IP Library › Granted Patent US 8,482,733
Granted Patent B2
US 8,482,733 · App. 12/172,666 · Granted Jul 9, 2013

Measurement of the absorption coefficient of light absorbing liquids and their use for quantitative imaging of surface topography

Inventors: Michael A. Model (Chagrin Falls, OH); Anatoly K. Khitrin (Kent, OH)
Assignee: Kent State University
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 8,482,733
App. No.
12/172,666
Granted
Jul 9, 2013
Kind
B2
Abstract

An optical measurement system for obtaining information such as the absorption coefficient of a light-absorbing liquid, or a surface profile of an object immersed in a light-absorbing liquid having a known absorption coefficient. The system includes a light source that transmits light through the liquid, a detector that records an image of the light transmitted through the sample and a processor or other means adapted to analyze the intensity distribution found on the image to generate information about the sample.

Claims (35)

1. An optical measurement method for obtaining information about a light absorbing liquid, the method comprising:

providing a first surface and a second surface at least partially separated by the light absorbing liquid, wherein the second surface extends above the first surface,

transmitting light through the liquid;

detecting the intensity of the light transmitted from the liquid;

generating an intensity distribution from the detected intensity of the light; and

deriving information including at least the absorption coefficient, of the liquid from said intensity distribution.

2. The optical measurement method of claim 1 , wherein said step of deriving information about the liquid includes determining the thickness of the liquid between at least a portion of said first and second surfaces.

3. The optical measurement method of claim 1 , wherein said step of deriving information includes numerically fitting an equation to said intensity distribution to determine the absorption coefficient of the liquid.

4. The optical measurement method of claim 1 , further comprising generating a profile of said second surface from the height of the liquid between said first surface and said second surface.

5. The optical measurement method of claim 1 , wherein said step of deriving information from said intensity distribution includes creating an image from the intensity of light transmitted through the liquid and applying an intensity threshold to said image.

6. The optical measurement method of claim 5 , further comprising the step of converting the image to binary format.

7. The optical measurement method of claim 5 , further comprising the step of counting objects within said image.

8. The optical measurement method of claim 1 , further comprising the step of isolating a selective wavelength of light transmitted through said liquid before the step of detecting the intensity.

9. The method of claim 1 , wherein the optical density of the liquid is higher than is measurable using a spectrophotometer.

10. An optical measurement method for determining features of objects on a surface, comprising:

providing a light absorbing liquid having a known absorption coefficient on a surface with at least one object, wherein the liquid extends from a

first surface to a second surface extending above the first surface;

mounting the sample on a microscope;

directing light from a source toward the sample;

detecting the intensity of light transmitted through the sample; and

analyzing the intensity of the transmitted light to determine a distance between the first surface and the second surface and characteristics of the at least one object.

11. The optical measurement method of claim 10 , wherein the step of analyzing is repeated to generate a profile of said second surface.

12. The optical measurement method of claim 10 , wherein said step of directing light from a source includes delivering light from a laser through a lens of a microscope.

13. The optical measurement method of claim 12 wherein said lens of said microscope has a high numerical aperture.

14. The optical measurement method of claim 10 , wherein the step of transmitting light from a source includes focusing the light with a condenser.

15. The optical measurement method of claim 10 , further comprising the step of isolating a selected wavelength or range of wavelengths by placing a band-pass filter upstream of said detector.

16. The optical measurement method of claim 15 , wherein said band-pass filter is tuned to select the spectral region around the peak of the absorption coefficient of said liquid.

17. The optical measurement method of claim 10 , wherein said step of analyzing includes applying a logarithm to the detected intensity of light transmitted through said liquid and the absorption coefficient of the light absorbing liquid to determine the distance between the first and second surfaces.

18. The optical measurement method of claim 17 , wherein said second surface is located on a nanoscale object, wherein the step of analyzing includes determining the volume of said object by determining the distance between the first and second surfaces.

19. The optical measurement of claim 18 , wherein said object includes a biological cell on the first surface.

20. The method of claim 10 , wherein the absorption coefficient of the liquid is from about 0.002 micrometer −1 to over 10 micrometer −1 .

21. An optical measurement system for analyzing a biological sample, the sample including at least one biological cell, the system comprising:

disposing a liquid having a known absorption coefficient on the biological sample to extend from a first surface to a second surface on said biological cell, and providing a light source adapted to direct light toward said biological sample;

a detector adapted to record the light transmitted through said sample;

means for analyzing the intensity distribution of the light transmitted through said sample to determine information about the at least one biological cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2008
From: MODEL, MICHAEL A.; KHITRIN, ANATOLY K.
To: KENT STATE UNIVERSITY
Reel/Frame 021234/0301 →
Continuity (2)
Provisional Application 60951501 · Jul 24, 2007
Related Publication 20090027676A1 · Jan 29, 2009