Published April 7, 2004 | Version public
Journal Article

Multiple-bandwidth photoacoustic tomography

  • 1. ROR icon Texas A&M University

Abstract

Photoacoustic tomography, also referred to as optoacoustic tomography, employs short laser pulses to generate ultrasonic waves in biological tissues. The reconstructed images can be characterized by the convolution of the structure of samples, the laser pulse and the impulse response of the ultrasonic transducer used for detection. Although the laser-induced ultrasonic waves cover a wide spectral range, a single transducer can receive only part of the spectrum because of its limited bandwidth. To systematically analyse this problem, we constructed a photoacoustic tomographic system that uses multiple ultrasonic transducers simultaneously, each at a different central frequency. The photoacoustic images associated with the different transducers were compared and analysed. The system was tested by imaging both mouse brains and phantom samples. The vascular vessels in the brain were revealed by all of the transducers, but the image resolutions differed. The higher frequency detectors provided better image resolution while the lower frequency detectors delineated the major structural traits with a higher signal–noise ratio.

Additional Information

© 2004 IOP Publishing Ltd. Received 30 September 2003; Published 18 March 2004.

Additional details

Identifiers

Eprint ID
72639
Resolver ID
CaltechAUTHORS:20161207-145717339

Dates

Created
2016-12-07
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Updated
2022-07-12
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