Echocardiography and cardiovascular magnetic resonance based evaluation of myocardial strain and relationship with late gadolinium enhancement
Tóm tắt
Từ khóa
Tài liệu tham khảo
Oyama-Manabe, 2011, Identification and further differentiation of subendocardial and transmural myocardial infarction by fast strain-encoded (SENC) magnetic resonance imaging at 3.0 tesla, Eur Radiol, 21, 2362, 10.1007/s00330-011-2177-4
Knappe, 2011, Dyssynchrony, contractile function, and response to cardiac resynchronization therapy, Circ Heart Fail, 4, 433, 10.1161/CIRCHEARTFAILURE.111.962902
Smedsrud, 2011, Detection of left ventricular dysfunction by global longitudinal systolic strain in patients with chronic aortic regurgitation, J Am Soc Echocardiogr, 24, 1253, 10.1016/j.echo.2011.08.003
Syeda, 2011, Two-dimensional speckle-tracking strain echocardiography in long-term heart transplant patients: a study comparing deformation parameters and ejection fraction derived from echocardiography and multislice computed tomography, Eur J Echocardiogr, 12, 490, 10.1093/ejechocard/jer064
Kutty, 2013, Reduced global longitudinal and radial strain with normal left ventricular ejection fraction late after effective repair of aortic coarctation: a CMR feature tracking study, Int J Cardiovasc Imaging., 29, 141, 10.1007/s10554-012-0061-1
Medvedofsky D, Maffessanti F, Weinert L, et al. 2D and 3D echocardiography-derived indices of left ventricular function and shape: relationship with mortality. JACC Cardiovasc Imaging. 2018;11:1569–79.
Sjøli, 2009, Comparison of left ventricular ejection fraction and left ventricular global strain as determinants of infarct size in patients with acute myocardial infarction, J Am Soc Echocardiogr, 22, 1232, 10.1016/j.echo.2009.07.027
Giusca, 2018, Reproducibility study on myocardial strain assessment using fast-SENC cardiac magnetic resonance imaging, Sci Rep, 8, 14100, 10.1038/s41598-018-32226-3
Altiok, 2013, Layer-specific analysis of myocardial deformation for assessment of infarct transmurality: comparison of strain-encoded cardiovascular magnetic resonance with 2D speckle tracking echocardiography, Eur Heart J Cardiovasc Imaging, 14, 570, 10.1093/ehjci/jes229
Plana, 2014, Expert consensus for multimodality imaging evaluation of adult patients during and after cancer therapy: a report from the American Society of Echocardiography and the European Association of Cardiovascular Imaging, J Am Soc Echocardiogr, 27, 911, 10.1016/j.echo.2014.07.012
Murtagh, 2016, Improved detection of myocardial damage in sarcoidosis using longitudinal strain in patients with preserved left ventricular ejection fraction, Echocardiography., 33, 1344, 10.1111/echo.13281
Altiok, 2014, Myocardial deformation imaging by two-dimensional speckle-tracking echocardiography for prediction of global and segmental functional changes after acute myocardial infarction: a comparison with late gadolinium enhancement cardiac magnetic resonance, J Am Soc Echocardiogr, 27, 249, 10.1016/j.echo.2013.11.014
Schneeweis, 2014, Value of additional strain analysis with feature tracking in dobutamine stress cardiovascular magnetic resonance for detecting coronary artery disease, J Cardiovasc Magn Reson, 16, 72, 10.1186/s12968-014-0072-2
Buss, 2015, Assessment of myocardial deformation with cardiac magnetic resonance strain imaging improves risk stratification in patients with dilated cardiomyopathy, Eur Heart J Cardiovasc Imaging, 16, 307, 10.1093/ehjci/jeu181
Korosoglou, 2009, Strain-encoded cardiac MRI as an adjunct for dobutamine stress testing: incremental value to conventional wall motion analysis, Circ Cardiovasc Imaging, 2, 132, 10.1161/CIRCIMAGING.108.790105
Youssef, 2008, Strain-encoding cardiovascular magnetic resonance for assessment of right-ventricular regional function, J Cardiovasc Magn Reson, 10, 33, 10.1186/1532-429X-10-33
Neizel, 2009, Strain-encoded MRI for evaluation of left ventricular function and transmurality in acute myocardial infarction, Circ Cardiovasc Imaging., 2, 116, 10.1161/CIRCIMAGING.108.789032
Osman, 2001, Imaging longitudinal cardiac strain on short-axis images using strain-encoded MRI, Magn Reson Med, 46, 324, 10.1002/mrm.1195
Kalam, 2014, Prognostic implications of global LV dysfunction: a systematic review and meta-analysis of global longitudinal strain and ejection fraction, Heart., 100, 1673, 10.1136/heartjnl-2014-305538
Voigt, 2015, Definitions for a common standard for 2D speckle tracking echocardiography: consensus document of the EACVI/ASE/industry task force to standardize deformation imaging, Eur Heart J Cardiovasc Imaging, 16, 1, 10.1093/ehjci/jeu184
Kim, 2018, Guidelines for training in cardiovascular magnetic resonance (CMR), J Cardiovasc Magn Reson, 20, 57, 10.1186/s12968-018-0481-8
Doesch, 2010, Visual estimation of the extent of myocardial hyperenhancement on late gadolinium-enhanced CMR in patients with hypertrophic cardiomyopathy, Magn Reson Imaging, 28, 812, 10.1016/j.mri.2010.03.034
Obokata, 2016, Direct comparison of cardiac magnetic resonance feature tracking and 2D/3D echocardiography speckle tracking for evaluation of global left ventricular strain, Eur Heart J Cardiovasc Imaging, 17, 525, 10.1093/ehjci/jev227
Onishi, 2015, Global longitudinal strain and global circumferential strain by speckle-tracking echocardiography and feature-tracking cardiac magnetic resonance imaging: comparison with left ventricular ejection fraction, J Am Soc Echocardiogr, 28, 587, 10.1016/j.echo.2014.11.018
Lamacie, 2017, Quantification of global myocardial function by cine MRI deformable registration-based analysis: comparison with MR feature tracking and speckle-tracking echocardiography, Eur Radiol, 27, 1404, 10.1007/s00330-016-4514-0
Aurich, 2016, Left ventricular mechanics assessed by two-dimensional echocardiography and cardiac magnetic resonance imaging: comparison of high-resolution speckle tracking and feature tracking, Eur Heart J Cardiovasc Imaging, 17, 1370, 10.1093/ehjci/jew042
Wang, 2018, Improved segmental myocardial strain reproducibility using deformable registration algorithms compared with feature tracking cardiac MRI and speckle tracking echocardiography, J Magn Reson Imaging, 48, 404, 10.1002/jmri.25937
Badano, 2013, Use of three-dimensional speckle tracking to assess left ventricular myocardial mechanics: inter-vendor consistency and reproducibility of strain measurements, Eur Heart J Cardiovasc Imaging, 14, 285, 10.1093/ehjci/jes184
Risum, 2012, Variability of global left ventricular deformation analysis using vendor dependent and independent two-dimensional speckle-tracking software in adults, J Am Soc Echocardiogr, 25, 1195, 10.1016/j.echo.2012.08.007
Gayat, 2011, Reproducibility and inter-vendor variability of left ventricular deformation measurements by three-dimensional speckle-tracking echocardiography, J Am Soc Echocardiogr, 24, 878, 10.1016/j.echo.2011.04.016
Cao, 2018, A comparison of both DENSE and feature tracking techniques with tagging for the cardiovascular magnetic resonance assessment of myocardial strain, J Cardiovasc Magn Reson, 20, 26, 10.1186/s12968-018-0448-9
Altiok, 2012, Quantitative analysis of endocardial and epicardial left ventricular myocardial deformation-comparison of strain-encoded cardiac magnetic resonance imaging with two-dimensional speckle-tracking echocardiography, J Am Soc Echocardiogr, 25, 1179, 10.1016/j.echo.2012.07.019
Siegel, 2018, Myocardial strain using cardiac MR feature tracking and speckle tracking echocardiography in Duchenne muscular dystrophy patients, Pediatr Cardiol, 39, 478, 10.1007/s00246-017-1777-4
Romano, 2018, Feature-tracking global longitudinal strain predicts death in a multicenter population of patients with ischemic and nonischemic dilated cardiomyopathy incremental to ejection fraction and late gadolinium enhancement, JACC Cardiovasc Imaging, 11, 1419, 10.1016/j.jcmg.2017.10.024
Huttin, 2016, Temporal deformation pattern in acute and late phases of ST-elevation myocardial infarction: incremental value of longitudinal post-systolic strain to assess myocardial viability, Clin Res Cardiol, 105, 815, 10.1007/s00392-016-0989-6
Kobayashi, 2016, Detection of left ventricular regional dysfunction and myocardial abnormalities using complementary cardiac magnetic resonance imaging in patients with systemic sclerosis without cardiac symptoms: a pilot study, Intern Med, 55, 237, 10.2169/internalmedicine.55.4441
Weigand, 2016, Feature tracking-derived peak systolic strain compared to late gadolinium enhancement in troponin-positive myocarditis: a case-control study, Pediatr Cardiol, 37, 696, 10.1007/s00246-015-1333-z
Sakamoto, 2018, Heterogeneity of longitudinal and circumferential contraction in relation to late gadolinium enhancement in hypertrophic cardiomyopathy patients with preserved left ventricular ejection fraction, Jpn J Radiol, 36, 103, 10.1007/s11604-017-0700-5
McComb, 2015, Assessment of the relationships between myocardial contractility and infarct tissue revealed by serial magnetic resonance imaging in patients with acute myocardial infarction, Int J Cardiovasc Imaging, 31, 1201, 10.1007/s10554-015-0678-y
Khan, 2015, Comparison of cardiovascular magnetic resonance feature tracking and tagging for the assessment of left ventricular systolic strain in acute myocardial infarction, Eur J Radiol, 84, 840, 10.1016/j.ejrad.2015.02.002
Goto, 2017, Comparison of displacement encoding with stimulated echoes to magnetic resonance feature tracking for the assessment of myocardial strain in patients with acute myocardial infarction, Am J Cardiol, 119, 1542, 10.1016/j.amjcard.2017.02.029
Wehner, 2018, Comparison of left ventricular strains and torsion derived from feature tracking and DENSE CMR, J Cardiovasc Magn Reson, 20, 63, 10.1186/s12968-018-0485-4