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Ultrasonics|April 7, 2022
Improved two-point frequency shift power method for measurement of shear wave attenuationPiotr Kijanka, Matthew W UrbanUltrasonics|September 27, 2020
Dispersion curve calculation in viscoelastic tissue-mimicking materials using non-parametric, parametric, and high-resolution methodsPiotr Kijanka, Matthew W UrbanIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|January 25, 2020
Local Phase Velocity Based Imaging of Viscoelastic Phantoms and TissuesPiotr Kijanka, Matthew W UrbanIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|October 12, 2019
Two-Point Frequency Shift Method for Shear Wave Attenuation MeasurementPiotr Kijanka, Matthew W UrbanIEEE Transactions on Medical Imaging|January 27, 2021
Phase Velocity Estimation With Expanded Bandwidth in Viscoelastic Phantoms and TissuesPiotr Kijanka, Matthew W UrbanIEEE Transactions on Medical Imaging|January 10, 2024
Ultrasound Shear Elastography With Expanded Bandwidth (USEWEB): A Novel Method for 2D Shear Phase Velocity Imaging of Soft TissuesPiotr Kijanka, Matthew W UrbanIEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|October 22, 2019
Fast Local Phase Velocity-Based Imaging: Shear Wave Particle Velocity and Displacement Motion StudyPiotr Kijanka, Matthew W UrbanIEEE Transactions on Medical Imaging|October 9, 2018
Local Phase Velocity Based Imaging: A New Technique Used for Ultrasound Shear Wave ElastographyPiotr Kijanka, Matthew W UrbanUltrasound in Medicine & Biology|June 25, 2019
Two Point Method For Robust Shear Wave Phase Velocity Dispersion Estimation of Viscoelastic MaterialsPiotr Kijanka, Lukasz Ambrozinski, Matthew W UrbanComputers in Biology and Medicine|April 19, 2021
Viscoelastic parameter estimation using simulated shear wave motion and convolutional neural networksLuiz Vasconcelos, Piotr Kijanka, Matthew W UrbanPageof 17