Sub-wavelength lateral detection of tissue-approximating masses using an ultrasonic metamaterial lens
Ezekiel L. Walker (),
Yuqi Jin,
Delfino Reyes and
Arup Neogi ()
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Ezekiel L. Walker: Echonovus Inc
Yuqi Jin: University of North Texas
Delfino Reyes: Autonomous University of the State of Mexico, Campus “El Cerrillo”
Arup Neogi: University of North Texas
Nature Communications, 2020, vol. 11, issue 1, 1-13
Abstract:
Abstract Practically applied techniques for ultrasonic biomedical imaging employ delay-and-sum (DAS) beamforming which can resolve two objects down to 2.1λ within the acoustic Fresnel zone. Here, we demonstrate a phononic metamaterial lens (ML) for detection of laterally subwavelength object features in tissue-like phantoms beyond the phononic crystal evanescent zone and Fresnel zone of the emitter. The ML produces metamaterial collimation that spreads 8x less than the emitting transducer. Utilizing collimation, 3.6x greater lateral resolution beyond the Fresnel zone limit was achieved. Both hard objects and tissue approximating masses were examined in gelatin tissue phantoms near the Fresnel zone limit. Lateral dimensions and separation were resolved down to 0.50λ for hard objects, with tissue approximating masses slightly higher at 0.73λ. The work represents the application of a metamaterial for spatial characterization, and subwavelength resolution in a biosystem beyond the Fresnel zone limit.
Date: 2020
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Persistent link: https://EconPapers.repec.org/RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-19591-2
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DOI: 10.1038/s41467-020-19591-2
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