IP Library Patent Application 12576377
Patent Application
App. No. 12/576,377

Photoacoustic Spectroscopy With Focused Light

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Quick Facts
Patent No.
US None
App. No.
12/576,377
Abstract

Photoacoustic measurements utilize emitted light to generate an acoustic response in tissue, with the acoustic response being proportional to the presence of an absorber of the light in the tissue. The present disclosure relates the use of focused light to acquire photoacoustic measurements. In one embodiment, the light is modulated, such as spatially modulated, such that the light may be focused within an otherwise scattering medium, such as tissue.

Claims (31)

1 . A photoacoustic system, comprising:

a light emitting component capable of emitting one or more wavelengths of light;

a light modulating component capable of spatially modulating light emitted by the light emitting component; and

an acoustic detector capable of detecting acoustic energy generated in response to the spatially modulated light.

2 . The photoacoustic system of claim 1 , wherein the light emitting component emits discrete pulses of light.

3 . The photoacoustic system of claim 1 , wherein one or more of the light emitting component, the light modulating component, or the acoustic detector are provided in a sensor body.

4 . The photoacoustic system of claim 1 , comprising a monitor in communication with one or more of the light emitting component, the light modulating component, or the acoustic detector.

5 . The photoacoustic system of claim 1 , wherein the light emitting component comprises one or more light emitting diodes, one or more laser diodes, or a vertical cavity surface emitting laser.

6 . The photoacoustic system of claim 1 , wherein the acoustic detector comprises one or more of an ultrasound transducer or an interferometer.

7 . The photoacoustic system of claim 1 , wherein the light modulating component comprises a liquid crystal spatial light modulator.

8 . A photoacoustic system, comprising:

a pulsed light source capable of emitting light pulses at one or more respective wavelengths of light;

a modulator capable of modulating a wavefront associated with each respective light pulse such that each wavefront exhibits different phases at different locations; and

an acoustic detector capable of generating a signal in response to acoustic shock waves generated in response to the emitted light pulses.

9 . The photoacoustic system of claim 8 , wherein the one or more respective wavelengths are between about 500 nm to about 1,000 nm.

10 . The photoacoustic system of claim 8 , wherein the signal corresponds to a concentration or quantity of an absorber of the emitted light pulses.

11 . The photoacoustic system of claim 8 , wherein each light pulse lasts ten nanoseconds or less.

12 . The photoacoustic system of claim 8 , wherein each light pulse has an associated energy of 1 mJ or less.

13 . The photoacoustic system of claim 8 , wherein the modulator comprises a plurality of subgroups of pixels.

14 . The photoacoustic system of claim 13 , wherein each subgroup of pixels operates independently of the other subgroups.

15 . The photoacoustic system of claim 8 , comprising a sensor body comprising one or more of the pulsed light source, the modulator, or the acoustic detector.

16 . The photoacoustic system of claim 8 , comprising a monitor capable of communicating with one or more of the pulsed light source, the modulator, or the acoustic detector.

17 . A method for generating acoustic pulses, comprising:

spatially modulating one or more light pulses;

emitting the one or more spatially modulated light pulses toward a medium;

detecting one or more acoustic waves generated within the medium in response to the one or more spatially modulated light pulses;

generating a signal corresponding to the one or more acoustic waves; and

processing the signal to generate one or more measures related to the presence of a light absorber within the medium.

18 . The method of claim 17 , wherein spatially modulating the one or more light pulses comprises altering a respective wavefront associated with each light pulse such that each respective wavefront comprises different regions at different phases.

19 . The method of claim 17 , comprising adjusting the spatial modulation of one or more subsequent light pulses based upon the signal.

20 . The method of claim 17 , wherein processing the signal to generate one or more measures related to the presence of a light absorber within the medium comprises processing the signal to generate a concentration or quantity measure of the light absorber within a localized region of the tissue.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2012
From: NELLCOR PURITAN BENNETT LLC
To: COVIDIEN LP
Reel/Frame 029387/0506 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2009
From: LI, YOUZHI; MCKENNA, EDWARD M.; LIN, ANDY S.
To: NELLCOR PURITAN BENNETT LLC
Reel/Frame 023391/0710 →