IP Library Granted Patent US 7,262,419
Granted Patent B2
US 7,262,419 · App. 11/122,238 · Granted Aug 28, 2007

Fluorescence absorption microscopy

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,262,419
App. No.
11/122,238
Granted
Aug 28, 2007
Kind
B2
Abstract

A microscopy technique for viewing regions where a sample absorbs, as opposed to emits, fluorescent light. The technique includes illuminating a sample with an exciter light in order to generate fluorescent light from the sample and filtering light received from the sample such that fluorescent light is substantially attenuated. Regions that primarily emit fluorescent light will then be black, but regions where the exciter is primarily absorbed but where there is little emissive fluorescent activity can be viewed as a darker shade of the background color.

Claims (45)

1. A microscopy imaging method, comprising:

illuminating a sample with an exciter light consisting essentially of excitation wavelengths in order to generate fluorescent light from the sample;

filtering substantially all light received from the sample, except for the exciter light such that fluorescent light is substantially attenuated, thereby acquiring a filtered image of said sample; and

inverting the chrominance and luminance of the acquired filtered image and presenting the inverted filtered image for view.

2. A microscopy imaging method comprising:

illuminating a sample with an exciter light consisting essentially of excitation wavelengths in order to generate fluorescent light from the sample;

filtering substantially all light received from the sample, except for the exciter light, such that fluorescent light is substantially attenuated, thereby acquiring a filtered image of said sample; and

inverting the chrominance but not the luminance of the acquired filtered image and presenting the inverted image for view.

3. A microscopy imaging method, comprising:

illuminating a sample with an exciter light consisting essentially of excitation wavelenghths in order to generate fluorescent light from the sample;

filtering substantially all light received from the sample, except for the exciter light, such that fluorescent light is substantially attenuated, thereby acquiring a filtered image of said sample; and

inverting the luminance but not the chrominance of the acquired filtered image and presenting the inverted image for view.

4. A microscopy imaging method, comprising:

illuminating a sample with an exciter light in order to generate fluorescent light from the sample;

acquiring a first image of the sample by substantially attenuating the fluorescent light received from the sample;

acquiring a second image of the sample by substantially attenuating the exciter light received from or otherwise reflected off the sample;

obtaining a differential comparison by comparing the first image against the second image wherein the differential comparison is digitally calculated as I i =|A i − B i |, where A i represents a pixel from the first image, B i represents the corresponding pixel from the second image, and B i is the inversion thereof; and

displaying said comparison for view.

5. A microscopy imaging method according to claim 4 , wherein, in acquiring the first image, substantially all light received from the sample is filtered except for the exciter light.

6. A microscope, comprising:

an illuminator for illuminating a sample with an exciter light in order to generate fluorescent light from the sample;

a filter for filtering light received from the sample such that fluorescent light is substantially attenuated, the filter filtering substantially all light received from the sample except for the exciter light, thereby acquiring a filtered image of said sample;

electronic circuitry for inverting the chrominance and luminance of the acquired filtered image; and

display means for presenting the inverted filtered image for view.

7. A microscope according to claim 6 , wherein the light illuminating the sample consists essentially of excitation wavelengths.

8. A microscope, comprising:

an illuminator for illuminating a sample with an exciter light in order to generate fluorescent light from the sample:

a filter for filtering light received from the sample such that fluorescent light is substantially attenuated, the filter filtering substantially all light received from the sample except for the exciter light, thereby acquiring a filtered image of said sample;

electronic circuitry for inverting the chrominance but not the luminance of the acquired filtered image; and

display means for presenting the inverted filtered image for view.

9. A microscope according to claim 8 , wherein the light illuminating the sample consists essentially of excitation wavelengths.

10. A microscope, comprising:

an illuminator for illuminating a sample with an exciter light in order to generate fluorescent light from the sample;

a filter for filtering light received from the sample such that fluorescent light is substantially attenuated, the filter filtering substantially all light received from the sample except for the exciter light, thereby acquiring a filtered image of said sample;

electronic circuitry for inverting the luminance but not the chrominance of the acquired filtered image; and

display means for presenting the inverted filtered image for view.

11. A microscope according to claim 10 , wherein the light illuminating the sample consists essentially of excitation wavelengths.

12. A microscope, comprising:

an illuminator for illuminating a sample with an exciter light in order to generate fluorescent light from the sample;

a first filter for substantially attenuating the fluorescent light received from the sample, thereby providing a first image of the sample;

a second filter for substantially attenuating the exciter light received from or otherwise reflected off the sample, thereby providing a second image of the sample;

digital means for storing said first and second images;

a comparator for differentially comparing the first image against the second image to obtain a differential comparison digitally calculated as I i =|A i − B i |, where A i represents a pixel from the first image, B i represent the corresponding pixel from the second image, and B i is the inversion thereof; and

display means for displaying said comparison for view.

13. A microscope according to claim 12 , wherein, in acquiring the first image, said first filter filters substantially all light received from the sample except for the exciter light.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2005
From: RICHARDSON TECHNOLOGIES INC.
To: 1192062 ALBERTA LTD.
Reel/Frame 017115/0424 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2005
From: RICHARDSON, TIMOTHY M.
To: RICHARDSON TECHNOLOGIES INC.
Reel/Frame 016852/0714 →