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Fetal cardiac output, distribution to the placenta and impact of placental compromise Ultrasound Obstet Gynecol 2006;28:126–136 Rasanen J, Wood DC, Weiner S, Ludomirski A, Huhta JC Role of the pulmonary circulation in the distribution of the human fetal cardiac output during the second half of pregnancy Circulation 1996;94:1068–1073 De Smedt MCH, Visser GHA, Meijboom EF Fetal cardiac output estimated by Doppler echocardiography during mid- and late gestation Am J Cardiol 1987;60:338–342 St John Sutton M, Groves A, MacNeill A, Sharland G, Allan L Assessment of changes in blood flow through the lungs and foramen ovale in the normal human fetus with gestational age: a prospective Doppler echocardiographic study Br Heart J 1994;71:232–237 10 Mielke G, Benda N Cardiac output and central distribution of blood flow in the human fetus Circulation 2001;103:1662–1668 11 Jansz M, Seed M, van Amerom JF, et al Metric optimized gating for fetal cardiac MRI Magn Reson Med 2010;64:1304–1314 12 Zhu MY, Milligan N, Keating S, et al The hemodynamics of late-onset intrauterine growth restriction by MRI Am J Obstet Gynecol 2016;214:367.e1 13 Portnoy S, Osmond M, Zhu MY, et al Relaxation properties of human umbilical cord blood at 1.5 Tesla Magn Reson Med 2017;77:1678–1690 14 Portnoy S, Seed M, Sled JG, Macgowan CK Non-invasive evaluation of blood oxygen saturation and hematocrit from T1 and T2 relaxation times: in-vitro validation in fetal blood Magn Reson Med 2017;78:2352–2359 15 Seed M, Macgowan CK How I do it – fetal cardiovascular MRI Magnetom Flash 2014;57:66–72 16 Poudel R, McMillen IC, Dunn SL, Zhang S, Morrison JL Impact of chronic hypoxemia on blood flow to the brain, heart, and adrenal gland in the late-gestation IUGR sheep fetus Am J Physiol Regul Integr Comp Physiol 2014;308:R151–R162 17 Lausman A, Kingdom J Intrauterine growth restriction: screening, diagnosis, and management J Obstet Gynaecol Can 2013;35(8):741–748 18 Porayette P, Macgowan CK, Madathil S, et al Preliminary fetal hemodynamic patterns in late gestation fetuses with common forms of cyanotic congenital heart disease by phase contrast MRI and T2 mapping [Abstract 4555] ISMRM 23rd Annual Meeting & Exhibition 2015 [Toronto] 19 Jones HN, Olbrych SK, Smith KL, et al Hypoplastic left heart syndrome is associated with structural and vascular placental abnormalities and leptin dysregulation Placenta 2015;36:1078–1086 20 Goff DA, McKay EM, Davey BR, et al Abstract 11260: placental abnormalities in fetal congenital heart disease Circulation 2011;124:A11260 21 Albalawi A, Brancusi F, Askin F, et al Placental characteristics of fetuses with congenital heart disease J Ultrasound Med 2017;36:965–972 22 Lauridsen MH, Uldbjerg N, Henriksen TB, et al Cerebral oxygenation measurements by magnetic resonance imaging in fetuses with and without heart defects Circ Cardiovasc Imaging 2017;10:e006459 23 Lim J, Muthusami P, Madathil S, et al OC25.01 cerebral oxygen delivery, brain growth and white matter maturation are reduced in congenital heart disease fetuses 26th world congress on ultrasound in obstetrics and gynecology Ultrsound Obstet Gynecol 2016;48(suppl 1):44– 45 24 Nicolaides K, Clewell W, Mibashan R, et al

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