Kandel E. R., Schwartz J. H., Jessell T. M., Siegelbaum S. A., Hudspeth A. J. (eds). Principles of Neural Science. New York: McGraw Hill Medical, 2013. – Прим. перев.
Zucker I., Beery A. K. Males still dominate animal studies. Nature 2010; 465 (7299): 690.
Clayton J. A. Studying both sexes: a guiding principle for biomedicine. FASEB J 2016; 30 (2): 519–524.
Klein S. L. et al. Opinion: Sex inclusion in basic research drives discovery. Proc. Natl. Acad. Sci. USA 2015; 112 (17): 5257–5258.
Beery A. K., Zucker I. Sex bias in neuroscience and biomedical research. Neurosci. Biobehav. Rev. 2011; 35 (3): 565–572.
Zucker I., Beery A. K. Males still dominate animal studies. Nature 2010; 465 (7299): 690.
Cahill L. An issue whose time has come. J. Neurosci. Res. 2017; 95 (1–2): 12–13.
Rippon G. Blame the brain: How Neurononsense joined Psychobabble to keep women in their place, in: Lecture to the Royal Institution. The Royal Institution: London, 2016.
Cahill L. An issue whose time has come. J. Neurosci. Res. 2017; 95 (1–2): 12–13.
Joel D. et al. Sex beyond the genitalia: The human brain mosaic. Proc. Natl. Acad. Sci. USA 2015; 112 (50): 15468–15473.
NAPLAN. 2016 NAPLAN National Report. Australia, 2016.
McCarthy M. M. Sex Differences in the Brain. The Scientist, 2015.
Fine C. Delusions of Gender. The Real Science Behind Sex Differences. London: Icon Books, 2010.
Eliot L. Pink brain, blue brain: How small differences grow into troublesome gaps – and what we can do about it. New York: Houghton Mifflin Harcourt, 2010.
Green E. R., Maurer L. The teaching transgender toolkit. A facilitator’s guide to increasing knowledge, decreasing prejudice & building skills. NY: Out for Health & Planned Parenthood of the Southern Finger Lakes, 2015.
Green E. R., Maurer L. The teaching transgender toolkit. A facilitator’s guide to increasing knowledge, decreasing prejudice & building skills. NY: Out for Health & Planned Parenthood of the Southern Finger Lakes, 2015.
Sex and Gender. It’s Not a Women’s Issue. Scientific American. New York: Springer Nature, 2017.
Ezkurdia I. et al. Multiple evidence strands suggest that there may be as few as 19.000 human protein-coding genes. Hum. Mol. Genet. 2014; 23 (22): 5866–5878.
Darlington C. L. The Female Brain. 2nd ed. Conceptual advances in brain research. Boca Raton, FL.: Taylor & Francis Group, 2009.
Vaitukaitis J. L. Development of the home pregnancy test. Ann. NY Acad. Sci. 2004; 1038: 220–222.
Bale T. L. The placenta and neurodevelopment: sex differences in prenatal vulnerability. Dialogues Clin. Neurosci. 2016; 18 (4): 459–464.
Blom H. J. et al. Neural tube defects and folate: case far from closed. Nat. Rev. Neurosci. 2006; 7 (9): 724–731.
Wilhelm D., Palmer S., Koopman P. Sex determination and gonadal development in mammals. Physiol. Rev. 2007; 87 (1): 1–28.
Graves J. Differences between men and women are more than the sum of their genes. The Conversation, 2015.
Фетальный – относящийся к периоду внутриутробного развития. – Прим. ред.
De Mees C. et al. Alpha-fetoprotein controls female fertility and prenatal development of the gonadotropin-releasing hormone pathway through an antiestrogenic action. Mol. Cell Biol. 2006; 26 (5): 2012–2018.
Fine C. et al. Plasticity, plasticity, plasticity … and the rigid problem of sex. Trends Cogn. Sci. 2013; 17 (11): 550–551.
Eliot L. Pink brain, blue brain: How small differences grow into troublesome gaps – and what we can do about it. New York: Houghton Mifflin Harcourt, 2010.
Sacks O. The man who mistook his wife for a hat. London: Picador Classic, 1985.
Сакс О. «Человек, который принял жену за шляпу» и другие истории из врачебной практики / Пер. с англ. Григория Хасина и Юлии Численко. СПб.: Science Press, 2006. – Прим. ред.
Eriksson P. S. et al. Neurogenesis in the adult human hippocampus. Nat. Med. 1998; 4 (11): 1313–1317.
Dennis C. V. et al. Human adult neurogenesis across the ages: An immunohistochemical study. Neuropathol. Appl. Neurobiol. 2016; 42 (7): 621–638.
Wu J. et al. Available evidence of association between Zika virus and microcephaly. Chin. Med. J. (Engl.) 2016; 129 (19): 2347–2356.
Wu K. Y. et al. Vertical transmission of Zika virus targeting the radial glial cells affects cortex development of offspring mice. Cell Res. 2016; 26 (6): 645–654.
Ekblad M., Korkeila J., Lehtonen L. Smoking during pregnancy affects foetal brain development. Acta Paediatr. 2015; 104 (1): 12–18.
Ramsay H. et al. Smoking in pregnancy, adolescent mental health and cognitive performance in young adult offspring: results from a matched sample within a Finnish cohort. BMC Psychiatry 2016; 16 (1): 430.
Turner-Cobb J. M. Child health psychology: A biopsychosocial perspective. Los Angeles: Sage, 2014.
DiPietro J.A. et al. Maternal psychological distress during pregnancy in relation to child development at age two. Child Dev. 2006; 77 (3): 573–587.
King S. et al. Using natural disasters to study the effects of prenatal maternal stress on child health and development. Birth Defects Res. C Embryo Today. 2012; 96 (4): 273–288.
Jernigan T. L. et al. Postnatal brain development: structural imaging of dynamic neurodevelopmental processes. Prog. Brain Res. 2011; 189: 77–92.
Jernigan T. L. et al. Postnatal brain development: structural imaging of dynamic neurodevelopmental processes. Prog. Brain Res. 2011; 189: 77–92.
Lebel C., Beaulieu C. Longitudinal development of human brain wiring continues from childhood into adulthood. J. Neurosci. 2011; 31 (30): 10937–10947.
Jernigan T. L. et al. Postnatal brain development: structural imaging of dynamic neurodevelopmental processes. Prog. Brain Res. 2011; 189: 77–92.
Stiles J., Jernigan T. L. The basics of brain development. Neuropsychol. Rev. 2010; 20 (4): 327–348.
Newby J. The new science of wisdom, in: Catalyst, Heywood L., ed. ABC, 2006.
Gopnik A. How babies think. Scientific American 2010 (July).
Takesian A. E., Hensch T. K. Balancing plasticity/stability across brain development, in: Progress in brain research. Elsevier, 2013.
Fagiolini M. et al. Specific GABAA circuits for visual cortical plasticity. Science 2004; 303 (5664): 1681–1683.
Hensch T. K. The Power of the infant brain. Sci. Am. 2016; 314 (2): 64–69.
Friedmann N., Rusou D. Critical period for first language: the crucial role of language input during the first year of life. Curr. Opin. Neurobiol. 2015; 35: 27–34.
Kuhl P. K., Damasio A. R. Language, in: Principles of neural science, Kandel E. R., Schwartz J. H., Jessell T. M., Siegelbaum S. A., Hudspeth A. J., eds. N.Y.: McGraw Hill Medical, 2013.
Friedmann N., Rusou D. Critical period for first language: the crucial role of language input during the first year of life. Curr. Opin. Neurobiol. 2015; 35: 27–34.
Preisler G. Development of communication in children with sensory functional disabilities, in: The Wiley-Blackwell handbook of infant development. Wiley Blackwell: Chichester, 2010.
Sonuga-Barke E.J. et al. Child-to-adult neurodevelopmental and mental health trajectories after early life deprivation: the young adult follow – up of the longitudinal English and Romanian Adoptees study. Lancet 2017.
Center on the Developing Child. Toxic Stress. 2017. URL: .
Caspi A. et al. Childhood forecasting of a small segment of the population with large economic burden. Nature Human Behaviour 2016.
Liberty K. et al. Behavior problems and post-traumatic stress symptoms in children beginning school: A comparison of pre- and post-earthquake groups. PLOS Currents Disasters; 2016.
Lupien S. J. et al. Effects of stress throughout the lifespan on the brain, behaviour and cognition. Nat. Rev. Neurosci. 2009; 10 (6): 434–445.
Krugers H. J. et al. Early life adversity: Lasting consequences for emotional learning. Neurobiol. Stress 2017; 6: 14–21.
Heetkamp T., deTerte I. PTSD and resilience in adolescents after New Zealand earthquakes. New Zealand Journal of Psychology 2015; 44 (1).
Lambert S. et al. Indigenous resilience through urban disaster: The Maori response to the 2010 and 2011 Christchurch Otautahi earthquakes. Proceedings of the International Indigenous Development Research Conference 2012; Auckland Ngä Pae o te Märamatanga.
Pasterski V., Golombok S., Hines M. Sex differences in social behaviour, in: The Wiley Blackwell handbook of childhood social development, Smith P. K. and Hart C. H., eds. Wiley Blackwell: Chichester, 2014.
Hines M. et al. Prenatal androgen exposure alters girls’ responses to information indicating gender-appropriate behaviour. Philos. Trans. R. Soc. Lond. B. Biol. Sci. 2016; 371 (1688): 20150125.
Eliot L. Pink brain, blue brain: How small differences grow into troublesome gaps – and what we can do about it. New York: Houghton Mifflin Harcourt, 2010.
Kuiri-Hanninen T., Sankilampi U., Dunkel L. Activation of the hypothalamic-pituitary-gonadal axis in infancy: minipuberty. Horm. Res. Paediatr. 2014; 82 (2): 73–80.
Eliot L. Pink brain, blue brain: How small differences grow into troublesome gaps – and what we can do about it. New York: Houghton Mifflin Harcourt, 2010.
Lonsdorf E. V. Sex differences in nonhuman primate behavioral development. J. Neurosci. Res. 2017; 95 (12): 213–221.
Robles de Medina, P.G., et al. Fetal behaviour does not differ between boys and girls. Early Hum Dev. 2003. 73(1–2): 17–26.
Aznar A., Tenenbaum H. R. Gender and age differences in parent-child emotion talk. Br. J. Dev. Psychol. 2015; 33 (1): 148–155.
Eliot L. Pink brain, blue brain: How small differences grow into troublesome gaps – and what we can do about it. New York: Houghton Mifflin Harcourt, 2010.
Tenenbaum H. R., Ford S., Alkhedairy B. Telling stories: gender differences in peers’ emotion talk and communication style. Br. J. Dev. Psychol. 2011; 29 (pt. 4): 707–721.
Leman P. J., Tenenbaum H. R. Practising gender: children’s relationships and the development of gendered behaviour and beliefs. Br. J. Dev. Psychol. 2011; 29 (pt. 2): 153–157.
Maney D. L. Just like a circus: the public consumption of sex differences. Curr. Top. Behav. Neurosci. 2015; 19: 279–296.
von Stumm S., Chamorro-Premuzic T., Furnham A. Decomposing self-estimates of intelligence: structure and sex differences across 12 nations. Br. J. Psychol. 2009; 100 (pt. 2): 429–442.
Bian L., Leslie S. J., Cimpian A. Gender stereotypes about intellectual ability emerge early and influence children’s interests. Science 2017; 355 (6323): 389–391.
Goodwin K. Raising your child in a digital world. Sydney: Finch Publishing, 2016.
Oberfield S. E., Sopher A. B., Gerken A. T. Approach to the girl with early onset of pubic hair. J. Clin. Endocrinol. Metab. 2011; 96 (6): 1610–1622.
Mundy L. K. et al. Adrenarche and the emotional and behavioral problems of late childhood. J. Adolesc. Health 2015; 57 (6): 608–616.
Delany F. M. et al. Depression, immune function, and early adrenarche in children. Psychoneuroendocrinology 2016; 63: 228–234.
Whittle S. et al. Associations between early adrenarche, affective brain function and mental health in children. Soc. Cogn. Affect. Neurosci. 2015; 10 (9): 1282–1290.
Klauser P. et al. Reduced frontal white matter volume in children with early onset of adrenarche. Psychoneuroendocrinology 2015; 52: 111–118.
Byrne M. L. et al. A systematic review of adrenarche as a sensitive period in neurobiological development and mental health. Dev. Cogn. Neurosci. 2017; 25: 12–28.
Australian Institute of Family Studies. The Longitudinal study of Australian children annual statistical report 2015. Commonwealth of Australia: Melbourne, 2016.
Seminara S. B., Crowley W. F. Jr. Kisspeptin and GPR 54: discovery of a novel pathway in reproduction. J. Neuroendocrinol. 2008; 20 (6): 727–731.
de Roux N. et al. Hypogonadotropic hypogonadism due to loss of function of the KiSS 1–derived peptide receptor GPR 54. Proc. Natl. Acad. Sci. USA 2003; 100 (19): 10972–10976.
Herman-Giddens M.E. et al. Secondary sexual characteristics and menses in young girls seen in office practice: a study from the Pediatric Research in Office Settings network. Pediatrics 1997; 99 (4): 505–512.
Biro F. M. et al. Onset of breast development in a longitudinal cohort. Pediatrics 2013; 132 (6): 1019–1027.
Greenspan L., Deardorff J. The New Puberty. How to navigate early development in today’s girls. New York: Rodale, 2014.
Aksglaede L. et al. Age at puberty and the emerging obesity epidemic. PLoS One 2009; 4 (12): e8450.
Greenspan L., Deardorff J. The New Puberty. How to navigate early development in today’s girls. New York: Rodale, 2014.
Balzer B. W. et al. The effects of estradiol on mood and behavior in human female adolescents: a systematic review. Eur. J. Pediatr. 2015; 174 (3): 289–298.
Rosewarne L. Periods in pop culture: Menstruation in film and television. London: Lexington Books, 2012.
Angier N. Woman. An intimate geography. London: Virago, 2014.
Toffoletto S. et al. Emotional and cognitive functional imaging of estrogen and progesterone effects in the female human brain: a systematic review. Psychoneuroendocrinology 2014; 50: 28–52.
Sundström-Poromaa I., Gingnell M. Menstrual cycle influence on cognitive function and emotion processing – from a reproductive perspective. Front. Neurosci. 2014; 8: 380.
Ferree N. K., Kamat R., Cahill L. Influences of menstrual cycle position and sex hormone levels on spontaneous intrusive recollections following emotional stimuli. Conscious Cogn. 2011; 20 (4): 1154–1162.
McCarthy M. M. Multifaceted origins of sex differences in the brain. Philos. Trans. R. Soc. Lond. B. Biol. Sci. 2016; 371 (1688): 20150106.
Bramble M. S. et al. Effects of chromosomal sex and hormonal influences on shaping sex differences in brain and behavior: Lessons from cases of disorders of sex development. J. Neurosci. Res. 2017; 95 (1–2): 65–74.
Irwing P., Lynn R. Sex differences in means and variability on the progressive matrices in university students: a meta-analysis. Br. J. Psychol. 2005; 96 (pt. 4): 505–524.
Blinkhorn S. Intelligence: a gender bender. Nature 2005; 438 (7064): 31–32.
Direkvand-Moghadam A. et al. Epidemiology of premenstrual syndrome (PMS): A Systematic review and meta-analysis study. J. Clin. Diagn. Res. 2014; 8 (2): 106–109.
Romans S. et al. Mood and the menstrual cycle: a review of prospective data studies. Gend. Med. 2012; 9 (5): 361–384.
Romans S. E. et al. Mood and the menstrual cycle. Psychother. Psychosom. 2013; 82 (1): 53–60.
Ussher J. The myth of premenstrual moodiness. The Conversation, 2012.
Ussher J. The myth of premenstrual moodiness. The Conversation, 2012.
Ussher J. The myth of premenstrual moodiness. The Conversation, 2012.
Kulkarni J. PMS is real and denying its existence harms women. The Conversation. 2012.
Gehlert S. et al. The prevalence of premenstrual dysphoric disorder in a randomly selected group of urban and rural women. Psychol. Med. 2009; 39 (1): 129–136.
Comasco E., Sundström-Poromaa I. Neuroimaging the menstrual cycle and premenstrual dysphoric disorder. Curr. Psychiatry Rep. 2015; 17 (10): 77.
Romans S. E. et al. Crying, oral contraceptive use and the menstrual cycle. J. Affect. Disord. 2017; 208: 272–277.
Skovlund C. W. et al. Association of hormonal contraception with depression. JAMA Psychiatry 2016; 73 (11): 1154–1162.
Wise J. Hormonal contraception use among teenagers linked to depression. BMJ 2016; 354: i5289.
Zethraeus N. et al. A first-choice combined oral contraceptive influences general well-being in healthy women: a double-blind, randomized, placebo-controlled trial. Fertil. Steril. 2017; 107 (5): 1238–1245.
Iversen L. et al. Lifetime cancer risk and combined oral contraceptives: the Royal College of General Practitioners’ Oral Contraception Study. Am. J. Obstet. Gynecol. 2017.
Zethraeus N. et al. A first-choice combined oral contraceptive influences general well-being in healthy women: a double-blind, randomized, placebo-controlled trial. Fertil. Steril. 2017; 107 (5): 1238–1245.
Pletzer B. A., Kerschbaum H. H. 50 years of hormonal contraception – time to find out, what it does to our brain. Front. Neurosci. 2014; 8: 256.
Angier N. Woman. An intimate geography. London: Virago, 2014.
Choudhury S., McKinney K. A., Merten M. Rebelling against the brain: public engagement with the “neurological adolescent”. Soc. Sci. Med. 2012; 74 (4): 565–573.
Walhovd K. B. et al. Through thick and thin: a Need to reconcile contradictory results on trajectories in human cortical development. Cereb. Cortex 2017; 27 (2): 1472–1481.
Giedd J. N. The amazing teen brain. Scientific American 2015 (June).
Peper J. S. et al. Sex steroids and brain structure in pubertal boys and girls: a mini-review of neuroimaging studies. Neuroscience 2011; 191: 28–37.
Ladouceur C. D. et al. White matter development in adolescence: the influence of puberty and implications for affective disorders. Dev. Cogn. Neurosci. 2012; 2 (1): 36–54.
Damour L. Untangled: Guiding teenage girls through the seven transitions into adulthood. New York: Penguin Random House, 2016.
Damour L. Untangled: Guiding teenage girls through the seven transitions into adulthood. New York: Penguin Random House, 2016.
Cooke K. Girl stuff. A full-on guide to the teen years. Australia: Penguin Random House, 2013.
Purdue University. Pain of ostracism can be deep, long-lasting. Science Daily 2011; 6 June 2011.
Sebastian C. L. et al. Developmental influences on the neural bases of responses to social rejection: implications of social neuroscience for education. Neuroimage 2011; 57 (3): 686–694.
Berns G. S. et al. Neural mechanisms of the influence of popularity on adolescent ratings of music. Neuroimage 2010; 49 (3): 2687–2696.
Eisenberger N. I. The pain of social disconnection: examining the shared neural underpinnings of physical and social pain. Nat. Rev. Neurosci. 2012; 13 (6): 421–434.
Dewall C. N. et al. Acetaminophen reduces social pain: behavioral and neural evidence. Psychol. Sci. 2010; 21 (7): 931–937.
Stephanou K. et al. Hard to look on the bright side: Neural correlates of impaired emotion regulation in depressed youth. Soc. Cogn. Affect. Neurosci. 2017.
Guyer A. E., Silk J. S., Nelson E. E. The neurobiology of the emotional adolescent: From the inside out. Neurosci. Biobehav. Rev. 2016; 70: 74–85.
Poulton R., Moffitt T. E., Silva P. A. The Dunedin Multidisciplinary Health and Development Study: overview of the first 40 years, with an eye to the future. Soc. Psychiatry Psychiatr. Epidemiol. 2015; 50 (5): 679–693.
Nelson J. A. The power of stereotyping and confirmation bias to overwhelm accurate assessment: the case of economics, gender, and risk aversion. Journal of Economic Methodology 2014; 21 (3): 211–231.
Fine C. Testosterone Rex: Unmaking the myths of our gendered minds. Sydney: Icon Boks, 2017.
Somerville L. H. Special issue on the teenage brain: Sensitivity to social evaluation. Curr. Dir. Psychol. Sci. 2013; 22 (2): 121–127.
Gardner M., Steinberg L. Peer influence on risk taking, risk preference, and risky decision making in adolescence and adulthood: an experimental study. Dev. Psychol. 2005; 41 (4): 625–635.
Blakemore S. J. Adolescent brain development, Costandi M., ed. The Wellcome Trust, 2014.
Giedd J. N. The amazing teen brain. Scientific American 2015 (June).
Blakemore S. J. Adolescent brain development, Costandi M., ed. The Wellcome Trust, 2014.
Lewinsohn P. M. et al. Separation anxiety disorder in childhood as a risk factor for future mental illness. J. Am. Acad. Child Adolesc. Psychiatry 2008; 47 (5): 548–555.
North B., Gross M., Smith S. Study confirms HSC exams source of major stress to adolescents. The Conversation, 2015.
Kuehner C. Why is depression more common among women than among men? Lancet Psychiatry 2016; 4 (2): 146–158.
Solomon A. Depression: the secret we share. TED Talk, 2013.
Beyondblue: the facts. 2017. URL: .
Craske M. G. et al. Anxiety disorders. Nat. Rev. Dis. Primers 2017; 3: 17024.
Beyondblue. Types of Anxiety: PTSD. 2017.
Schaefer J. D. et al. Enduring mental health: Prevalence and prediction. J. Abnorm. Psychol. 2017; 126 (2): 212–224.
Beyondblue. Youth beyondblue: stats and facts. 2017. URL: .
Schmaal L. et al. Subcortical brain alterations in major depressive disorder: findings from the ENIGMA Major Depressive Disorder working group. Mol. Psychiatry 2016; 21 (6): 806–812.
Anthes E. Depression: A change of mind. Nature 2014; 515 (7526): 185–187.
Solomon A. Depression: the secret we share. TED Talk, 2013.
Jorm A. F. et al. A guide to what works for depression. Beyondblue: Melbourne, 2013.
Gressier F., Calati R., Serretti A. 5-HTTLPR and gender differences in affective disorders: A systematic review. J. Affect. Disord. 2016; 190: 193–207.
Caspi A. et al. Moderation of the effect of adolescent-onset cannabis use on adult psychosis by a functional polymorphism in the catechol-O-methyltransferase gene: longitudinal evidence of a gene x environment interaction. Biol. Psychiatry 2005; 57 (10): 1117–1127.
Belsky J., Pluess M. Beyond diathesis stress: differential susceptibility to environmental influences. Psychol. Bull 2009; 135 (6): 885–908.
Caspi A. et al. Genetic sensitivity to the environment: the case of the serotonin transporter gene and its implications for studying complex diseases and traits. Am. J. Psychiatry 2010; 167 (5): 509–527.
Culverhouse R. C. et al. Collaborative meta-analysis finds no evidence of a strong interaction between stress and 5-HTTLPR genotype contributing to the development of depression. Mol. Psychiatry 2017.
Riecher-Rossler A. Sex and gender differences in mental disorders. Lancet Psychiatry 2017; 4 (1): 8–9.
Riecher-Rossler A. Sex and gender differences in mental disorders. Lancet Psychiatry 2017; 4 (1): 8–9.
Kulkarni J. Hormones actually a great protector of women’s health. The Conversation, 2011.
Li S. H., Graham B. M. Why are women so vulnerable to anxiety, trauma-related and stress-related disorders? The potential role of sex hormones. Lancet Psychiatry 2017; 4 (1): 73–82.
Beyondblue. Types of Anxiety: PTSD. 2017.
Merz C. J., Wolf O. T. Sex differences in stress effects on emotional learning. J. Neurosci. Res. 2017; 95 (1–2): 93–105.
Bryant R. A. et al. The association between menstrual cycle and traumatic memories. J. Affect. Disord. 2011; 131 (1–3): 398–401.
Ferree N. K., Wheeler M., Cahill L. The influence of emergency contraception on post-traumatic stress symptoms following sexual assault. J. Forensic. Nurs. 2012; 8 (3): 122–130.
Mordecai K. L. et al. Cortisol reactivity and emotional memory after psychosocial stress in oral contraceptive users. J. Neurosci. Res. 2017; 95 (1–2): 126–135.
Персонаж популярного телесериала «Сайнфилд», гротескный невротик и неудачник. – Прим. ред.
Kuehner C. Why is depression more common among women than among men? Lancet Psychiatry 2016; 4 (2): 146–158.
Merz C. J., Wolf O. T. Sex differences in stress effects on emotional learning. J. Neurosci. Res. 2017; 95 (1–2): 93–105.
Oldehinkel A. J., Bouma E. M. Sensitivity to the depressogenic effect of stress and HPA-axis reactivity in adolescence: a review of gender differences. Neurosci. Biobehav. 2011; 35 (8): 1757–1770.
Dantzer R., Kelley K. W. Twenty years of research on cytokine-induced sickness behavior. Brain Behav. Immun. 2007; 21 (2): 153–160.
Raison C. L. et al. A randomized controlled trial of the tumor necrosis factor antagonist infliximab for treatment-resistant depression: the role of baseline inflammatory biomarkers’. JAMA Psychiatry 2013; 70 (1): 31–41.
Pariante C. M. Why are depressed patients inflamed? A reflection on 20 years of research on depression, glucocorticoid resistance and inflammation. Eur. Neuropsychopharmacol. 2017; 27 (6): 554–559.
World Health Organization and London School of Hygiene and Tropical Medicine. Preventing intimate partner and sexual violence against women. Taking action and generating evidence. 2010.
Kuehner C. Why is depression more common among women than among men? Lancet Psychiatry 2016; 4 (2): 146–158.
Chen Y. Y. et al. Women’s status and depressive symptoms: a multilevel analysis. Soc. Sci. Med. 2005; 60 (1): 49–60.
Van de Velde S. et al. Macro-level gender equality and depression in men and women in Europe. Sociol. Health Illn. 2013; 35 (5): 682–698.
Suleiman A. B. et al. Becoming a sexual being: The “elephant in the room” of adolescent brain development. Dev. Cogn. Neurosci. 2017; 25: 209–220.
Wedekind C. et al. MHC-dependent mate preferences in humans. Proc. Biol. Sci. 1995; 260 (1359): 245–249.
Ober C. HLA and fertility. Am. J. Hum. Genet. 1995; 57 (5): 1242–1243.
Durante K. M. et al. Ovulation leads women to perceive sexy cads as good dads. J. Pers. Soc. Psychol. 2012; 103 (2): 292–305.
Brooks R. Round 2: Ovulatory cycles and shifting preferences. The Conversation, 2014.
Roney J. R., Simmons Z. L Hormonal predictors of sexual motivation in natural menstrual cycles. Horm. Behav. 2013; 63 (4): 636–645.
Dennerstein L. et al. Hormones, mood, sexuality, and the menopausal transition. Fertil. Steril. 2002; 77 (suppl. 4): 42–48.
Pastor Z., Holla K., Chmel R. The influence of combined oral contraceptives on female sexual desire: a systematic review. Eur. J. Contracept. Reprod. Health Care 2013; 18 (1): 27–43.
Meston C. M., Buss D. M. Why humans have sex. Arch. Sex. Behav. 2007; 36 (4): 477–507.
Whipple B., Brash-McGreer K. Management of female sexual dysfunction, in: Sexual function in people with disability and chronic illness: a health professional’s guide, Sipski M. L.and Alexander C. J., eds. Gaithersburg: Aspen, 1997.
What you need to know. Female Sexual Response. , A.o.R.H. Professionals, ed., 2008.
What you need to know. Female Sexual Response. , A.o.R.H. Professionals, ed., 2008.
Basson R. Female sexual response: the role of drugs in the management of sexual dysfunction. Obstet. Gynecol. 2001; 98 (2): 350–353.
Nagoski E. Come as you are: the surprising new science that will transform your sex life. New York: Simon & Schuster, 2015.
Нагоски Э. Как хочет женщина: мастер-класс по науке секса / пер. с англ. Н. Брагиной и В. Степановой. М.: Манн, Иванов и Фербер, 2016. – Прим. ред.
Georgiadis J. R., Kringelbach M. L., Pfaus J. G. Sex for fun: a synthesis of human and animal neurobiology. Nat. Rev. Urol. 2012; 9 (9): 486–498.
Goldstein I. et al. Hypoactive sexual desire disorder: international society for the Study of Women’s Sexual Health (ISSWSH) expert consensus panel review. Mayo Clin. Proc. 2017; 92 (1): 114–128.
Kingsberg S. A., Clayton A. H., Pfaus J. G. The female sexual response: Current models, neurobiological underpinnings and agents currently approved or under investigation for the treatment of hypoactive sexual desire disorder. CNS Drugs 2015; 29 (11): 915–933.
Goldstein I. et al. Hypoactive sexual desire disorder: international society for the Study of Women’s Sexual Health (ISSWSH) expert consensus panel review. Mayo Clin. Proc. 2017; 92 (1): 114–128.
По данным на апрель 2020 года, в России препарат не зарегистрирован. – Прим. ред.
Lucke J. Weekly Dose: flibanserin, the drug that gives women one extra sexually satisfying experience every two months. The Conversation, 2016.
Female Sex Drive, in: Catalyst, Newby D. J., ed. ABC, 2015.
Basson R. Testosterone therapy for reduced libido in women. Ther. Adv. Endocrinol. Metab. 2010; 1 (4): 155–164.
Dennerstein L. et al. Hormones, mood, sexuality, and the menopausal transition. Fertil. Steril. 2002; 77 (suppl. 4): 42–48.
University of Melbourne. Menopause dashes sex life. Melbourne: Eureka Alert. 2002.
Бергнер Д. Чего хотят женщины? Наука о природе женской сексуальности / пер. с англ. А. Степановой. М.: Эксмо, 2015. – Прим. ред.