JOURNAL ARTICLE

Handheld probe for portable high frame photoacoustic/ultrasound imaging system

Khalid DaoudiP. J. van den BergOlivier RabotA. KohlStéphane TisserandPeter J. BrandsWiendelt Steenbergen

Year: 2013 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 8581 Pages: 85812I-85812I   Publisher: SPIE

Abstract

Photoacoustics is a hybrid imaging modality that is based on the detection of acoustic waves generated by absorption of pulsed light by tissue chromophors. In current research, this technique uses large and costly photoacoustic systems with a low frame rate imaging. To open the door for widespread clinical use, a compact, cost effective and fast system is required. In this paper we report on the development of a small compact handset pulsed laser probe which will be connected to a portable ultrasound system for real-time photoacoustic imaging and ultrasound imaging. The probe integrates diode lasers driven by an electrical driver developed for very short high power pulses. It uses specifically developed highly efficient diode stacks with high frequency repetition rate up to 10 kHz, emitting at 800nm wavelength. The emitted beam is collimated and shaped with compact micro optics beam shaping system delivering a homogenized rectangular laser beam intensity distribution. The laser block is integrated with an ultrasound transducer in an ergonomically designed handset probe. This handset is a building block enabling for a low cost high frame rate photoacoustic and ultrasound imaging system. The probe was used with a modified ultrasound scanner and was tested by imaging a tissue mimicking phantom.

Keywords:
Handset Photoacoustic Doppler effect Materials science Frame rate Laser Transducer Imaging phantom Optics Ultrasound Collimated light Optoelectronics Computer science Acoustics Physics Telecommunications

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Citation History

Topics

Photoacoustic and Ultrasonic Imaging
Physical Sciences →  Engineering →  Biomedical Engineering
Optical Imaging and Spectroscopy Techniques
Health Sciences →  Medicine →  Radiology, Nuclear Medicine and Imaging
Optical Coherence Tomography Applications
Physical Sciences →  Engineering →  Biomedical Engineering

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