Книга Вы и ваши гормоны. Наука о женском здоровье и гормональной контрацепции, страница 70. Автор книги Сара Хилл

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Cтраница 70

73. Roney, J. R., & Simmons, Z. L. (2017). Ovarian hormone fluctuations predict within-cycle shifts in women’s food intake. Hormones and Behavior, 90, 8–14. doi:10.1016/­j.yhbeh.­2017.­01.­009.

74. Asarian, L., & Geary, N. (2006). Modulation of appetite by gonadal steroid hormones. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences, 361(1471), 1251–1263. doi:10.1098/­rstb.­2006.­1860.

75. Berenson, A. B., & Rahman, M. (2009). Changes in weight, total fat, percent body fat, and central-to-peripheral fat ratio associated with injectable and oral contraceptive use. American Journal of Obstetrics and Gynecology, 200(3), 329.e1–329.e8. doi:10.1016/­j.ajog.­2008.­12.­052.

76. Rosenberg, M. (1998). Weight change with oral contraceptive use and during the menstrual cycle. Contraception, 58(6), 345–349. doi:10.1016/­s0010-7824­(98)­00127-9.

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77. Brown, J. L. (1997). A theory of mate choice based on heterozygosity. Behavioral Ecology, 8(1), 60–65. doi:10.1093/­beheco/­8.1.60; Garver-Apgar, C. E., Gangestad, S. W., Thornhill, R. et al. (2006). Major histocompatibility complex alleles, sexual responsivity, and unfaithfulness in romantic couples. Psychological Science, 17(10), 830–835.

78. Putz, D. A., Gaulin, S. J., Sporter, R. J., & McBurney, D. H. (2004). Sex hormones and finger length. Evolution and Human Behavior, 25(3), 182–199. doi:10.1016/­j.evolhumbehav.­2004.­03.­005; Jones, B., Little, A., Boothroyd, L. et al. (2005). Commitment to relationships and preferences for femininity and apparent health in faces are strongest on days of the menstrual cycle when progesterone level is high. Hormones and Behavior, 48(3), 283–290. doi:10.1016/­j.yhbeh.­2005.­03.­010; Feinberg, D.R., Jones, B. C., Law Smith, M. J. et al. (2006). Menstrual cycle, trait estrogen level, and masculinity preferences in the human voice. Hormones and Behavior, 49(2), 215–222. 10.1016/j.yhbeh.2005.07.004.

79. Little, A. C., Burriss, R. P., Petrie, M. et al. (2013). Oral contraceptive use in women changes preferences for male facial masculinity and is associated with partner facial masculinity. Psychoneuroendocrinology, 38(9), 1777–1785. doi:10.1016/­j.psyneuen.­2013.­02.­014.

80. Roberts, S. C., Klapilova, K., Little, A. C. et al. (2011). Relationship satisfaction and outcome in women who meet their partner while using oral contraception. Proceedings of the Royal Society B: Biological Sciences, 279(1732), 1430–1436. doi:10.1098/­rspb.­2011.­1647.

81. Montoya, E. R., & Bos, P. A. (2017). How oral contraceptives impact social-emotional behavior and brain function. Trends in Cognitive Sciences, 21(2), 125–136. doi:10.1016/­j.tics.­2016.­11.­005.

82. Bonenberger, M., Groschwitz, R. C., Kumpfmueller, D. et al. (2013). It’s all about money. NeuroReport, 24(17), 951–955. doi:10.1097/­wnr.­000­000­000­000­00­24.

83. Russell, V. M., McNulty, J. K., Baker, L. R., & Meltzer, A. L. (2014). The association between discontinuing hormonal contraceptives and wives’ marital satisfaction depends on husbands’ facial attractiveness. Proceedings of the National Academy of Sciences, 111(48), 17081–17086. doi:10.1073/­pnas.­141­478­41­11.

84. Jones, B. C., Hahn, A. C., Fisher, C. I. et al. (2018). No compelling evidence that preferences for facial masculinity track changes in women’s hormonal status. Psychological Science, 29(6), 996–1005. doi:10.1101/­136­549; Jern, P., Kärnä, A., Hujanen, J. et al. (2018). A high-powered replication study finds no effect of starting or stopping hormonal contraceptive use on relationship quality. Evolution and Human Behavior, 39(4), 373–379. doi:10.1016/­j.evolhumbehav.­2018.­02.­008.

85. Caruso, S. (2001). A prospective study evidencing rhinomanometric and olfactometric outcomes in women taking oral contraceptives. Human Reproduction, 16(11), 2288–2294. doi:10.1093/humrep/16.11.2288; Caruso, S., Maiolino, L., Rugolo, S. et al. (2003). Auditory brainstem response in premenopausal women taking oral contraceptives. Human Reproduction, 18(1), 85–89. doi:10.1093/­humrep/­deg­003; Snihur, A., & Hampson, E. (2012). Oral contraceptive use in women is associated with defeminization of otoacoustic emission patterns. Neuroscience, 210, 258–265. doi:10.1016/­j.neuro­science.­2012.­02.­006.

86. Renfro, K. J., & Hoffmann, H. (2013). The relationship between oral contraceptive use and sensitivity to olfactory stimuli. Hormones and Behavior, 63(3), 491–496. doi:10.1016/­j.yhbeh.­2013.­01.­001.

87. Birnbaum, S., Ein-Dor, T., & Birnbaum, G. E. (2016). Can contraceptive pill affect future offspring’s health? The implications of using hormonal birth control for human evolution. Evolutionary Psychological Science, 3(2), 89–96. doi:10.1007/­s40806-016-0074-4.

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88. Wallwiener, C. W., Wallwiener, L-M., Seeger, H. et al. (2010). Prevalence of sexual dysfunction and impact of contraception in female German medical students. Journal of Sexual Medicine, 7(6), 2139–2148. doi:10.1111/­j.1743-6109.­2010.­01742.x; Wallwiener, C. W., Wallwiener, L-M., Seeger, H. et al. (2015). Are hormonal components of oral contraceptives associated with impaired female sexual function? A questionnaire-based online survey of medical students in Germany, Austria, and Switzerland. Archives of Gynecology and Obstetrics, 292(4), 883–890. doi:10.1007/­s004­04-015-3726-x.

89. Caruso, S., Agnello, C., Intelisano, G. et al. (2004). Sexual behavior of women taking low-dose oral contraceptive containing 15μg ethinylestradiol/60μg gestodene. Contraception, 69(3), 237–240. doi:10.1016/­j.contraception.­2003.­11.­001.

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