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causing impediment to left ventricular inflow Ultrasound Obstet Gynecol 2015;45(6):664– 669 103 Szwast A, Putt M, Gaynor JW, Licht D, Rychik J Cerebrovascular response to maternal hyperoxygenation (MH) in fetuses with hypoplastic left heart syndrome (HLHS) depends upon gestational age (GA) and baseline cerebrovascular resistance Ultrasound Obstet Gynecol 2017 104 Kohl T Chronic intermittent materno-fetal hyperoxygenation in late gestation may improve on hypoplastic cardiovascular structures associated with cardiac malformations in human fetuses Pediatr Cardiol 2010;31(2):250–263 105 Zeng S, Zhou J, Peng Q, et al Sustained maternal hyperoxygenation improves aortic arch dimensions in fetuses with coarctation Sci Rep 2016;6:39304 106 Baschat AA, Gembruch U, Reiss I, Gortner L, Diedrich K Demonstration of fetal coronary blood flow by doppler ultrasound in relation to arterial and venous flow velocity waveforms and perinatal outcome - the ‘heart-sparing effect Ultrasound Obstet Gynecol 1997;9:162–172 107 Gembruch U, Baschat AA Demonstration of fetal coronary blood flow by colour-coded and pulsed wave doppler sonography: a possible indicator of severe compromise and impending demise in intrauterine growth retardation Ultrasound Obstet Gynecol 1996;7:10–16 108 Reller MD, Burson MA, Lohr JL, Morton MJ, Thornburg KL Nitric oxide is an important determinant of coronary flow at rest and during hypoxemic stress in fetal lambs Am J Physiol 1995;269:H2074–H2081 109 Chaoui R The fetal ‘heart-sparing effect’ detected by the assessment of coronary blood flow: a further ominous sign of fetal compromise Ultrasound Obstet Gynecol 1996;7:5–9 110 Baschat AA, Gembruch U, Reiss I, et al Relationship between arterial and venous doppler and perinatal outcome in fetal growth restriction Ultrasound Obstet Gynecol 2000;16:407–413 111 Wohlmuth C, Boudreaux D, Moise KJ Jr, et al Cardiac pathophysiology in twin-twin transfusion syndrome: new insights into its evolution Ultrasound Obstet Gynecol 2017 112 Lau VK, Sagawa K, Suga H Instantaneous pressure-volume relationship of right atrium during isovolumic contraction in canine heart Am J Physiol 1979;236:H672–H679 113 Clark EB, Hu N, Dummett JL, et al Ventricular function and morphology in chick embryo from stages 18 to 29 Am J Physiol 1986;250:H407– H413 114 Henein MY, Gibson DG Normal long axis function Heart 1999;81(2):111–113 115 Mäkikallio K, Jouppila P, Räsänen J Human fetal cardiac function during the first trimester of pregnancy Heart 2005;91:334–338 116 Wladimiroff JW, Huisman TW, Stewart PA Fetal cardiac flow velocities in the late 1st trimester of pregnancy: a transvaginal doppler study J Am Coll Cardiol 1991;17:1357–1359 117 Wladimiroff JW, Stewart PA, Burghouwt MT, Stijnen T Normal fetal cardiac flow velocity waveforms between 11 and 16 weeks of gestation Am J Obstet Gynecol 1992;167:736– 739 118 van der Mooren K, Barendregt LG, Wladimiroff JW Fetal atrioventricular and outflow tract flow velocity waveforms during normal second half of pregnancy Am J Obstet Gynecol 1991;165:668–674 119 van Splunder IP, Stijnen T, Wladimiroff JW Fetal atrioventricular, venous and arterial flow velocity waveforms in the small for gestational age fetus Pediatr Res 1997;42:765–775

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