Clinical Studies

CoSense Publications

Castillo Cuadrado M, Vreman H, Wong R, Stevenson D, and Bhutani V. From bench to bedside: evaluation of a new end-tidal carbon monoxide monitor to identify hemolysis in infants. Poster presentation at Pediatrics Academic Societies Meeting, May 6, 2014.

Du L, Zou P, Chen L, and Bhutani V. Exhaled end-tidal carbon monoxide testing for hemolysis in neonates with significant hyperbilirubinemia and postive direct anti-globulin test. Poster presentation at Pediatrics Academic Societies Meeting, May 6, 2014.

Lal A, Patterson L, Goldrich A, Marsh A, Yen K, and Bhatnager A. Detection of Elevated End-Tidal Carbon Monoxide Concentration in Children with Sickle Cell Anemia. Poster presentation at Pediatrics Academic Societies Meeting, May 6, 2014.

Publications Related to Jaundice, Hyperbilirubinemia, Phototherapy, and End-Tidal Carbon Monoxide

Management of hyperbilirubinemia in the newborn infant 35 or more weeks of gestation. Pediatrics 2004;114:297-316, p. 297, 300, 303, 306.

Christensen RD, Lambert DK, Henry E, Eggert LD, Yaish HM, Reading NS et al. Unexplained extreme hyperbilirubinemia among neonates in a multihospital healthcare system. Blood Cells Mol Dis. 2013 Feb;50(2):105-9.

Csoma Z, Toth-Molnar E, Balogh K, Polyanka H, Orvos H, Ocsai H et al. Neonatal Blue Light Phototherapy and Melanocytic Nevi: A Twin Study. Pediatrics. 2011;128:e856-e864.

Kuzniewicz M and Newman TB. Interaction of Hemolysis and Hyperbilirubinemia on Neurodevelopmental Outcomes in the Collaborative Perinatal Project. Pediatrics. 2009;123:1045-1050.

Tatli MM, Minnet C, Kocyigit A, Karadag A. Phototherapy increases DNA damage in lymphocytes of hyperbilirubinemic neonates. Mutation Research. 2008;654:93-95.

Newman TB, Liljestrand P, Jeremy RJ, Ferriero DM, Wu YW, Hudes ES et al. Outcomes among newborns with total serum bilirubin levels of 25 mg per deciliter or more. The New England Journal of Medicine. 2006;354(18):1889-1900.

Javier, MC, Krauss A, Nesin M. Corrected End-Tidal Carbon Monoxide Closely Correlates with the Corrected Reticulocyte Count in Coombs’ Test-Positive Term Neonates. Pediatrics. 2003;112(6):1333-1337.

Ozmert E, Erdem G, Topcu M, Yurdakok M, Tekinalp G, Genc D et al. Long-term follow-up of indirect hyperbilirubinemia in full-term Turkish infants. Acta Paediatr. 1996;85:1440-1444.

Cnattingius S, Zack M, Ekbom A, Gunnarskog J, Linet M, Adami HO. Prenatal and Neonatal Risk Factors for Childhood Myeloid Leukemia. Cancer Epidemiology, Biomarkers & Prevention. 1995;4:441-445.

Nilsen ST, Finne PH, Bergsjo P, Stamnes O. Males with Neonatal Hyperbilirubinemia Examined at 18 Years of Age. Acta Paediatr Scand. 1984;73:176-180.

Speck WT and Rosenkranz HS. Phototherapy for Neonatal Hyperbilirubinemia – A Potential Environmental Health Hazard to Newborn Infants: A Review. Environmental Mutagenesis. 1979;1:321-336.

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