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Early Human Development
Volume 82, Issue 12
, Pages 755-760
, December 2006
Fetal testosterone and sex differences
References
- . Sexual differentiation of human brain and behavior. In: Pfaff D, Arnold A, Etgen A, Fahrbach S, Rubin R editor. Hormones, brain and behavior. New York: Academic Press; 2002;p. 425–462
- . Sex and cognition. Cambridge, MA: The MIT Press; 1999;
- . Hormones, brain, and behavior: putatative biological contributions to cognitive sex differences. In: McGillicuddy-DeLisi A, DeLisi R editor. Biology, society, and behavior: the development of sex differences in cognition. Greenwich: Ablex; 2002;
- . Behavioral masculinization is independent of genital masculinization in prenatally androgenized female rhesus macaques. Horm Behav. 1988;22:552–571
- . Organizing action of prenatally administered testosterone propionate on the tissues mediating mating behavior in the female guinea pig. Endocrinology. 1959;65:369–382
- . Anatomy, development, and function of sexually dimorphic neural circuits in the mammalian brain. In: Pfaff D, Arnold A, Etgen A, Fahrbach S, Rubin R editor. Hormones, brain and behavior. New York: Academic Press; 2002;p. 137–191
- . Williams textbook of endocrinology. In: Larsen P, Kronenberg H, Melmed S, Polonsky K editor. Williams textbook of endocrinology. 10th ed.. Philadelphia: Saunders; 2003;p. 842–969
- . Minireview: sex chromosomes and brain sexual differentiation. Endocrinology. 2004;145(3):1057–1062
- . The fetal hormonal environment and its effect on the morphogenesis of the genital system. In: Kogan S, Hafez E editor. Pediatric andrology. Boston: Martinus Nijhoff; 1981;p. 9–19
- . Endocrine physiology. New York: Oxford University Press; 1985;
- . Human sexual differentiation — in utero influences. J Obstet Gynaecol. 1974;81:448–453
- . The biology of puberty: new developments in sex differences. In: Hayward C editors. Gender differences at puberty. Cambridge: Cambridge University Press; 2003;p. 17–28
- . Blockade of neonatal activation of the pituitary–testicular axis: effect on peripubertal luteinizing hormone and testosterone secretion and on testicular development in male monkeys. J Clin Endocrinol Metab. 1989;68:600–607
- . Nonverbal sex differences: communication accuracy and expressive style. Baltimore: John Hopkins University Press; 1984;
- . Another advanced test of theory of mind: evidence from very high functioning adults with autism or Asperger Syndrome. J Child Psychol Psychiatry. 1997;38:813–822
- . Race and sex in the perception of emotion. J Soc Issues. 1972;28(4):63–78
- . Sex differences in the encoding and decoding of negative facial emotions. J Nonverbal Behav. 1988;12:139–148
- . Gender differences in verbal ability: a meta-analysis. Psychol Bull. 1988;104:53–69
- . Recognition of faux pas by normally developing children and children with Asperger Syndrome or high functioning autism. J Autism Dev Disord. 1999;29(5):407–418
- . The role of age and verbal ability in the theory of mind task performance of subjects with autism. Child Dev. 1995;66:843–855
- . Greater preference among females than males for dyadic interaction in early childhood. Child Dev. 1993;64:544–555
- . Human sex differences in social and non-social looking preferences at 12 months of age. Infant Behav Dev. 2002;25:319–325
- . Foetal testosterone and eye contact in 12 month old infants. Infant Behav Dev. 2002;25:327–335
- . Sex differences in human neonatal social perception. Infant Behav Dev. 2001;23:113–118
- . A window for the study of prenatal sex hormone influences on postnatal development. J Genet Psychol. 1989;150:101–112
- . Androgen effects on women's gendered behaviour. J Biosoc Sci. 1995;27:359–368
- . Testosterone during pregnancy and gender role behavior of preschool children: a longitudinal, population study. Child Dev. 2002;73(6):1678–1687
- . Relations between prenatal testosterone levels and cognitive abilities at 4 years. Dev Psychol. 1992;28(6):1075–1089
- . Mental rotation at 7 years: relations with prenatal testosterone levels and spatial play experiences. Brain Cogn. 1995;29:85–100
- . Relations between prenatal testosterone and cerebral lateralization in children. Neuropsychology. 1995;9:68–79
- . Prevalence of disorders of the autism spectrum in a population cohort of children in South Thames: the Special Needs and Autism Project (SNAP). The Lancet. 2006;368:210–215
- . Reading the eyes: evidence for the role of perception in the development of a theory of mind. In: Davies M, Stone M editor. The stimulation theory debate. Blackwells; 1995;
- . Developmental changes in the scanning of faces by young infants. Child Dev. 1976;47:523–527
- The frequency and distribution of spontaneous attention shifts between social and non-social stimuli in autistic, typically developing and non-autistic developmentally delayed infants. J Child Psychol Psychiatry. 1998;39(5):7747–7753
- . Infant vocabulary development assessed with a British Communicative Inventory: lower scores in the UK than the USA. J Child Lang. 2000;27(3):689–705
- . Foetal testosterone and vocabulary size in 18- and 24-month-old infants. Infant Behav Dev. 2002;24:418–424
- . Development of the children's communication checklist (CCC): a method for assessing qualitative aspects of communicative impairment in children. J Child Psychol Psychiatry. 1998;6:879–891
- Auyeung B, Baron-Cohen S, Chapman E, Knickmeyer R, Taylor K, Hackett G. Foetal Testosterone and the Child Systemizing Quotient (SQ-C). Eur J Endocrinol in press.
- Chapman E, Baron-Cohen S, Auyeung B, Knickmeyer R, Taylor K, Hackett G. Fetal Testosterone and Empathy: Evidence from the ‘Reading the Mind in the Eyes’ Test. J Soc Neurosci in press.
- . Fetal testosterone and empathy. Horm Behav. 2006;49(3):282–292
- . Foetal testosterone, social relationships, and restricted interests in children. J Child Psychol Psychiatry. 2005;46(2):198–210
- . Fetal testosterone and sex differences in typical social development and in autism. J Child Neurol. 2006;21:825–845
☆ The longitudinal studies of fetal testosterone and child development reviewed in this paper were carried out at the Autism Research Centre, University of Cambridge. This work was supported by the Nancy Lurie Marks Family Foundation. RCK was also supported by a British Government Overseas Research Studentship (ORS) and the Cambridge Overseas Trust. Portions of this work appeared in Knickmeyer and Baron-Cohen [42].
PII: S0378-3782(06)00247-7
doi: 10.1016/j.earlhumdev.2006.09.014
© 2006 Elsevier Ireland Ltd. All rights reserved.
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Early Human Development
Volume 82, Issue 12
, Pages 755-760
, December 2006
