Superior vena cava flow: Role, assessment and controversies in the management of perinatal perfusion.
暂无分享,去创建一个
[1] W. Tarnow-Mordi,et al. Correction: Associations of measures of systemic blood flow used in a randomized trial of delayed cord clamping in preterm infants , 2019, Pediatric Research.
[2] W. Tarnow-Mordi,et al. Associations of measures of systemic blood flow used in a randomized trial of delayed cord clamping in preterm infants , 2019, Pediatric Research.
[3] D. Wertheim,et al. Intra‐ and Inter‐rater Agreement of Superior Vena Cava Flow and Right Ventricular Outflow Measurements in Late Preterm and Term Neonates , 2018, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[4] S. Lorch,et al. Incidence Trends and Risk Factor Variation in Severe Intraventricular Hemorrhage across a Population Based Cohort , 2018, The Journal of pediatrics.
[5] E. D. del Giudice,et al. Electrocardiographic and echocardiographic changes during therapeutic hypothermia in encephalopathic infants with long-term adverse outcome. , 2018, Resuscitation.
[6] P. McNamara,et al. The role of Neonatologist Performed Echocardiography in the assessment and management of neonatal shock , 2018, Pediatric Research.
[7] P. McNamara,et al. Application of NPE in the assessment of a patent ductus arteriosus , 2018, Pediatric Research.
[8] Eun Hee Lee,et al. Chronological Echocardiographic Changes in Healthy Term Neonates within Postnatal 72 Hours Using Doppler Studies , 2018, Journal of Korean medical science.
[9] K. Barrington,et al. Correlations between near-infrared spectroscopy, perfusion index, and cardiac outputs in extremely preterm infants in the first 72 h of life , 2018, European Journal of Pediatrics.
[10] C. Tissot,et al. Basics of Functional Echocardiography in Children and Neonates , 2017, Front. Pediatr..
[11] W. Tarnow-Mordi,et al. Interobserver agreement and image quality of functional cardiac ultrasound measures used in a randomised trial of delayed cord clamping in preterm infants , 2017, Archives of Disease in Childhood: Fetal and Neonatal Edition.
[12] Robert M. Goulding,et al. Heart rate variability in hypoxic ischemic encephalopathy during therapeutic hypothermia , 2017, Pediatric Research.
[13] W. Tarnow-Mordi,et al. Effect of Delayed Cord Clamping on Systemic Blood Flow: A Randomized Controlled Trial. , 2016, The Journal of pediatrics.
[14] A. Price,et al. A modified echocardiographic approach improves reliability of superior vena caval flow quantification , 2016, Archives of Disease in Childhood: Fetal and Neonatal Edition.
[15] P. Mannix,et al. Superior vena cava flow and intraventricular haemorrhage in extremely preterm infants , 2016, The journal of maternal-fetal & neonatal medicine : the official journal of the European Association of Perinatal Medicine, the Federation of Asia and Oceania Perinatal Societies, the International Society of Perinatal Obstetricians.
[16] F. Cabañas,et al. Randomized, Placebo-Controlled Trial of Dobutamine for Low Superior Vena Cava Flow in Infants. , 2015, The Journal of pediatrics.
[17] C. Tinelli,et al. Cerebral Oxygenation, Superior Vena Cava Flow, Severe Intraventricular Hemorrhage and Mortality in 60 Very Low Birth Weight Infants , 2015, Neonatology.
[18] I. Seri,et al. Hemodynamic monitoring of the critically ill neonate: An eye on the future. , 2015, Seminars in fetal & neonatal medicine.
[19] N. Finer,et al. Umbilical Cord Milking Versus Delayed Cord Clamping in Preterm Infants , 2015, Pediatrics.
[20] P. Davis,et al. Hemodynamic effects of nasal continuous positive airway pressure in preterm infants with evolving chronic lung disease, a crossover randomized trial. , 2015, The Journal of pediatrics.
[21] F. Cabañas,et al. New time-frequency method for cerebral autoregulation in newborns: predictive capacity for clinical outcomes. , 2014, The Journal of pediatrics.
[22] I. Seri,et al. Does targeted neonatal echocardiography affect hemodynamics and cerebral oxygenation in extremely preterm infants? , 2014, Journal of Perinatology.
[23] Steven P. Miller,et al. Preferential cephalic redistribution of left ventricular cardiac output during therapeutic hypothermia for perinatal hypoxic-ischemic encephalopathy. , 2014, The Journal of pediatrics.
[24] J. Hajnal,et al. Validation Study of the Accuracy of Echocardiographic Measurements of Systemic Blood Flow Volume in Newborn Infants , 2013, Journal of the American Society of Echocardiography : official publication of the American Society of Echocardiography.
[25] M. Kluckow,et al. Weight corrected percentiles for blood vessel diameters used in flow measurements in preterm infants. , 2013, Early human development.
[26] E. Bancalari,et al. Effect of Positive End-Expiratory Pressure on Ductal Shunting and Systemic Blood Flow in Preterm Infants with Patent Ductus Arteriosus , 2013, Neonatology.
[27] E. Dempsey,et al. Cerebral tissue oxygenation index, cardiac output and superior vena cava flow in infants with birth weight less than 1250 grams in the first 48 hours of life. , 2013, Early human development.
[28] J. Bowen,et al. Relationship between systemic blood flow, blood pressure, inotropes, and aEEG in the first 48 h of life in extremely preterm infants , 2013, Pediatric Research.
[29] M. Benders,et al. Cerebral oxygenation and brain activity after perinatal asphyxia: does hypothermia change their prognostic value? , 2013, Pediatric Research.
[30] N. Yoshikawa,et al. Correlation between echocardiographic superior vena cava flow and short-term outcome in infants with asphyxia. , 2013, Early human development.
[31] A. Harabor,et al. Comparison Between a Suprasternal or High Parasternal Approach and an Abdominal Approach for Measuring Superior Vena Cava Doppler Velocity in Neonates , 2012, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[32] L. Storme,et al. Hemodynamic effects of fluid restriction in preterm infants with significant patent ductus arteriosus. , 2012, The Journal of pediatrics.
[33] R. Mori,et al. The diagnostic value of a single measurement of superior vena cava flow in the first 24 h of life in very preterm infants , 2012, European Journal of Pediatrics.
[34] C. Raker,et al. Hemodynamic Effects of Delayed Cord Clamping in Premature Infants , 2012, Pediatrics.
[35] K. Waal. The methodology of Doppler-derived central blood flow measurements in newborn infants. , 2012 .
[36] P. McNamara,et al. Targeted neonatal echocardiography in the neonatal intensive care unit: practice guidelines and recommendations for training:. , 2011, European journal of echocardiography : the journal of the Working Group on Echocardiography of the European Society of Cardiology.
[37] M. Meyer,et al. Delayed cord clamping and blood flow in the superior vena cava in preterm infants: an observational study , 2011, Archives of Disease in Childhood: Fetal and Neonatal Edition.
[38] J. Deslauriers,et al. Anatomy of the superior vena cava and brachiocephalic veins. , 2011, Thoracic surgery clinics.
[39] Y. Takei,et al. Changes in Cerebral Perfusion in Extremely LBW Infants During the First 72 h After Birth , 2010, Pediatric Research.
[40] K. Waal,et al. Central blood flow measurements in stable preterm infants after the transitional period , 2010, Archives of Disease in Childhood: Fetal and Neonatal Edition.
[41] K. Liestøl,et al. Superior vena cava flow: feasibility and reliability of the off-line analyses , 2009, Archives of Disease in Childhood: Fetal and Neonatal Edition.
[42] B. Popescu,et al. Respiratory maneuvers in echocardiography: a review of clinical applications , 2009, Cardiovascular ultrasound.
[43] J. H. van der Lee,et al. Effect of lung recruitment on pulmonary, systemic, and ductal blood flow in preterm infants. , 2009, The Journal of pediatrics.
[44] M. Kluckow,et al. Randomized trial of milrinone versus placebo for prevention of low systemic blood flow in very preterm infants. , 2009, The Journal of pediatrics.
[45] K. Pichová,et al. Cerebral tissue oxygenation index and superior vena cava blood flow in the very low birth weight infant , 2009, Acta paediatrica.
[46] H. Aly,et al. Hemodynamic Changes During Weaning From Nasal Continuous Positive Airway Pressure , 2008, Pediatrics.
[47] I. Rieger,et al. Low Superior Vena Cava Flow and Effect of Inotropes on Neurodevelopment to 3 Years in Preterm Infants , 2007, Pediatrics.
[48] J. Skinner,et al. Echocardiographic assessment of blood flow volume in the superior vena cava and descending aorta in the newborn infant , 2007, Archives of Disease in Childhood Fetal and Neonatal Edition.
[49] J. Skinner,et al. Relationship between blood pressure and blood flow in newborn preterm infants , 2007, Archives of Disease in Childhood Fetal and Neonatal Edition.
[50] M. Kluckow,et al. Cardiorespiratory effects of changes in end expiratory pressure in ventilated newborns , 2007, Archives of Disease in Childhood Fetal and Neonatal Edition.
[51] J. Skinner,et al. Early Low Cardiac Output Is Associated with Compromised Electroencephalographic Activity in Very Preterm Infants , 2006, Pediatric Research.
[52] A. McLachlan,et al. Pilot study of milrinone for low systemic blood flow in very preterm infants. , 2006, The Journal of pediatrics.
[53] G. Kongolo,et al. Severity of the ductal shunt: a comparison of different markers , 2005, Archives of Disease in Childhood - Fetal and Neonatal Edition.
[54] R. Hunt,et al. Low superior vena cava flow and neurodevelopment at 3 years in very preterm infants. , 2004, The Journal of pediatrics.
[55] N. Evans,et al. Randomized trial of high-frequency oscillatory ventilation versus conventional ventilation: effect on systemic blood flow in very preterm infants. , 2003, The Journal of pediatrics.
[56] M. Kluckow,et al. Hemodynamic and antecedent risk factors of early and late periventricular/intraventricular hemorrhage in premature infants. , 2003, Pediatrics.
[57] M. Kluckow,et al. Randomized trial of dobutamine versus dopamine in preterm infants with low systemic blood flow. , 2002, The Journal of pediatrics.
[58] M. Kluckow,et al. Superior vena cava flow in newborn infants: a novel marker of systemic blood flow , 2000, Archives of disease in childhood. Fetal and neonatal edition.
[59] M. Kluckow,et al. Low superior vena cava flow and intraventricular haemorrhage in preterm infants , 2000, Archives of disease in childhood. Fetal and neonatal edition.
[60] K. Harada,et al. Changes in superior vena cava velocity patterns in normal neonates. , 1998, The American journal of cardiology.
[61] K. Arheart,et al. Contribution of superior vena caval flow to total cardiac output in children. A Doppler echocardiographic study. , 1995, Circulation.
[62] E. Braunwald. Regulation of the circulation. I. , 1974, The New England journal of medicine.
[63] Willem-Pieter de Boode. Cardiac output monitoring in newborns. , 2010, Early human development.