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Ultrasonics|November 11, 2025
Predicting hydrophone phase and evaluating its uncertainty using magnitude data and minimum phase approachHasan Koruk, Srinath Rajagopal, William Vale, et al.Sensors (Basel, Switzerland)|September 28, 2024
A Comprehensive Review on the Viscoelastic Parameters Used for Engineering Materials, Including Soft Materials, and the Relationships between Different Damping ParametersHasan Koruk, Srinath RajagopalIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|August 2, 2016
The Practicalities of Obtaining and Using Hydrophone Calibration Data to Derive Pressure WaveformsAndrew M Hurrell, Srinath RajagopalJournal of the Mechanical Behavior of Biomedical Materials|February 14, 2026
A review on the identification of the mechanical properties of soft tissues and tissue-mimicking phantomsHasan Koruk, Srinath Rajagopal, Raphaela de Melo Baesso, et al.The Journal of the Acoustical Society of America|June 3, 2019
Displacement of a bubble located at a fluid-viscoelastic medium interfaceHasan Koruk, James J ChoiThe Journal of the Acoustical Society of America|May 3, 2018
Displacement of a bubble by acoustic radiation force into a fluid-tissue interfaceHasan Koruk, James J ChoiThe Journal of the Acoustical Society of America|March 26, 2021
Modelling laser ultrasound waveforms: The effect of varying pulse duration and material propertiesSrinath Rajagopal, Ben T CoxUltrasonics|July 30, 2020
100 MHz bandwidth planar laser-generated ultrasound source for hydrophone calibrationSrinath Rajagopal, Ben T CoxThe Journal of the Acoustical Society of America|June 10, 2008
A finite difference analysis of the field present behind an acoustically impenetrable two-layer barrierAndrew M HurrellUltrasound 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 3