Literature DB >> 16411059

Ultraviolet radiation at places of residence and the development of melanocytic nevi in children (Australia).

Dallas R English1, Elizabeth Milne, Julie A Simpson.   

Abstract

OBJECTIVE: To investigate the relationship between ambient ultraviolet radiation (UV) exposure and number of melanocytic nevi in children.
METHODS: A longitudinal study of nevi was conducted in 1614 children in Perth, Australia. Children had nevi counted on the back, face and arms at ages 6, 10, and 12 years. Erythemally effective UV irradiance was used to estimate ambient exposure from their places of residence before entry to the study at age 6 years. Data on UV radiation were derived from satellite measurements of ozone and atmospheric reflectivity.
RESULTS: At baseline, the response rate was 70%. At age 10, 90% of those recruited had nevus counts and at age 12, 69%. Children who had migrated to Perth from geographical locations with higher erythemal irradiance had, on average, 1.34 (95% confidence interval, 1.16-1.54) times as many nevi on the back at age 6, 1.29 (1.13-1.49) as many at age 10 and 1.10 (0.92-1.30) times as many at age 12. No significant associations were seen for the face or arms.
CONCLUSION: Ambient solar UV exposure in early childhood is positively associated with number of nevi and nevi develop soon after exposure to sunlight.

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Mesh:

Year:  2006        PMID: 16411059     DOI: 10.1007/s10552-005-0425-0

Source DB:  PubMed          Journal:  Cancer Causes Control        ISSN: 0957-5243            Impact factor:   2.506


  10 in total

1.  Cross-sectional analysis of the dermoscopic patterns and structures of melanocytic naevi on the back and legs of adolescents.

Authors:  M Fonseca; M A Marchetti; E Chung; S W Dusza; M E Burnett; A A Marghoob; A C Geller; M Bishop; A Scope; A C Halpern
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2.  Factors in Early Adolescence Associated With a Mole-Prone Phenotype in Late Adolescence.

Authors:  Haoming Xu; Michael A Marchetti; Stephen W Dusza; Esther Chung; Maira Fonseca; Alon Scope; Alan C Geller; Marilyn Bishop; Ashfaq A Marghoob; Allan C Halpern
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Review 3.  Melanocytic nevi and melanoma: unraveling a complex relationship.

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Review 4.  Childhood exposure to ultraviolet radiation and harmful skin effects: epidemiological evidence.

Authors:  Adèle C Green; Sarah C Wallingford; Penelope McBride
Journal:  Prog Biophys Mol Biol       Date:  2011-09-03       Impact factor: 3.667

5.  Effect of an intervention on observed sun protection by vacationers in a randomized controlled trial at North American resorts.

Authors:  David B Buller; Peter A Andersen; Barbara J Walkosz; Michael D Scott; Larry Beck; Gary R Cutter
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6.  Melanoma survivorship: research opportunities.

Authors:  Susan A Oliveria; Jennifer L Hay; Alan C Geller; Maureen K Heneghan; Mary S McCabe; Allan C Halpern
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Review 7.  Melanoma epidemiology and public health.

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8.  Study of Nevi in Children (SONIC): baseline findings and predictors of nevus count.

Authors:  Susan A Oliveria; Jaya M Satagopan; Alan C Geller; Stephen W Dusza; Martin A Weinstock; Marianne Berwick; Marilyn Bishop; Maureen K Heneghan; Allan C Halpern
Journal:  Am J Epidemiol       Date:  2008-11-10       Impact factor: 4.897

9.  Clinical and dermoscopic stability and volatility of melanocytic nevi in a population-based cohort of children in Framingham school system.

Authors:  Alon Scope; Stephen W Dusza; Ashfaq A Marghoob; Jaya M Satagopan; Juliana Braga Casagrande Tavoloni; Estee L Psaty; Martin A Weinstock; Susan A Oliveria; Marilyn Bishop; Alan C Geller; Allan C Halpern
Journal:  J Invest Dermatol       Date:  2011-05-12       Impact factor: 8.551

10.  Genetic factors associated with naevus count and dermoscopic patterns: preliminary results from the Study of Nevi in Children (SONIC).

Authors:  I Orlow; J M Satagopan; M Berwick; H L Enriquez; K A M White; K Cheung; S W Dusza; S A Oliveria; M A Marchetti; A Scope; A A Marghoob; A C Halpern
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  10 in total

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