IP Library › Granted Patent US 8,690,326
Granted Patent B2
US 8,690,326 · App. 13/914,586 · Granted Apr 8, 2014

Method and systems for measuring interpupillary distance

Inventors: Hal Edward Wilson (Raleigh, NC); James Gerard Welch (Raleigh, NC)
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Quick Facts
Patent No.
US 8,690,326
App. No.
13/914,586
Granted
Apr 8, 2014
Kind
B2
Abstract

The proposed innovation provides methods and systems for measuring the interpupillary distance. The proposed innovation provides a fitting pad ( 102 ) having two detection points ( 104 and 106 ). The fitting pad is placed on the forehead of the user and an image is captured. The image is uploaded and pupil distance calculator software locates the fitting detection points and calculates the distance in pixels of the left and right X, Y coordinates. The software creates an image scale by dividing the pixel counts between the detection points. The software automatically locates the X, Y coordinates between the center of the left and right pupils and calculates the distance in pixels. The resulting pixel distance divided by the image scale provides the interpupillary distance in millimeter. In embodiments, segment height is calculated based upon an image imported by the user and the combined scaled images of the user and the frame.

Claims (29)

1. A system for fitting a user with a pair of glasses, the system comprising;

a fitting pad configured to be placed on the forehead of the user, the fitting pad having a first detection point and a second detection point at a predetermined distance from the first detection point;

a camera for capturing an image of the user, including the user's pupils, as the user wears the fitting pad;

a user interface; and

a processor in communication with the user interface and the camera;

wherein the processor prompts the user to locate, via the user interface, the location of the first and second detection points; and

wherein the processor utilizes the confirmed location of the first and second detection points to calculate the number of pixels on the image between the first and second detection points, so as to provide a pixels-per-inch calculation for the captured image.

2. The system of claim 1 , wherein the user interface includes a display, and the processor sends signals to the display so as to provide the image of the user on the display.

3. The system of claim 2 , wherein the processor is further configured to provide indicators on the display that show estimated location points for the user's pupils and the first and second detection points.

4. The system of claim 3 , wherein the processor prompts the user to move the estimated location points to the actual location points for the user's pupils and the first and second detection points.

5. The system of claim 1 , wherein the detection points are printed in such a manner so that there is a high level of contrast between the detection points and the fitting pad surface.

6. The system of claim 1 , wherein the user interface includes a touch screen in communication with the processor.

7. The system of claim 6 , wherein the processor is further configured to provide indicators on the touch screen that show estimated location points for the user's pupils and the first and second detection points.

8. The system of claim 6 , wherein the processor determines the user's confirmation of the location of the first and second detection points and the user's pupils by receiving signals relating to the where the user touches the touch screen.

9. The system of claim 1 , wherein the system uses the confirmed location of the user's pupils to present a virtual image of the user wearing a pair of glasses.

10. A system for fitting a user with a pair of glasses, the system comprising;

a fitting pad configured to be placed on the forehead of the user, the fitting pad having a first detection point and a second detection point at a predetermined distance from the first detection point;

a camera for capturing an image of the user, including the user's pupils, as the user wears the fitting pad;

a user interface; and

a processor in communication with the user interface and the camera;

wherein the processor receives input from the user to determine the location of the first and second detection points, and from that input, the processor calculates the number of pixels on the image between the first and second detection points, so as to provide a pixels-per-inch calculation for the captured image.

11. The system of claim 10 , wherein the user interface includes a display, and the processor sends signals to the display so as to provide the image of the user on the display.

12. The system of claim 11 , wherein the processor is further configured to provide indicators on the display that show estimated location points for the user's pupils and the first and second detection points.

13. The system of claim 12 , wherein the processor prompts the user to move the estimated location points to the actual location points for the user's pupils and the first and second detection points.

14. The system of claim 10 , wherein the detection points are printed in such a manner so that there is a high level of contrast between the detection points and the fitting pad surface.

15. The system of claim 10 , wherein the user interface includes a touch screen in communication with the processor.

16. The system of claim 15 , wherein the processor is further configured to provide indicators on the touch screen that show estimated location points for the user's pupils and the first and second detection points.

17. The system of claim 15 , wherein the processor determines the user's confirmation of the location of the first and second detection points and the user's pupils by receiving signals relating to the where the user touches the touch screen.

18. The system of claim 15 , wherein the system uses the confirmed location of the user's pupils to present a virtual image of the user wearing a pair of glasses.

Continuity (2)
Continuation 13094349 · Apr 26, 2011
Related Publication 20130271726A1 · Oct 17, 2013