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8 August 2012 Förster resonance energy transfer photoacoustic microscopy
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Abstract
Förster, or fluorescence, resonance energy transfer (FRET) provides fluorescence signals sensitive to intra- and inter-molecular distances in the 1 to 10 nm range. Widely applied in the fluorescence imaging environment, FRET enables visualization of physicochemical processes in molecular interactions and conformations. In this paper, we report photoacoustic imaging of FRET, based on nonradiative decay that produces heat and subsequent acoustic waves. Estimates of the energy transfer efficiency by photoacoustic microscopy were compared to those obtained by fluorescence confocal microscopy. The experimental results in tissue phantoms show that photoacoustic microscopy is capable of FRET imaging with an enhanced penetration depth. Through its ability to three-dimensionally image tissue with scalable resolution, photoacoustic microscopy could be a beneficial biomedical tool to broaden the in vivo application of FRET.
© 2012 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2012/$25.00 © 2012 SPIE
Yu Wang and Lihong V. Wang "Förster resonance energy transfer photoacoustic microscopy," Journal of Biomedical Optics 17(8), 086007 (8 August 2012). https://doi.org/10.1117/1.JBO.17.8.086007
Published: 8 August 2012
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CITATIONS
Cited by 40 scholarly publications.
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KEYWORDS
Luminescence

Fluorescence resonance energy transfer

Rhodamine

Photoacoustic microscopy

Photoacoustic spectroscopy

Absorption

Resonance energy transfer

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