IP Library Granted Patent US 11,300,514
Granted Patent B2
US 11,300,514 · App. 17/115,581 · Granted Apr 12, 2022

Apparatus and method for fluorescence grading of gemstones

Inventor: Hiroshi Takahashi (Fort Lee, NJ)
Assignee: Gemological Institute of America, Inc. (GIA)
G01N21/6456G01N21/87G01N33/381G01N2021/6471G01N2201/062G01N2201/068G01N2201/0634G01N2201/12
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Quick Facts
Patent No.
US 11,300,514
App. No.
17/115,581
Granted
Apr 12, 2022
Kind
B2
Abstract

Provided herein is an apparatus for assessing a fluorescence characteristic of a gemstone. The apparatus comprises an optically opaque platform for supporting a gemstone to be assessed, one or more light source to provide uniform UV and non-UV illumination, an image capturing component, and a telecentric lens positioned to provide fluorescent images of the illuminated gemstone to the image capturing component. Also provided are methods of fluorescence analysis based on images collected using such an apparatus.

Claims (27)

1. A system for analysis, the system comprising:

an image capture system, the image capture system configured to capture images and pixelate the images;

a rotatable stage, configured under the image capture system, to support samples;

a daylight approximating non-UV light source configured to direct non-UV light energy toward the rotatable stage;

a UV light source configured to direct UV light energy toward the rotatable stage;

a computer, in communication with the image capture system and the rotatable stage, the computer configured to receive a first color pixelated image and a second color pixelated image of a sample gemstone from the image capture system;

the computer further configured to determine an outline mask of the sample gemstone in the first color pixelated image and the second color pixelated image,

wherein the outline mask excludes all background image outside of boundary lines of the sample gemstone in the first color pixelated image and the second color pixelated image;

the computer further configured to determine, based on the outline mask, values of geometric parameters;

the computer further configured to determine an apparent fluorescence area of the sample gemstone, for the first color pixelated image and the second color pixelated image;

the computer further configured to generate a fluorescence mask by overlaying the determined apparent fluorescence area on the outline mask;

the computer further configured to determine if any part of the fluorescence area falls outside of the outline mask;

the computer further configured to remove any part of the fluorescence area that falls outside of the outline mask; and

the computer further configured to analyze the remaining fluorescence area determined to be inside of the outline mask and assign a grade based on the analysis.

2. The system of claim 1 wherein the first color pixelated image is an image taken at a first rotation angle of the sample gemstone on the rotatable stage, and the second color pixelated image is an image taken at a second rotation angle of the sample gemstone on the rotatable stage.

3. The system of claim 1 wherein the first color pixelated image is an image taken with the non-UV light source of the sample gemstone on the rotatable stage, and the second color pixelated image is an image taken with the UV light source of the sample gemstone on the rotatable stage.

4. The system of claim 1 wherein the outline mask is determined using edge detection of the boundary lines of the sample gemstone, and wherein the edge detection is zero-crossing based using a second-order derivative expression computed from the first color image to find edges.

5. The system of claim 1 wherein the geometric parameters include height and width.

6. The system of claim 1 wherein the computer is further configured to quantify individual color components in each pixel in the fluorescence mask in each fluorescent image of the first color pixelated image and the second color pixelated image.

7. The system of claim 1 wherein the computer is further configured to apply an algorithm to each pixel in the fluorescence image inside the outline mask to determine a color value for each corresponding pixel.

8. The system of claim 7 wherein the computer is further configured to convert the image pixels from CMYK to RGB values and use the RGB values to determine a color value for each corresponding pixel.

9. The system of claim 8 wherein the computer is further configured to convert the color values to parameters representing a color characteristic of each pixel.

10. The system of claim 9 wherein the computer is further configured to calculate an average value for each parameter for all pixels inside the outline mask.

11. The system of claim 10 wherein the computer is further configured to calculate a fluorescence score of the sample gemstone based on the average values of the parameters.

12. The system of claim 11 wherein the computer is further configured to receive the first color pixelated image and the second color pixelated image of the sample gemstone at uniquely different image rotational angles while maintaining a constant image view angle.

13. The system of claim 12 wherein there is a time gap between the time when the first color pixelated image, the second color pixelated image, and a third color pixelated image of the sample gemstone are captured;

wherein the computer is further configured to assign a new fluorescent grade based on the third color pixelated image and compare the fluorescent grade and the new fluorescent grade based on the time gap.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2020
From: TAKAHASHI, HIROSHI
To: GEMOLOGICAL INSTITUTE OF AMERICA, INC. (GIA)
Reel/Frame 054582/0862 →
Continuity (4)
Continuation 16666375 · Oct 28, 2019
Continuation 16133454 · Sep 17, 2018
Continuation 14673780 · Mar 30, 2015
Related Publication 20210116379A1 · Apr 22, 2021
Cited By (1)
US 12,372,467