Andersons pediatric cardiology 1949

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Andersons pediatric cardiology 1949

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disease) Circulation 2008;118(23):2395–2451 254 Gurvitz M, Valente AM, Broberg C, et al Prevalence and predictors of gaps in care among adult congenital heart disease patients: HEARTACHD (The Health, Education, and Access Research Trial) J Am Coll Cardiol 2013;61(21):2180–2184 255 Kovacs AH, McCrindle BW So hard to say goodbye: transition from paediatric to adult cardiology care Nat Rev Cardiol 2014;11(1):51–62 256 Yeung E, Kay J, Roosevelt GE, Brandon M, Yetman AT Lapse of care as a predictor for morbidity in adults with congenital heart disease Int J Cardiol 2008;125(1):62–65 257 Wray J, Frigiola A, Bull C Adult Congenital Heart Disease Research Network Loss to specialist follow-up in congenital heart disease: out of sight, out of mind Heart 2013;99:485– 490 258 Kaneko S, Khoo NS, Smallhorn JF, Tham EB Single right ventricles have impaired systolic and diastolic function compared to those of left ventricular morphology J Am Soc Echocardiogr 2012;25(11):1222–1230 259 Li SJ, Wong SJ, Cheung YF Atrial and ventricular mechanics in patients after Fontan- type procedures: atriopulmonary connection versus extracardiac conduit J Am Soc Echocardiogr 2014;27(6):666–674 260 Rhodes J, Margossian R, Sleeper LA, et al Nongeometric echocardiographic indices of ventricular function in patients with a Fontan circulation J Am Soc Echocardiogr 2011;24(11):1213–1219 261 Rios R, Ginde S, Saudek D, et al Quantitative echocardiographic measures in the assessment of single ventricle function post-Fontan: incorporation into routine clinical practice Echocardiography 2017;34(1):108–115 262 Schlangen J, Petko C, Hansen JH, et al Twodimensional global longitudinal strain rate is a preload independent index of systemic right ventricular contractility in hypoplastic left heart syndrome patients after Fontan operation Circ Cardiovasc Imaging 2014;7(6):880–886 263 Steflik D, Butts RJ, Baker GH, et al A preliminary comparison of two-dimensional speckle tracking echocardiography and pressurevolume loop analysis in patients with Fontan physiology: the role of ventricular morphology Echocardiography 2017;34(9):1353–1359 264 Ghelani S, Harrild D, Gauvreau K, Geva T, Rathod R Comparison between echocardiography and cardiac magnetic resonance imaging in predicting transplant-free survival after the Fontan operation Am J Cardiol 2015;116:1132–1138 265 Thangadurai D, Tang W, Pullaiah T Genes, genomes, and genomics New Delhi: Daya Publishing House (July 6, 2006) 2006 266 Tomkiewicz-Pajak L, Podolec P, Drabik L, et al Single ventricle function and exercise tolerance in adult patients after Fontan operation Acta Cardiol 2014;69(2):155–160 267 Fogel MA Cardiac magnetic resonance of single ventricles J Cardiovasc Magn Reson 2006;8(4):661–670 268 Margossian R, Schwartz ML, Prakash A, et al Comparison of echocardiographic and cardiac magnetic resonance imaging measurements of functional single ventricular volumes, mass, and ejection fraction (from the Pediatric Heart Network Fontan Cross-Sectional Study) Am J Cardiol 2009;104(3):419–428 269 Takawira F, Ayer JG, Onikul E, et al Evaluation of the extracardiac conduit modification of the Fontan operation for thrombus formation using magnetic resonance imaging Heart Lung Circ 2008;17(5):407–410 270 Hjortdal VE, Christensen TD, Larsen SH, ... magnetic resonance imaging measurements of functional single ventricular volumes, mass, and ejection fraction (from the Pediatric Heart Network Fontan Cross-Sectional Study) Am J Cardiol 2009;104(3):419–428 269 Takawira F, Ayer JG, Onikul E, et al

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