Display options
Share it on

Biomed Opt Express. 2020 Mar 23;11(4):2152-2165. doi: 10.1364/BOE.384548. eCollection 2020 Apr 01.

Tomographic imaging with an ultrasound and LED-based photoacoustic system.

Biomedical optics express

Kalloor Joseph Francis, Yoeri E Boink, Maura Dantuma, Mithun Kuniyil Ajith Singh, Srirang Manohar, Wiendelt Steenbergen

Affiliations

  1. Biomedical Photonic Imaging Group, Technical Medical Center, University of Twente, The Netherlands.
  2. Multi-Modality Medical Imaging Group, Technical Medical Center, University of Twente, The Netherlands.
  3. Department of Applied Mathematics, University of Twente, The Netherlands.
  4. Research and Business Development Division, CYBERDYNE INC, Cambridge Innovation Center, Rotterdam, The Netherlands.

PMID: 32341873 PMCID: PMC7173893 DOI: 10.1364/BOE.384548

Abstract

Pulsed lasers in photoacoustic tomography systems are expensive, which limit their use to a few clinics and small animal labs. We present a method to realize tomographic ultrasound and photoacoustic imaging using a commercial LED-based photoacoustic and ultrasound system. We present two illumination configurations using LED array units and an optimal number of angular views for tomographic reconstruction. The proposed method can be a cost-effective solution for applications demanding tomographic imaging and can be easily integrated into conventional linear array-based ultrasound systems. We present a potential application for finger joint imaging

© 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement.

Conflict of interest statement

M. K. A. S is employed by CYBERDYNE Inc. The authors have no financial interests or conflict of interest to disclose.

References

  1. Photoacoustics. 2019 Jul 26;15:100137 - PubMed
  2. J Biomed Opt. 2015 Jun;20(6):066010 - PubMed
  3. J Biomed Opt. 2018 Jan;23(1):1-4 - PubMed
  4. Photoacoustics. 2019 Aug 09;15:100136 - PubMed
  5. IEEE Trans Med Imaging. 2016 Aug;35(8):1845-55 - PubMed
  6. Sci Rep. 2018 Jun 29;8(1):9885 - PubMed
  7. Nat Photonics. 2009 Aug 29;3(9):503-509 - PubMed
  8. Light Sci Appl. 2017 Jan 13;6(1):e16186 - PubMed
  9. IEEE Trans Ultrason Ferroelectr Freq Control. 2015 Sep;62(9):1651-61 - PubMed
  10. J Biomed Opt. 2008 Sep-Oct;13(5):050510 - PubMed
  11. Opt Express. 2007 Nov 12;15(23):15566-75 - PubMed
  12. Sensors (Basel). 2013 Jun 04;13(6):7345-84 - PubMed
  13. Curr Opin Chem Biol. 2018 Aug;45:104-112 - PubMed
  14. Sensors (Basel). 2018 May 01;18(5): - PubMed
  15. Sensors (Basel). 2019 Nov 08;19(22): - PubMed
  16. Interface Focus. 2011 Aug 6;1(4):602-31 - PubMed
  17. Med Phys. 2003 May;30(5):856-60 - PubMed
  18. IEEE Trans Med Imaging. 2004 Apr;23(4):501-9 - PubMed
  19. Ultrasound Med Biol. 2016 Nov;42(11):2697-2707 - PubMed
  20. Med Phys. 2004 Apr;31(4):724-33 - PubMed
  21. Photoacoustics. 2017 Sep 23;8:37-47 - PubMed
  22. Med Phys. 2013 Jan;40(1):013302 - PubMed
  23. Phys Med Biol. 2018 Feb 16;63(4):045018 - PubMed
  24. Science. 2012 Mar 23;335(6075):1458-62 - PubMed
  25. Chem Rev. 2010 May 12;110(5):2783-94 - PubMed
  26. Phys Med Biol. 2013 Jun 7;58(11):R37-61 - PubMed
  27. Biomed Opt Express. 2016 Mar 14;7(4):1260-70 - PubMed
  28. Photoacoustics. 2019 Jun 08;14:77-98 - PubMed
  29. Opt Express. 2009 Jun 22;17(13):10489-98 - PubMed
  30. Photoacoustics. 2017 Aug 31;8:8-14 - PubMed
  31. Med Phys. 2012 Dec;39(12):7262-71 - PubMed
  32. Photoacoustics. 2019 Jun 30;16:100134 - PubMed
  33. Phys Med Biol. 2019 Sep 11;64(18):184001 - PubMed
  34. J Biophotonics. 2020 Apr;13(4):e201900167 - PubMed
  35. J Biomed Opt. 2010 Mar-Apr;15(2):021314 - PubMed
  36. Photoacoustics. 2019 Feb 18;13:85-94 - PubMed
  37. J Biomed Opt. 2014 Jun;19(6):060501 - PubMed
  38. IEEE Trans Image Process. 2004 Apr;13(4):600-12 - PubMed

Publication Types