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6 - Coupling Optical Wavefront Shaping and Photoacoustics

from Part III - Focusing Light through Turbid Media Using the Scattering Matrix

Published online by Cambridge University Press:  10 June 2019

Joel Kubby
Affiliation:
University of California, Santa Cruz
Sylvain Gigan
Affiliation:
Sorbonne Université and Laboratoire Kastler-Brossel
Meng Cui
Affiliation:
Purdue University, Indiana
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Summary

In this chapter, we introduce and review recent research works based on the coupling optical wavefront shaping and photoacoustics. Coupling these two research fields, that have until recently developed rather independently, offers mutual advantages for both fields: on the one hand, the photocoustic effect provides a powerful sensing mechanism for optical wavefront shaping techniques, while on the other hand photoacoustic imaging can greatly benefit from optical wavefront shaping techniques. This chapter first introduces the principle of photoacoustics relevant in the context of this chapter, including an introduction to the photoacoustic effect and a brief overview of the principles of biomedical photoacoustic imaging. We then first review the recent works on photoacoustic-guided optical wavefront shaping, either with optimization or transmission-matrix approaches, and finally illustrate how optical wavefront shaping can be applied to develop minimally invasive photoacoustic microendscopy mith multimode fibers. Some parts of this chapter have been adapted from a recent review article on coupling photoacoustics and coherent light [1].
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Publisher: Cambridge University Press
Print publication year: 2019

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