Acoustic diffraction–resistant adaptive profile technology (ADAPT) for elasticity imaging

Author:

Gu Yuyang12ORCID,Kumar Viksit12ORCID,Dayavansha E. G. Sunethra K.12,Schoen Scott12ORCID,Feleppa Ernest12,Tadross Rimon3,Wang Michael H.3ORCID,Washburn Michael J.3,Thomenius Kai12ORCID,Samir Anthony E.12ORCID

Affiliation:

1. Department of Radiology, Massachusetts General Hospital, Center for Ultrasound Research and Translation, Boston, MA 02114, USA.

2. Harvard Medical School, Cambridge, MA 02115, USA.

3. General Electric Healthcare, Wauwatosa, WI 53226, USA.

Abstract

Acoustic beam shaping with high degrees of freedom is critical for applications such as ultrasound imaging, acoustic manipulation, and stimulation. However, the ability to fully control the acoustic pressure profile over its propagation path has not yet been achieved. Here, we demonstrate an acoustic diffraction–resistant adaptive profile technology (ADAPT) that can generate a propagation-invariant beam with an arbitrarily desired profile. By leveraging wave number modulation and beam multiplexing, we develop a general framework for creating a highly flexible acoustic beam with a linear array ultrasonic transducer. The designed acoustic beam can also maintain the beam profile in lossy material by compensating for attenuation. We show that shear wave elasticity imaging is an important modality that can benefit from ADAPT for evaluating tissue mechanical properties. Together, ADAPT overcomes the existing limitation of acoustic beam shaping and can be applied to various fields, such as medicine, biology, and material science.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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