Design and Testing of a Single-Element Ultrasound Viscoelastography System for Point-of-Care Edema Quantification.
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Jonathan Ophir | William F Weitzel | Joseph L Bull | John J Pitre | Leo B Koziol | Grant H Kruger | Alan Vollmer | Jean-Jacques Ammann | John J. Pitre | J. Ophir | W. Weitzel | J. Bull | G. Kruger | Leo Koziol | J. Ammann | Alan Vollmer
[1] Richard W Prager,et al. Dynamic resolution selection in ultrasonic strain imaging. , 2008, Ultrasound in medicine & biology.
[2] M F Insana,et al. Viscoelasticity imaging using ultrasound: parameters and error analysis. , 2007, Physics in medicine and biology.
[3] Jonathan Ophir,et al. The feasibility of estimating and imaging the mechanical behavior of poroelastic materials using axial strain elastography. , 2007, Physics in medicine and biology.
[4] M. O’Donnell,et al. Internal displacement and strain imaging using ultrasonic speckle tracking , 1994, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[5] Jonathan Ophir,et al. The feasibility of using elastography for imaging the Poisson's ratio in porous media. , 2004, Ultrasound in medicine & biology.
[6] Ronald Buyl,et al. Ultrasound elastography as an objective diagnostic measurement tool for lymphoedema of the treated breast in breast cancer patients following breast conserving surgery and radiotherapy , 2012, Radiology and oncology.
[7] Jonathan Ophir,et al. A method for generating permeability elastograms and Poisson's ratio time-constant elastograms. , 2005, Ultrasound in medicine & biology.
[8] Michael F. Insana,et al. Viscoelastic Imaging of Breast Tumor Microenvironment With Ultrasound , 2004, Journal of Mammary Gland Biology and Neoplasia.
[9] J. Ophir,et al. A new elastographic method for estimation and imaging of lateral displacements, lateral strains, corrected axial strains and Poisson's ratios in tissues. , 1998, Ultrasound in medicine & biology.
[10] Jeffrey C Bamber,et al. The spatio-temporal strain response of oedematous and nonoedematous tissue to sustained compression in vivo. , 2008, Ultrasound in medicine & biology.
[11] Abbas Samani,et al. A method to measure the hyperelastic parameters of ex vivo breast tissue samples. , 2004, Physics in medicine and biology.
[13] Y. Fung,et al. Biomechanics: Mechanical Properties of Living Tissues , 1981 .
[14] Jeffrey C Bamber,et al. Towards an acoustic model-based poroelastic imaging method: II. experimental investigation. , 2006, Ultrasound in medicine & biology.
[15] J. Westerweel,et al. Universal outlier detection for PIV data , 2005 .
[16] A. Love. The Stress Produced in a Semi-Infinite Solid by Pressure on Part of the Boundary , 1929 .
[17] W M Lai,et al. An analysis of the unconfined compression of articular cartilage. , 1984, Journal of biomechanical engineering.
[18] J. Ophir,et al. Elastography: A Quantitative Method for Imaging the Elasticity of Biological Tissues , 1991, Ultrasonic imaging.
[19] Graham M. Treece,et al. Real-time quasi-static ultrasound elastography , 2011, Interface Focus.
[20] J Ophir,et al. Axial stress distributions between coaxial compressors in elastography: an analytical model. , 1992, Ultrasound in medicine & biology.
[21] Michael F Insana,et al. Ultrasonic viscoelasticity imaging of nonpalpable breast tumors: preliminary results. , 2008, Academic radiology.
[22] Jingfeng Jiang,et al. Recent results in nonlinear strain and modulus imaging. , 2011, Current medical imaging reviews.
[23] T. Varghese,et al. A theoretical framework for performance characterization of elastography: the strain filter , 1997, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[24] Jonathan Ophir,et al. The feasibility of using poroelastographic techniques for distinguishing between normal and lymphedematous tissues in vivo , 2007, Physics in medicine and biology.
[25] Jeffrey C Bamber,et al. Towards an acoustic model-based poroelastic imaging method: I. Theoretical foundation. , 2006, Ultrasound in medicine & biology.