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IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|November 7, 2025
Quantitative Acoustic Attenuation Scanning Using a Phase-Insensitive Ultrasound Computed Tomography SystemDaniel Sarno, Christian Baker, Bajram ZeqiriIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|October 22, 2019
Ring Artifact Correction for Phase-Insensitive Ultrasound Computed TomographyChristian Baker, Daniel Sarno, Robert J Eckersley, et al.IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|August 17, 2022
In Vivo Measurements of the Bulk Ultrasonic Attenuation Coefficient of Breast Tissue Using a Novel Phase-Insensitive ReceiverDaniel Sarno, Christian Baker, Sian Curtis, et al.Ultrasonics Sonochemistry|October 25, 2016
An objective comparison of commercially-available cavitation metersDaniel Sarno, Mark Hodnett, Lian Wang, et al.Progress in Biophysics and Molecular Biology|November 4, 2006
Metrology for ultrasonic applicationsBajram ZeqiriPhysics in Medicine and Biology|July 16, 2013
Quantitative ultrasonic computed tomography using phase-insensitive pyroelectric detectorsBajram Zeqiri, Christian Baker, Giuseppe Alosa, et al.Ultrasound in Medicine & Biology|April 29, 2008
Evaluation of a novel solid-state method for determining the acoustic power generated by physiotherapy ultrasound transducersBajram Zeqiri, Jill BarrieIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|November 7, 2008
Toward a reference ultrasonic cavitation vessel: Part 2--investigating the spatial variation and acoustic pressure threshold of inertial cavitation in a 25 kHz ultrasound fieldMark Hodnett, Bajram ZeqiriUltrasonics Sonochemistry|August 11, 2004
High-frequency acoustic emissions generated by a 20 kHz sonochemical horn processor detected using a novel broadband acoustic sensor: a preliminary studyMark Hodnett, Rachel Chow, Bajram ZeqiriUltrasound in Medicine & Biology|September 16, 2014
Reference characterisation of sound speed and attenuation of the IEC agar-based tissue-mimicking material up to a frequency of 60 MHzSrinath Rajagopal, Neelaksh Sadhoo, Bajram ZeqiriPageof 5