An integrated array of microfluidic oxygenators as a neonatal lung assist device: in vitro characterization and in vivo demonstration.
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Wen-I Wu | Ponnambalam Ravi Selvaganapathy | Niels Rochow | P. Selvaganapathy | Jennifer M. Leung | J. Brash | G. Fusch | C. Fusch | Wen-I Wu | D. Predescu | John Brash | Christoph Fusch | Gerhard Fusch | N. Rochow | S. Monkman | Asmaa Manan | Shelley Monkman | Jennifer Leung | Emily Chan | Dipen Nagpal | Dragos Predescu | Asmaa Manan | E. Chan | J. Leung | D. Nagpal
[1] F. Brunelle. Arteriovenous malformation of the vein of Galen in children , 1997, Pediatric Radiology.
[2] N. Ambalavanan,et al. Permissive hypercapnia to decrease lung injury in ventilated preterm neonates. , 2009, Seminars in fetal & neonatal medicine.
[3] J. Brash,et al. Adsorption of proteins from infant and adult plasma to biomaterial surfaces. , 2002, Journal of biomedical materials research.
[4] Hermann Seitz,et al. A review on 3D micro-additive manufacturing technologies , 2012, The International Journal of Advanced Manufacturing Technology.
[5] B. Shadbolt,et al. Normative blood pressure data in non-ventilated premature neonates from 28–36 weeks gestation , 2009, Pediatric Nephrology.
[6] Barbara M. Johnston,et al. Non-Newtonian blood flow in human right coronary arteries: steady state simulations. , 2004, Journal of biomechanics.
[7] A. Peco‐Antić,et al. Blood pressure in non-critically ill preterm and full-term neonates , 2007, Pediatric Nephrology.
[8] P. Selvaganapathy,et al. Artificial Placenta - Lung Assist Devices for Term and Preterm Newborns with Respiratory Failure , 2013, International Journal of Artificial Organs.
[9] P. Selvaganapathy,et al. Lung assist device: development of microfluidic oxygenators for preterm infants with respiratory failure. , 2013, Lab on a chip.
[10] J. Brash,et al. Interfacial interactions of apolipoprotein AI and high density lipoprotein: overlooked phenomena in blood-material contact. , 2011, Journal of biomedical materials research. Part A.
[11] B. Schmidt,et al. Positive end-expiratory pressure above lower inflection point minimizes influx of activated neutrophils into lung* , 2004, Critical care medicine.
[12] G. Badger,et al. Mortality and Neonatal Morbidity Among Infants 501 to 1500 Grams From 2000 to 2009 , 2012, Pediatrics.
[13] P. Courtoy,et al. A model of protein-colloidal gold interactions. , 1987, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[14] J. Goldkrand,et al. Volumetric flow in the umbilical artery: normative data. , 2000, The Journal of maternal-fetal medicine.
[15] Thomas Reilly,et al. Estimating Human Energy Expenditure , 2003, Sports medicine.
[16] O. Linderkamp,et al. Longitudinal evaluation of energy expenditure in preterm infants with birth weight less than 1000 g , 2003, British Journal of Nutrition.
[17] C. Blaisdell,et al. Respiratory causes of infant mortality: progress and challenges. , 2010, American journal of perinatology.
[18] J. Moake,et al. Platelets and shear stress. , 1996, Blood.
[19] J. Tyson,et al. Risk factors for early death among extremely low-birth-weight infants. , 2002, American journal of obstetrics and gynecology.
[20] Nils R Planken,et al. The relation between vascular access flow and different types of vascular access with systemic hemodynamics in hemodialysis patients. , 2005, Artificial organs.
[21] T. Kiserud,et al. Degree of fetal umbilical venous constriction at the abdominal wall in a low‐risk population at 20–40 weeks of gestation , 2002, Prenatal diagnosis.
[22] Y. Cho,et al. Effects of the non-Newtonian viscosity of blood on flows in a diseased arterial vessel. Part 1: Steady flows. , 1991, Biorheology.
[23] G. Cutter,et al. The association of heparin exposure with intraventricular hemorrhage among very low birth weight infants. , 1995, Journal of perinatology : official journal of the California Perinatal Association.
[24] Klaus Affeld,et al. The effect of surface roughness on activation of the coagulation system and platelet adhesion in rotary blood pumps. , 2007, Artificial organs.
[25] Grace Ding,et al. Direct visualization of protein adsorption to primary containers by gold nanoparticles. , 2011, Journal of pharmaceutical sciences.
[26] M. Torloni,et al. The cross‐sectional area of umbilical cord components in normal pregnancy , 2007, International journal of gynaecology and obstetrics: the official organ of the International Federation of Gynaecology and Obstetrics.
[27] J. Nakano,et al. EFFECTS OF ARTERIOVENOUS FISTULA ON SYSTEMIC AND PULMONARY CIRCULATIONS. , 1964, The American journal of physiology.
[28] J. Zasadzinski,et al. Competitive adsorption: a physical model for lung surfactant inactivation. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[29] Ying Jun Du,et al. Chemical–Physical Characterization of Polyurethane Catheters Modified with a Novel Antithrombin-Heparin Covalent Complex , 2011, Journal of biomaterials science. Polymer edition.
[30] Lesley J. Smith,et al. Antithrombin-heparin covalent complex reduces microemboli during cardiopulmonary bypass in a pig model. , 2010, Blood.
[31] D. Holden,et al. Protein blotting: detection of proteins with colloidal gold, and of glycoproteins and lectins with biotin-conjugated and enzyme probes. , 1985, Analytical biochemistry.
[32] I. Seri,et al. Changes in myocardial function and hemodynamics after ligation of the ductus arteriosus in preterm infants. , 2007, The Journal of pediatrics.
[33] J. Martin,et al. Births: final data for 2005. , 2007, National vital statistics reports : from the Centers for Disease Control and Prevention, National Center for Health Statistics, National Vital Statistics System.
[34] Grzegorz Budzik,et al. Rapid Prototyping of wax foundry models in an incremental process , 2011 .
[35] S. Alper,et al. Hemodynamic shear stress and its role in atherosclerosis. , 1999, JAMA.