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Psychology 320: Psychology of Gender and Sex Differences Lecture 17 1 Office Hour Invitations October 23rd, 1:30-2:30, Kenny 2517 28041093 61532081 31850118 70909080 45373099 72358096 59257006 74363094 60234085 74458092 2 Announcement Jacqueline-Marie (TA for students with last names A-M) must cancel her office hour today due to a missed airline flight on return from a conference. Please feel free to contact her with questions via e-mail over the weekend or early next week. 3 Biological Theories of Sex Differences 1. What biological theories have been proposed to explain sex differences? (continued) 4 By the end of today’s class, you should be able to: 1. review evidence that supports genetic contributions to sex differences in psychological characteristics. 2. discuss the causes and symptoms of Klinefelter syndrome. 3. identify the three classes of sex-related hormones. 5 4. review evidence that supports hormonal contributions to sex differences in psychological characteristics. 5. define the “challenge hypothesis.” 6. discuss the causes and symptoms of congenital adrenal hyperplasia. 6 What biological theories have been proposed to explain sex differences? (continued) 2. Genetic Theories (continued) Example 2: Genetic Atypicalities Klinefelter Syndrome • Results from an extra X chromosome in males (XXY). • Incidence: 1/1000 – 3/1000 live births. 7 8 • Physical symptoms include: small firm testes small penis underdeveloped muscles rounded body type (i.e., wide hips) atypical body proportions tall build gynecomastia reduced facial/body hair language learning impairment decreased libido infertility epilepsy 9 • Psychological symptoms include: “incomplete masculinization” and “feminization.” 10 11 12 13 3. Hormonal Theories There are three classes of sex-related hormones: Estrogens (e.g., estradiol; relatively high among females). Progestins (e.g., progesterone). Androgens (e.g., testosterone; relatively high among males). 14 Estrogens and androgens are particularly important in sex differentiation, in utero and at puberty. Research suggests, in addition to sex differentiation, hormones influence the psychological and behavioural characteristics of the sexes. 15 Example 1: Non-Human Animal Experiments vom Saal, Grant, McMullen, and Laves (1983) • Contrasted the behaviour of male mice exposed to high prenatal testosterone levels and male mice exposed to low prenatal testosterone levels. • Target embryos were “placed” between male siblings or female siblings. • Males exposed to higher testosterone levels displayed more aggressive behaviour postnatally. 16 Example 2: Correlational Studies Dabbs, Carr, Frady, and Riad (1995); Dabbs, Ruback, Frady, Hopper, and Sgoutas (1988) • Found that male and female prison inmates who had relatively high levels of testosterone displayed higher levels of negative masculinity (e.g., impulsiveness, aggression, disobedience; vs. positive masculinity). 17 Example 3: Meta-Analytic Studies Book, Starzyk, and Quinsey (2001) • Conducted a meta-analysis of 45 studies that examined the relationship between testosterone and aggression among females and males. 18 • Average correlation was +.23; correlation was strongest among males aged 13 – 20 years, at +.58. • The authors proposed the “challenge hypothesis” to explain the latter finding. 19 Example 4: Hormonal Atypicalities Congenital Adrenal Hyperplasia (CAH) • CAH is a genetically-based disorder that results in excessive androgen production in utero. • Male fetuses are relatively unaffected by CAH. Female fetuses develop ”masculinized” genitalia. 20 Congenital Adrenal Hyperplasia 21 22 Ehrhardt, Epstein, and Money (1968) • Examined 15 girls diagnosed with CAH. • The behavioural profiles of the CAH participants were more “masculine” than those of controls, as indicated by: lower levels of anticipation of marriage, preference for career over marriage, less preference for doll play, less interest in infant care, a preference for boy’s clothes, a greater interest in outdoor activity. 23 Hines, Brook, and Conway (2004) • Examined 16 women and 9 men diagnosed with CAH. • CAH women recalled more male-typical play behavior, reported less satisfaction with female sex assignment, and showed less heterosexual interest than female controls. • CAH men did not differ significantly from male controls. 24 Biological Theories of Sex Differences 1. What biological theories have been proposed to explain sex differences? (continued) 25