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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1942 1
1947 1
1952 1
1953 1
1955 2
1957 4
1958 6
1959 3
1960 2
1961 3
1963 4
1964 1
1965 4
1966 4
1967 3
1968 9
1969 8
1970 3
1971 2
1972 1
1973 1
1974 4
1975 2
1976 8
1977 8
1978 2
1979 6
1980 8
1981 4
1982 8
1983 2
1984 4
1985 4
1986 3
1987 4
1988 6
1989 3
1990 3
1991 3
1992 5
1993 5
1994 4
1995 4
1996 6
1997 3
1998 3
1999 1
2000 2
2001 16
2002 14
2003 7
2004 6
2005 20
2006 12
2007 14
2008 27
2009 17
2010 5
2011 6
2013 3
2014 5
2015 9
2016 7
2017 2
2018 4
2019 6
2020 12
2021 1
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Article attribute
Article type
Publication date

Similar articles for PMID: 16818575

352 results
Results by year
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Page 1
The contribution of hemolysis to early jaundice in normal newborns.
Maisels MJ, Kring E. Maisels MJ, et al. Pediatrics. 2006 Jul;118(1):276-9. doi: 10.1542/peds.2005-3042. Pediatrics. 2006. PMID: 16818575
Prediction of hyperbilirubinemia in near-term and term infants.
Stevenson DK, Fanaroff AA, Maisels MJ, Young BW, Wong RJ, Vreman HJ, MacMahon JR, Yeung CY, Seidman DS, Gale R, Oh W, Bhutani VK, Johnson LH, Kaplan M, Hammerman C, Nakamura H. Stevenson DK, et al. J Perinatol. 2001 Dec;21 Suppl 1:S63-72; discussion S83-7. doi: 10.1038/sj.jp.7210638. J Perinatol. 2001. PMID: 11803421
Evaluation of the direct antiglobulin (Coombs') test for identifying newborns at risk for hemolysis as determined by end-tidal carbon monoxide concentration (ETCOc); and comparison of the Coombs' test with ETCOc for detecting significant jaundice.
Herschel M, Karrison T, Wen M, Caldarelli L, Baron B. Herschel M, et al. J Perinatol. 2002 Jul-Aug;22(5):341-7. doi: 10.1038/sj.jp.7210702. J Perinatol. 2002. PMID: 12082466
Erythroid apoptosis in idiopathic neonatal jaundice.
Ozkan H, Oren H, Tatli M, Ateş H, Kumral A, Duman N. Ozkan H, et al. Pediatrics. 2008 May;121(5):e1348-51. doi: 10.1542/peds.2007-2215. Epub 2008 Apr 21. Pediatrics. 2008. PMID: 18426853
Measuring End-Tidal Carbon Monoxide of Jaundiced Neonates in the Birth Hospital to Identify Those with Hemolysis.
Christensen RD, Malleske DT, Lambert DK, Baer VL, Prchal JT, Denson LE, Gerday E, Weaver Lewis KA, Shepherd JG. Christensen RD, et al. Neonatology. 2016;109(1):1-5. doi: 10.1159/000438482. Epub 2015 Sep 23. Neonatology. 2016. PMID: 26394287
Failure to predict hemolysis and hyperbilirubinemia by IgG subclass in blood group A or B infants born to group O mothers.
Kaplan M, Na'amad M, Kenan A, Rudensky B, Hammerman C, Vreman HJ, Wong RJ, Stevenson DK. Kaplan M, et al. Pediatrics. 2009 Jan;123(1):e132-7. doi: 10.1542/peds.2008-2617. Epub 2008 Dec 29. Pediatrics. 2009. PMID: 19114458
End-tidal carbon monoxide as an indicator of the hemolytic rate.
Christensen RD, Lambert DK, Henry E, Yaish HM, Prchal JT. Christensen RD, et al. Blood Cells Mol Dis. 2015 Mar;54(3):292-6. doi: 10.1016/j.bcmd.2014.11.018. Epub 2014 Nov 26. Blood Cells Mol Dis. 2015. PMID: 25624169
The jaundiced newborn. Understanding and managing transitional hyperbilirubinemia.
Stevenson DK, Wong RJ, Hintz SR, Vreman HJ. Stevenson DK, et al. Minerva Pediatr. 2002 Oct;54(5):373-82. Minerva Pediatr. 2002. PMID: 12244276 Review.
Understanding neonatal jaundice: a perspective on causation.
Cohen RS, Wong RJ, Stevenson DK. Cohen RS, et al. Pediatr Neonatol. 2010 Jun;51(3):143-8. doi: 10.1016/S1875-9572(10)60027-7. Pediatr Neonatol. 2010. PMID: 20675237 Free article. Review.
[Transcutaneous bilirubinometry and early hospital discharge in low risk newborns with jaundice].
Corzo Pineda JA, Jurado Hernández VH, Tejera Orozco JL, Martínez González MO. Corzo Pineda JA, et al. Ginecol Obstet Mex. 2001 May;69:194-9. Ginecol Obstet Mex. 2001. PMID: 15326806 Spanish.
352 results
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