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Imaging through highly scattering human skulls with ultrasound-modulated optical tomography

opg.optica.org · 103 words · saved by 1 readers

This website uses cookies to deliver some of our products and services as well as for analytics and to provide you a more personalized experience. Click here to learn more. By continuing to use this site, you agree to our use of cookies. We've also updated our Privacy Notice. Click here to see what's new. Yan Liu, Ruizhi Cao, Jian Xu, Haowen Ruan, and Changhuei Yang Yan Liu,1,† Ruizhi Cao,1,† Jian Xu,1 Haowen Ruan,1,2 and Changhuei Yang1,* 1Department of Electrical Engineering, California Institute of Technology, 1200 East California Boulevard, Pasadena, California 91125, USA 2Kernel LLC, Los Angeles, California 90036, USA †These authors contributed equally to this Letter. *Corresponding author: chyang@caltech.edu Advances in human brain imaging technologies are critical to understanding how the brain works and the diagnosis of brain disorders. Existing technologies have different drawbacks, and the human skull poses a great challenge for pure optical and ultrasound imaging techno

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