All-optical optoacoustic microscopy based on probe beam deflection technique

Optoacoustic (OA) microscopy using an all-optical system based on the probe beam deflection technique (PBDT) for detection of laser-induced acoustic signals was investigated as an alternative to conventional piezoelectric transducers. PBDT provides a number of advantages for OA microscopy including...

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Main Authors: Saher M. Maswadi, Bennett L. Ibey, Caleb C. Roth, Dmitri A. Tsyboulski, Hope T. Beier, Randolph D. Glickman, Alexander A. Oraevsky
Format: Article
Language:English
Published: Elsevier 2016-09-01
Series:Photoacoustics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2213597916300076
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spelling doaj-25bcd36e762f41b998e00d961aecf4fc2020-11-25T01:29:49ZengElsevierPhotoacoustics2213-59792016-09-01439110110.1016/j.pacs.2016.02.001All-optical optoacoustic microscopy based on probe beam deflection techniqueSaher M. Maswadi0Bennett L. Ibey1Caleb C. Roth2Dmitri A. Tsyboulski3Hope T. Beier4Randolph D. Glickman5Alexander A. Oraevsky6Oak Ridge Institute for Science and Education, 4141 Petroleum Road, JBSA Fort Sam Houston, TX 78234, USARadio Frequency Bioeffects Branch, Bioeffects Division, Human Effectiveness Directorate, 711th Human Performance Wing, Air Force Research Laboratory, 4141 Petroleum Road, JBSA Fort Sam Houston, TX 78234, USASchool of Medicine, Dept. of Radiological Sciences, University of Texas Health Science Center San Antonio, 7703 Floyd Curl Drive, San Antonio, TX 78229, USATomoWave Laboratories, 6550 Mapleridge St., Houston, TX 77081, USAOptical Radiation Branch, Bioeffects Division, Human Effectiveness Directorate, 711th Human Performance Wing, Air Force Research Laboratory, 4141 Petroleum Road, JBSA Fort Sam Houston, TX 78234, USASchool of Medicine, Dept. of Ophthalmology, University of Texas Health Science Center San Antonio, 7703 Floyd Curl Drive, San Antonio, TX 78229, USATomoWave Laboratories, 6550 Mapleridge St., Houston, TX 77081, USAOptoacoustic (OA) microscopy using an all-optical system based on the probe beam deflection technique (PBDT) for detection of laser-induced acoustic signals was investigated as an alternative to conventional piezoelectric transducers. PBDT provides a number of advantages for OA microscopy including (i) efficient coupling of laser excitation energy to the samples being imaged through the probing laser beam, (ii) undistorted coupling of acoustic waves to the detector without the need for separation of the optical and acoustic paths, (iii) high sensitivity and (iv) ultrawide bandwidth. Because of the unimpeded optical path in PBDT, diffraction-limited lateral resolution can be readily achieved. The sensitivity of the current PBDT sensor of 22 μV/Pa and its noise equivalent pressure (NEP) of 11.4 Pa are comparable with these parameters of the optical micro-ring resonator and commercial piezoelectric ultrasonic transducers. Benefits of the present prototype OA microscope were demonstrated by successfully resolving micron-size details in histological sections of cardiac muscle.http://www.sciencedirect.com/science/article/pii/S2213597916300076Optical resolution photoacoustic imagingOptoacoustic tomographyProbe beam deflection techniqueAll optical optoacoustic systemNon-contact acoustic sensorBackward mode optoacoustic microscopy
collection DOAJ
language English
format Article
sources DOAJ
author Saher M. Maswadi
Bennett L. Ibey
Caleb C. Roth
Dmitri A. Tsyboulski
Hope T. Beier
Randolph D. Glickman
Alexander A. Oraevsky
spellingShingle Saher M. Maswadi
Bennett L. Ibey
Caleb C. Roth
Dmitri A. Tsyboulski
Hope T. Beier
Randolph D. Glickman
Alexander A. Oraevsky
All-optical optoacoustic microscopy based on probe beam deflection technique
Photoacoustics
Optical resolution photoacoustic imaging
Optoacoustic tomography
Probe beam deflection technique
All optical optoacoustic system
Non-contact acoustic sensor
Backward mode optoacoustic microscopy
author_facet Saher M. Maswadi
Bennett L. Ibey
Caleb C. Roth
Dmitri A. Tsyboulski
Hope T. Beier
Randolph D. Glickman
Alexander A. Oraevsky
author_sort Saher M. Maswadi
title All-optical optoacoustic microscopy based on probe beam deflection technique
title_short All-optical optoacoustic microscopy based on probe beam deflection technique
title_full All-optical optoacoustic microscopy based on probe beam deflection technique
title_fullStr All-optical optoacoustic microscopy based on probe beam deflection technique
title_full_unstemmed All-optical optoacoustic microscopy based on probe beam deflection technique
title_sort all-optical optoacoustic microscopy based on probe beam deflection technique
publisher Elsevier
series Photoacoustics
issn 2213-5979
publishDate 2016-09-01
description Optoacoustic (OA) microscopy using an all-optical system based on the probe beam deflection technique (PBDT) for detection of laser-induced acoustic signals was investigated as an alternative to conventional piezoelectric transducers. PBDT provides a number of advantages for OA microscopy including (i) efficient coupling of laser excitation energy to the samples being imaged through the probing laser beam, (ii) undistorted coupling of acoustic waves to the detector without the need for separation of the optical and acoustic paths, (iii) high sensitivity and (iv) ultrawide bandwidth. Because of the unimpeded optical path in PBDT, diffraction-limited lateral resolution can be readily achieved. The sensitivity of the current PBDT sensor of 22 μV/Pa and its noise equivalent pressure (NEP) of 11.4 Pa are comparable with these parameters of the optical micro-ring resonator and commercial piezoelectric ultrasonic transducers. Benefits of the present prototype OA microscope were demonstrated by successfully resolving micron-size details in histological sections of cardiac muscle.
topic Optical resolution photoacoustic imaging
Optoacoustic tomography
Probe beam deflection technique
All optical optoacoustic system
Non-contact acoustic sensor
Backward mode optoacoustic microscopy
url http://www.sciencedirect.com/science/article/pii/S2213597916300076
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