Accesso libero

Investigation of the impact of local properties of 3D data on the accuracy of block matching-based speckle tracking echocardiography

, ,  e   
03 ott 2024
INFORMAZIONI SU QUESTO ARTICOLO

Cita
Scarica la copertina

Alessandrini M, Heyde B, Queiros S, et al. Detailed Evaluation of Five 3D Speckle Tracking Algorithms Using Synthetic Echocardiographic Recordings. IEEE Trans Med Imaging. 2016;35(8):1915-1926. https://doi.org/10.1109/tmi.2016.2537848 Search in Google Scholar

Larsson M, Kremer F, Claus P, Brodin LA, D’hooge J. A novel measure to express tracking quality in ultrasound block matching. 2010 IEEE International Ultrasonics Symposium. 2010;28:1636-1639. https://doi.org/10.1109/ultsym.2010.5935715 Search in Google Scholar

D’hooge J, Barbosa D, Gao H, et al. Two-dimensional speckle tracking echocardiography: standardization efforts based on synthetic ultrasound data. Eur Heart J Cardiovasc Imaging. 2015;17(6):693-701. https://doi.org/10.1093/ehjci/jev197 Search in Google Scholar

Jasaityte R, Heyde B, D’hooge J. Current State of Three-Dimensional Myocardial Strain Estimation Using Echocardiography. Journal of the American Society of Echocardiography. 2013;26(1):15-28. https://doi.org/10.1016/j.echo.2012.10.005 Search in Google Scholar

Lesniak-Plewinska B, Cygan S, Kaluzynski K, et al. A Dual-Chamber, Thick-Walled Cardiac Phantom for Use in Cardiac Motion and Deformation Imaging by Ultrasound. Ultrasound in Medicine & Biology. 2010;36(7):1145-1156. https://doi.org/10.1016/j.ultrasmedbio.2010.04.008 Search in Google Scholar

Heyde B, Cygan S, Hon Fai Choi, et al. Regional cardiac motion and strain estimation in three-dimensional echocardiography: a validation study in thick-walled univentricular phantoms. IEEE Trans Ultrason, Ferroelect, Freq Contr. 2012;59(4):668-682. https://doi.org/10.1109/tuffc.2012.2245 Search in Google Scholar

Cygan S, Kumor M, Żmigrodzki J, Leśniak-Plewińska B, Kowalski M, Kałużyński K. Left ventricular phantoms with inclusions simulating transmural and non-transmural infarctions: FEM and EchoPAC study. Duric N, Heyde B, eds. SPIE Proceedings. 2017;10139:1013918. https://doi.org/10.1117/12.2254350 Search in Google Scholar

De Craene M, Marchesseau S, Heyde B, et al. 3D Strain Assessment in Ultrasound (Straus): A Synthetic Comparison of Five Tracking Methodologies. IEEE Trans Med Imaging. 2013;32(9):1632-1646. https://doi.org/10.1109/tmi.2013.2261823 Search in Google Scholar

Zmigrodzki J, Cygan S, Wilczewska A, Kaluzynski K. Quantitative Assessment of the Effect of the Out-of-Plane Movement of the Homogenous Ellipsoidal Model of the Left Ventricle on the Deformation Measures Estimated Using 2-D Speckle Tracking—An In-Silico Study. IEEE Trans Ultrason, Ferroelect, Freq Contr. 2018;65(10):1789-1803. https://doi.org/10.1109/tuffc.2018.2856127 Search in Google Scholar

Wilczewska A, Cygan S, Żmigrodzki J. Segmentation Enhanced Elastic Image Registration for 2D Speckle Tracking Echocardiography—Performance Study In Silico. Ultrason Imaging. 2022;44(1):39-54. https://doi.org/10.1177/01617346211068812 Search in Google Scholar

Voigt JU, Pedrizzetti G, Lysyansky P, et al. Definitions for a common standard for 2D speckle tracking echocardiography: consensus document of the EACVI/ASE/Industry Task Force to standardize deformation imaging. European Heart Journal - Cardiovascular Imaging. 2014;16(1):1-11. https://doi.org/10.1093/ehjci/jeu184 Search in Google Scholar

Heyde B, Alessandrini M, Hermans J, Barbosa D, Claus P, D’hooge J. Anatomical Image Registration Using Volume Conservation to Assess Cardiac Deformation From 3D Ultrasound Recordings. IEEE Trans Med Imaging. 2016;35(2):501-511. https://doi.org/10.1109/tmi.2015.2479556 Search in Google Scholar

Chapelle D, Le Tallec P, Moireau P, Sorine M. An energy-preserving muscle tissue model: formulation and compatible discretizations. Int J Mult Comp Eng. 2012;10(2):189-211. https://doi.org/10.1615/intjmultcompeng.2011002360 Search in Google Scholar

Hang Gao, Hon Fai Choi, Claus P, et al. A fast convolution-based methodology to simulate 2-Dd/3-D cardiac ultrasound images. IEEE Trans Ultrason, Ferroelect, Freq Contr. 2009;56(2):404-409. https://doi.org/10.1109/tuffc.2009.1051 Search in Google Scholar

Alessandrini M, De Craene M, Bernard O, et al. A Pipeline for the Generation of Realistic 3D Synthetic Echocardiographic Sequences: Methodology and Open-Access Database. IEEE Trans Med Imaging. 2015;34(7):1436-1451. https://doi.org/10.1109/tmi.2015.2396632 Search in Google Scholar

Guyon I, Elisseeff A. An introduction to variable and feature selection. J Mach Learn Res. 2003;(3):1157-1182. Search in Google Scholar

Wuensch KL, Evans JD. Straightforward Statistics for the Behavioral Sciences. Journal of the American Statistical Association. 1996;91(436):1750. https://doi.org/10.2307/2291607 Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Medicina, Ingegneria biomedica, Fisica, Fisica tecnica ed applicata, Fisica medica