Wavefront shaping based on three-dimensional optoacoustic feedback.
Proc. SPIE 9540:95400K (2015)
Wavefront shaping techniques have recently evolved as a promising tool to control the light distribution in optically-scattering media. These techniques are based on spatially-modulating the phase of an incident light beam to create positive interference (focusing) at specific locations in the speckle pattern of the scattered wavefield. The optimum phase distribution (mask) of the spatial light modulator that allows focusing at the target location(s) is determined iteratively by monitoring the light intensity at such target. In this regard, optoacoustic (photoacoustic) imaging may provide the convenient advantage of simultaneous feedback information on light distribution in an entire region of interest. Herein, we showcase that volumetric optoacoustic images can effectively be used as a feedback mechanism in an iterative optimization algorithm allowing controlling the light distribution after propagation through a scattering sample. Experiments performed with absorbing microparticles distributed in a three-dimensional region showcase the feasibility of enhancing the light intensity at specific points. The advantages provided by optoacoustic imaging in terms of spatial and temporal resolution anticipate new capabilities of wavefront shaping techniques in biomedical optics.
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Publikationstyp
Artikel: Journalartikel
Dokumenttyp
Wissenschaftlicher Artikel
Typ der Hochschulschrift
Herausgeber
Schlagwörter
Light Focusing ; Light Scattering ; Three-dimensional Optoacoustic Imaging ; Wavefront Shaping
Keywords plus
Sprache
englisch
Veröffentlichungsjahr
2015
Prepublished im Jahr
0
HGF-Berichtsjahr
2015
ISSN (print) / ISBN
0277-786X
e-ISSN
1996-756X
ISBN
Bandtitel
Konferenztitel
Novel Biophotonics Techniques and Applications III
Konferzenzdatum
21 June 2015
Konferenzort
Munich, Germany
Konferenzband
Quellenangaben
Band: 9540,
Heft: ,
Seiten: ,
Artikelnummer: 95400K
Supplement: ,
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SPIE
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0000-00-00
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Prüfer
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0000-00-00
Anmelder/Inhaber
weitere Inhaber
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Priorität
Begutachtungsstatus
Peer reviewed
POF Topic(s)
30205 - Bioengineering and Digital Health
Forschungsfeld(er)
Enabling and Novel Technologies
PSP-Element(e)
G-505590-001
Förderungen
Copyright
Erfassungsdatum
2017-06-06