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

Year Number of Results
1839 1
1843 1
1860 1
1879 1
1887 1
1890 1
1896 1
1898 1
1899 1
1902 1
1905 1
1906 3
1907 2
1908 4
1910 4
1911 5
1912 5
1913 12
1914 8
1915 6
1916 3
1917 3
1918 1
1919 5
1920 9
1921 5
1922 4
1923 4
1924 5
1925 10
1926 8
1927 6
1928 11
1929 5
1930 4
1931 1
1932 9
1933 7
1934 9
1935 4
1936 12
1937 6
1938 6
1939 7
1940 8
1941 1
1942 3
1943 1
1944 5
1945 73
1946 363
1947 333
1948 243
1949 132
1950 55
1951 67
1952 77
1953 84
1954 75
1955 73
1956 72
1957 71
1958 72
1959 111
1960 119
1961 124
1962 131
1963 226
1964 418
1965 1263
1966 2399
1967 3510
1968 4171
1969 4910
1970 6108
1971 7226
1972 7042
1973 7254
1974 6858
1975 6998
1976 6633
1977 6018
1978 6016
1979 6234
1980 6249
1981 6159
1982 6580
1983 6780
1984 7322
1985 8048
1986 8160
1987 8433
1988 9169
1989 10134
1990 11203
1991 12004
1992 11929
1993 12873
1994 13493
1995 13445
1996 14083
1997 15210
1998 16660
1999 17424
2000 19883
2001 21827
2002 23716
2003 26203
2004 27906
2005 30066
2006 33497
2007 35491
2008 35973
2009 37277
2010 40830
2011 44786
2012 47544
2013 50754
2014 53052
2015 54361
2016 54694
2017 54156
2018 56592
2019 58937
2020 59661
2021 58097
2022 48411
2023 45820
2024 18453

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1,221,756 results

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Page 1
A systematic review and meta-analysis to revise the Fenton growth chart for preterm infants.
Fenton TR, Kim JH. Fenton TR, et al. BMC Pediatr. 2013 Apr 20;13:59. doi: 10.1186/1471-2431-13-59. BMC Pediatr. 2013. PMID: 23601190 Free PMC article. Review.
BACKGROUND: The aim of this study was to revise the 2003 Fenton Preterm Growth Chart, specifically to: a) harmonize the preterm growth chart with the new World Health Organization (WHO) Growth Standard, b) smooth the data between the preterm and WHO estimates …
BACKGROUND: The aim of this study was to revise the 2003 Fenton Preterm Growth Chart, specifically to: a) harmonize the preterm gr
Development of growth equations from longitudinal studies of body weight and height in the full term and preterm neonate: From birth to four years postnatal age.
Troutman JA, Sullivan MC, Carr GJ, Fisher J. Troutman JA, et al. Birth Defects Res. 2018 Jul 3;110(11):916-932. doi: 10.1002/bdr2.1214. Epub 2018 Mar 14. Birth Defects Res. 2018. PMID: 29536674 Free PMC article.
Modeling pediatric populations is challenging because of the rapid changes that occur during growth, particularly in the first few weeks and months after birth. ...The polynomial growth equations reported in this paper represent extrauterine growth in full te …
Modeling pediatric populations is challenging because of the rapid changes that occur during growth, particularly in the first few we …
Hair cell development.
Corwin JT, Warchol ME, Kelley MW. Corwin JT, et al. Curr Opin Neurobiol. 1993 Feb;3(1):32-7. doi: 10.1016/0959-4388(93)90032-t. Curr Opin Neurobiol. 1993. PMID: 8453286 Review.
Neurobiologists have been challenged by the desire to understand how the highly specialized ultrastructure of the sensory hair cells of the ear develops, how patterns of phenotypically distinct hair cells are formed and regenerate, and how their specific neural connections …
Neurobiologists have been challenged by the desire to understand how the highly specialized ultrastructure of the sensory hair cells of the …
Growth in the first two years of life.
Bier DM. Bier DM. Nestle Nutr Workshop Ser Pediatr Program. 2008;61:135-44. doi: 10.1159/000113364. Nestle Nutr Workshop Ser Pediatr Program. 2008. PMID: 18196950 Review.
Compared to other periods of life, infancy is a period of rapid growth, but the relative relationships among rates of linear growth, weight accretion and brain growth vary greatly during the first years of life. Additionally, while the energy requirements for …
Compared to other periods of life, infancy is a period of rapid growth, but the relative relationships among rates of linear growt
Growth and development of infants weighing less than 800 grams at birth.
Bennett FC, Robinson NM, Sells CJ. Bennett FC, et al. Pediatrics. 1983 Mar;71(3):319-23. Pediatrics. 1983. PMID: 6828339
Of the 16 infants, 13 (81%), including all three with birth weight less than 700 g, were without major CNS handicaps and were developing appropriately at 6 months to 3 years of age. Only one of the 16 had clearly subnormal mental development. ...
Of the 16 infants, 13 (81%), including all three with birth weight less than 700 g, were without major CNS handicaps and were developing
Wing morphogenesis in Lepidoptera.
Nijhout HF, McKenna KZ. Nijhout HF, et al. Prog Biophys Mol Biol. 2018 Sep;137:88-94. doi: 10.1016/j.pbiomolbio.2018.04.008. Epub 2018 Apr 26. Prog Biophys Mol Biol. 2018. PMID: 29786506 Review.
The wings of Lepidoptera develop from imaginal disks that are made up of a simple two-layered epithelium whose structure is always congruent with the final adult wing. It is therefore possible to map every point on the imaginal disk to a location on the adult wing througho …
The wings of Lepidoptera develop from imaginal disks that are made up of a simple two-layered epithelium whose structure is always co …
Neurohypophyseal peptides as regulators of growth and development. A review.
Carter DA, Fai CK, Murphy D. Carter DA, et al. J Mol Neurosci. 1993 Spring;4(1):11-9. doi: 10.1007/BF02736686. J Mol Neurosci. 1993. PMID: 8318355 Review.
In addition to their classical hormonal role, the neurohypophyseal peptides vasopressin (AVP) and oxytocin (OT) are also implicated as regulators of growth and development. Mitogenic actions of AVP are particularly well characterized and may underly the poten …
In addition to their classical hormonal role, the neurohypophyseal peptides vasopressin (AVP) and oxytocin (OT) are also implicated as regul …
1,221,756 results
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