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Research Paper

Relationship between pre-natal factors, the perinatal environment, motor development in the first year of life and the timing of first deciduous tooth emergence

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Pages 25-33 | Received 30 Jul 2014, Accepted 16 Dec 2014, Published online: 12 Jun 2015

References

  • Akalin-Sel T, Campbell S. 1992. Understanding the pathophysiology of intra-uterine growth retardation: the role of the ‘lower limb reflex’ in redistribution of blood flow. Eur J Obstet Gynecol Reprod Biol 23:79–86
  • Aktoren O, Tuna EB, Guven Y, Gokcay G. 2010. A study on neonatal factors and eruption time of primary teeth. Community Dent Health 27:52–56
  • al-Ghazali W, Chita SK, Chapman MG, Allan LD. 1989. Evidence of redistribution of cardiac output in asymmetrical growth retardation. Br J Obstet Gynaecol 96:697–704
  • Barbería Leache E, Marañes Pallardo JP, Mourelle Martínez MR, Moreno González JP. 1988. Tooth eruption in children with growth deficit. J Int Ass Dent Child 19:29–35
  • Bastos JL, Peres MA, Peres KG, Barros AJ. 2007. Infant growth, development and tooth emergence patterns: a longitudinal study from birth to 6 years of age. Arch Oral Biol 52:598–606
  • Baume LJ, Becks H, Evans HM. 1954. Hormonal control of tooth eruption. I. The effect of thyroidectomy of the upper rat incisor and the response to growth hormone, thyroxin, or the combination of both. J Dent Res 33:80–90
  • Bjerre I, Hansen E. 1976. Psychomotor development and school-adjustment of 7-year-old children with low birthweight. Acta Paediatr Scand 65:88–96
  • Chan E, Bockmann M, Hughes T, Mihailidis S, Townsend G. 2012. Do feeding practices, gestation length, and birth weight affect the timing of emergence of the first primary tooth? In: Townsend GC, Kanazawa E, Takayama H, editors. New directions in dental anthropology. Adelaide: University of Adelaide Press. p 35
  • Cunnane SC, Crawford MA. 2003. Survival of the fattest: fat babies were the key to evolution of the large human brain. Comp Biochem Physiol A Mol Integr Physiol 136:17–26
  • Cunnane SC, Crawford MA. 2014. Energetic and nutritional constraints on infant brain development: implications for brain expansion during human evolution. J Hum Evol 77:88–98
  • Delgado H, Habicht JP, Yarbrough C, Lechtig A, Martorell R, Malina RM, Klein RE. 1975. Nutritional status and the timing of deciduous tooth eruption. Am J Clin Nutr 28:216–224
  • Enwonwu CO. 1973. Influence of socio-economic conditions on dental development in Nigerian children. Arch Oral Biol 18:95–107
  • Fadavi S, Punwani IC, Adeni S, Vidyasagar D. 1992. Eruption pattern in the primary dentition of premature low-birth-weight children. ASDC J Dent Child 59:120–122
  • Fatemifar G, Hoggart CJ, Paternoster L, Kemp JP, Prokopenko I, Horikoshi M, Wright VJ, et al. 2013. Genome-wide association study of primary tooth eruption identifies pleiotropic loci associated with height and craniofacial distances. Hum Mol Genet 22:3807–3817
  • Filipińska-Skąpska R, Proc P, Wochna-Sobańska M. 2005. Times and sequence of eruption of the deciduous teeth in children from Łódź. Czas Stomat LVIII:182–187
  • Folayan M, Owotade F, Adejuyigbe E, Sen S, Lawal B, Ndukwe K. 2007. The timing of eruption of the primary dentition in Nigerian children. Am J Phys Anthropol 134:443–448
  • Folayan MO, Sowole CA. 2013. Association between breastfeeding and eruption of the first tooth preschool children in Nigeria. Eur J Paediatr Dent 14:51–54
  • Gale C, Logan KM, Santhakumaran S, Parkinson JR, Hyde MJ, Modi N. 2012. Effect of breastfeeding compared with formula feeding on infant body composition: a systematic review and meta-analysis. Am J Clin Nutr 95:656–669
  • Garn SM, Nagy JM, Sandusky ST, Trowbridge F. 1973. Economic impact on tooth emergence. Am J Phys Anthropol 39:233–237
  • Gianni ML, Roggero P, Morlacchi L, Garavaglia E, Piemontese P, Mosca F. 2014. Formula-fed infants have significantly higher fat-free mass content in their bodies than breastfed babies. Acta Paediatr 103:e277–81
  • Gillett RM. 1997. Dental emergence among urban Zambian school children: an assessment of the accuracy of three methods in assigning ages. Am J Phys Anthropol 102:447–454
  • Goyen TA, Lui K. 2002. Longitudinal motor development of “apparently normal” high-risk infants at 18 months, 3 and 5 years. Early Hum Dev 70:103–115
  • Goyen TA, Lui K, Woods R. 1998. Visual-motor, visual-perceptual, and fine motor outcomes in very-low-birthweight children at 5 years. Dev Med Child Neurol 40:76–81
  • Groos AD. 1991. Delayed motor development in relation to nutritional status among children under two years of age in two district of Simbu Province. P N G Med J 34: 238–245
  • Haddad AE, Correa MS. 2005. The relationship between the number of erupted primary teeth and the child’s height and weight: a cross-sectional study. J Clin Pediatr Dent 29:357–362
  • Heywood AH, Marshall T, Heywood PF. 1991. Motor development and nutritional status of young children in Madang Papua New Guinea. P N G Med J 34:109–116
  • Holman DJ, Jones RE. 1998. Longitudinal analysis of deciduous tooth emergence: II. Parametric survival analysis in Bangladeshi, Guatemalan, Japanese, and Javanese children. Am J Phys Anthropol 105:209–230
  • Holman DJ, Yamaguchi K. 2005. Longitudinal analysis of deciduous tooth emergence: IV. Covariate effects in Japanese children. Am J Phys Anthropol 126:352–358
  • Hughes TE, Bockmann MR, Seow K, Gotjamanos T, Gully N, Richards LC, Townsend GC. 2007. Strong genetic control of emergence of human primary incisors. J Dent Res 86:1160–1165
  • Hulland SA, Lucas JO, Wake MA, Hesketh KD. 2000. Eruption of the primary dentition in human infants: a prospective descriptive study. Ped Dent 22:415–421
  • Infante PF, Owen GM. 1973. Relation of chronology of deciduous tooth emergence to height, weight and head circumference in children. Arch Oral Biol 18:1411–1417
  • Jara L, Ondarza A, Blanco R, Valenzuela C. 1993. The sequence of eruption of the permanent dentition in a Chilean sample with Down’s Syndrome. Arch Oral Biol 38:85–89
  • Jauniaux E, Burton GJ. 2007. Morphological and biological effects of maternal exposure to tobacco smoke on the feto-placental unit. Early Hum Dev 83:699–706
  • Kulkarni S, Ramakrishnan U, Dearden KA, Marsh DR, Ha TT, Tran TD, Pachón H. 2012. Greater length-for-age increases the odds of attaining motor milestones in Vietnamese children aged 5-18 months. Asia Pac J Clin Nutr 21:241–246
  • Lampl M, Kuzawa CW, Jeanty P. 2003. Prenatal smoke exposure alters growth in limb proportions and head shape in the midgestation human fetus. Am J Hum Biol 15:533–546
  • Lawoyin TO, Lawoyin DO, Lawoyin JO. 1996. Epidemiological study of some factors related to deciduous tooth eruption. Afr Dent J 10:19–23
  • Marks SC Jr. 1995. The basic and applied biology of tooth eruption. Connect Tissue Res 32:149–157
  • Marks SC, Schroeder HE. 1996. Tooth eruption: theories and facts. Anat Rec 2:374–393
  • Martín Moreno V, Molina Cabrerizo MR, Gómez Gómez C. 2006. Relationship among the eruption of the first temporal teeths, the breast feeding duration and the anthropometric development in the first two years of life. Nutr Hosp 21:362–368
  • Modi N, Thomas EL, Harrington TA, Uthaya S, Doré CJ, Bell JD. 2006. Determinants of adiposity during preweaning postnatal growth in appropriately grown and growth-restricted term infants. Pediatr Res 60:345–348
  • Neto PG, Falcão MC. 2014. Eruption chronology of the first deciduous teeth in children born prematurely with birth weight less than 1500g. Rev Paul Pediatr 32:17–23
  • Noffke CE, Chabikuli NJ, Nzima N. 2005. Impaired tooth eruption: a review. SADJ 60:422–425
  • O’Callaghan MJ, Burns Y, Gray P, Harvey JM, Mohay HI, Rogers Y, Tudehope DI. 1996. Extremely low birth weight and control infants at 2 years corrected age: a comparison of intellectual abilities, motor performance, growth and health. Early Hum Dev 40:115–128
  • Olczak-Kowalczyk D, Boguszewska-Gutenbaum H, Janicha J, Turska-Szybka A. 2011. Wybrane zagadnienia związane z wyrzynaniem zębów mlecznych. Nowa Stomat 2:73–76
  • Ondarza A, Jara L, Muñoz P, Blanco R. 1997. Sequence of eruption of deciduous dentition in a Chilean sample with Down’s syndrome. Arch Oral Biol 42:401–406
  • Ounsted M, Moar V, Scott A. 1987. A longitudinal study of tooth emergence and somatic growth in 697 children from birth to three years. Arch Oral Biol 32:787–791
  • Oziegbe EO, Adekoya-Sofowora C, Folayan MO, Esan TA, Owotade FJ. 2009. Relationship between socio-demographic and anthropometric variables and number of erupted primary teeth in suburban Nigerian children. Matern Child Nutr 5:86–92
  • Patel MS, Srinivasan M. 2011. Metabolic programming in the immediate postnatal life. Ann Nutr Metab 58:18–28
  • Patel MS, Srinivasan M, Laychock SG. 2009. Metabolic programming: role of nutrition in the immediate postnatal life. J Inherit Metab Dis 32:218–228
  • Pelsmaekers B, Loos R, Carels C, Derom C, Vlietinck R. 1997. The genetic contribution to dental maturation. J Dent Res 76:1337–1340
  • Philbrick WM, Dreyer BE, Nakchbandi IA, Karaplis AC. 1998. Parathyroid hormone-related protein is required for tooth eruption. Proc Natl Acad Sci USA 95:11846–11851
  • Pillas D, Hoggart CJ, Evans DM, O'Reilly PF, Sipilä K, Lähdesmäki R, Millwood IY, et al. 2010. Genome-wide association study reveals multiple loci associated with primary tooth development during infancy. PLoS Genetics 6:e1000856
  • Proffit WR, Frazier-Bowers SA. 2009. Mechanism and control of tooth eruption: overview and clinical implications. Orthod Craniofac Res 12:59–66
  • Ramos SR, Gugisch RC, Fraiz FC. 2006. The influence of gestational age and birth weight of the newborn on tooth eruption. J Appl Oral Sci 14:228–232
  • Rantakallio P, Mäkinen H. 1984. Number of teeth at the age of one year in relation to maternal smoking. Ann Hum Biol 11:45–52
  • Ratcliffe PJ, O’Rourke JF, Maxwell PH, Pugh CW. 1998. Oxygen sensing, hypoxia-inducible factor-1 and the regulation of mammalian gene expression. J Exp Biol 201:1153–1162
  • Rosset I. 2009. Centile distributions of birth size in term infants of Lodz. Ped Pol 84:151–158
  • Sahara N, Toyoki A, Ashizawa Y, Deguchi T, Suzuki K. 1996. Cytodifferentation of the odontoclast prior to the shedding of human deciduous teeth: an ultrastructural and cytochemical study. Anat Rec 244:33–49
  • Sahin F, Camurdan AD, Camurdan MO, Olmez A, Oznurhan F, Beyazova U. 2008. Factors affecting the timing of teething in healthy Turkish infants: a prospective cohort study. Int J Paediatr Dent 18:262–266
  • Sajjadian N, Shajari H, Jahadi R, Barakat MG, Sajjadian A. 2010. Relationship between birth weight and time of first deciduous tooth eruption in 143 consecutively born infants. Pediatr Neonatol 51:235–237
  • Shuper A, Sarnat H, Mimouni F, Mimouni M, Varsano I. 1985. Deciduous tooth eruption in Israeli children. A cross-sectional study. Clin Pediatr (Phila) 24:342–344
  • Spray CM, Widdowson EM. 1950. The effect of growth and development on the composition of mammals. Br J Nutr 4:332–353
  • Suri L, Gagari E, Vastardis H. 2004. Delayed tooth eruption: pathogenesis, diagnosis, and treatment. A literature review. Am J Orthod Dentofacial Orthop 126:432–445
  • Sweet HO, Marks SC Jr, MacKay CA, Johnson KR, Davisson MT. 1996. Dense incisors (din): a new mouse mutation on chromosome 16 affecting tooth eruption and body size. J Hered 87:162–167
  • Thesleff I. 2003. Epithelial-mesenchymal signalling regulating tooth morphogenesis. J Cell Sci 116:1647–1648
  • Toker AS, Ay S, Yeler H, Sezgin I. 2009. Dental findings in Cornelia de Lange syndrome. Yonsei Med J 50:289–292
  • United Nations Children’s Fund, World Health Organization. 2004. Low birthweight: Country, Regional and Global Estimates. New York, NY: UNICEF. p 1–27
  • Viscardi RM, Romberg E, Abrams RG. 1994. Delayed primary tooth eruption in premature infants: relationship to neonatal factors. Pediatr Dent 16:23–28
  • Wake M, Hesketh K, Lucas J. 2000. Teething and tooth eruption in infants: a cohort study. Pediatrics 106:1374–1379
  • Weedon MN, Lango H, Lindgren CM, Wallace C, Evans DM, Mangino M, Freathy RM, et al. 2008. Genome-wide association analysis identifies 20 loci that influence adult height. Nat Genet 40:575–583
  • Wells JC, Chomtho S, Fewtrell MS. 2007. Programming of body composition by early growth and nutrition. Proc Nutr Soc 66:423–434
  • WHO Multicentre Growth Reference Study Group. 2006. WHO Motor Development Study: windows of achievement for six gross motor development milestones. Acta Paediatr (Suppl) 450:86–95
  • Wijnhoven TM, de Onis M, Onyango AW, Wang T, Bjoerneboe GE, Bhandari N, Lartey A, al Rashidi B. 2004. Assessment of gross motor development in the WHO Multicentre Growth Reference Study. Food Nutr Bull 25:S37–45
  • Wise GE, King GJ. 2008. Mechanisms of tooth eruption and orthodontic tooth movement. J Dent Res 87:414–434
  • Wise GE, Lin F. 1995. The molecular biology of initiation of tooth eruption. J Dent Res 74:303–306
  • Żądzińska E. 2002. The interrelation between the number of deciduous teeth and the morphological maturity of a child. Anthropol Anz 60:199–207
  • Żądzińska E, Nieczuja-Dwojacka J, Borowska-Strugińska B. 2013. Primary tooth emergence in Polish children: timing, sequence and the relation between morphological and dental maturity in males and females. Anthropol Anz 70:1–13

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