Acoustic hologram–induced virtual in vivo enhanced waveguide (AH-VIEW)

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Abstract

Optical imaging and phototherapy in deep tissues face notable challenges due to light scattering. We use encoded acoustic holograms to generate three-dimensional acoustic fields within the target medium, enabling instantaneous and robust modulation of the volumetric refractive index, thereby noninvasively controlling the trajectory of light. Through this approach, we achieved a remarkable 24.3% increase in tissue heating rate in vitro photothermal effect tests on porcine skin. In vivo photoacoustic imaging of mouse brain vasculature exhibits an improved signal-to-noise ratio through the intact scalp and skull. These findings demonstrate that our strategy can effectively suppress light scattering in complex biological tissues by inducing low-angle scattering, achieving an effective depth reaching the millimeter scale. The versatility of this strategy extends its potential applications to neuroscience, lithography, and additive manufacturing.

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Lin, Q., Li, Z., Wang, B., Zhou, M., Xie, Y., Wang, D., … Chen, Z. (2024). Acoustic hologram–induced virtual in vivo enhanced waveguide (AH-VIEW). Science Advances, 10(7). https://doi.org/10.1126/sciadv.adl2232

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