that is generated by providing a given display indication on a surface of the 2D data set as a function of intensities of one or more spatial points of the 3D data set at which the surface intersects the 3D data set, where the textured view is generated in software executing in a hardware element responsive to receipt of operator-entered data indicating one or more common points on the 2D data set and the 3D data set and illustrates an alignment between the 2D and 3D data sets;

in association with the textured view, displaying three (3) mutually orthogonal slices of the 3D data set, wherein each of the slices of the 3D data set is overlaid with a wireframe projection from the 2D data set to form a visualization; and

responsive to receipt of operator-entered data indicating a rotation or movement of the 2D data set, updating the visualizations as the 2D and 3D data sets are transformed relative to each other.

2. The method as described in claim 1 wherein the 2D data set is a surface map generated from a surface scan, and wherein the 3D data set is volume data generated from a cone beam scan.

3. The method as described in claim 1 wherein the given display indication is a coloration.

4. The method as described in claim 1 wherein each orthogonal slice of the 3D data set is displayed in a dedicated display area.

5. An apparatus for use in visualizing and correcting alignment errors between 2D and 3D data sets in an implant planning tool, comprising:

a processor;

computer memory storing computer program instructions executed by the processor to perform operations comprising:

receiving a 2D data set;

receiving a 3D data set comprising one or more spatial points each having an intensity;

displaying a textured view that is generated by providing a given display indication on a surface of the 2D data set as a function of intensities of one or more spatial points of the 3D data set at which the surface intersects the 3D data set, where the textured view is generated in response to receipt of operator-entered data indicating one or more common points on the 2D data set and the 3D data set illustrates an alignment between the 2D and 3D data sets;

in association with the textured view, displaying three (3) mutually orthogonal slices of the 3D data set, wherein each of the slices of the 3D data set is overlaid with a wireframe projection from the 2D data set to form a visualization; and

responsive to receipt of operator-entered data indicating a rotation or movement of the 2D data set, updating the visualizations as the 2D and 3D data sets are transformed relative to each other.

6. The apparatus as described in claim 5 wherein the 2D data set is a surface map generated from a surface scan, and wherein the 3D data set is volume data generated from a cone beam scan.

7. The apparatus as described in claim 5 wherein the given display indication is a coloration.

8. The apparatus as described in claim 5 wherein each orthogonal slice of the 3D data set is displayed in a dedicated display area.

9. An article comprising a non-transitory tangible machine readable medium that stores a program, the program being executed by a machine to perform operations comprising:

receiving a 2D data set;

receiving a 3D data set comprising one or more spatial points each having an intensity;

displaying, on a display device associated with the machine, a textured view that is generated by providing a given display indication on a surface of a 2D data set as a function of intensities of one or more spatial points of the 3D data set at which the surface intersects a 3D data set, where the textured view is generated in response to receipt of operator-entered data indicating one or more common points on the 2D data set and the 3D data set and illustrates an alignment between the 2D and 3D data sets;

in association with the textured view, displaying three (3) mutually orthogonal slices of the 3D data set, wherein each of the slices of the 3D data set is overlaid with a wireframe projection from the 2D data set to form a visualization; and

responsive to receipt of operator-entered data indicating a rotation or movement of the 2D data set, updating the visualizations as the 2D and 3D data sets are transformed relative to each other.

10. The article as described in claim 9 wherein the 2D data set is a surface map generated from a surface scan, and wherein the 3D data set is volume data generated from a cone beam scan.

11. The article as described in claim 9 wherein the given display indication is a coloration.

12. The article as described in claim 9 wherein each orthogonal slice of the 3D data set is displayed in a dedicated display area.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2017
From: LAL, RAKESH M.; SUSINNO, JAMES D.
To: D4D TECHNOLOGIES, LLC
Reel/Frame 043278/0518 →
Continuity (2)
Provisional Application 61307535 · Feb 24, 2010
Related Publication 20110287379A1 · Nov 24, 2011