Книга Вы и ваши гормоны. Наука о женском здоровье и гормональной контрацепции, страница 78. Автор книги Сара Хилл

Разделитель для чтения книг в онлайн библиотеке

Онлайн книга «Вы и ваши гормоны. Наука о женском здоровье и гормональной контрацепции»

Cтраница 78

187. Morrell, M. J. (1999). Epilepsy in women: The science of why it is special. Neurology, 53(4), S42–S48; Majewska, M. D. (1987). Steroids and brain activity: Essential dialogue between body and mind. Biochemical Pharmacology, 36, 3781–3788.

188. Follesa, P., Porcu, P., Sogliano, C. et al. (2002). Changes in GABAA receptor γ2 subunit gene expression induced by long-term administration of oral contraceptives in rats. Neuropharmacology, 42(3), 325–336. doi:10.1016/s0028-3908(01)00187-3; Rapkin, A. J., Biggio, G., & Concas, A. (2006). Oral contraceptives and neuroactive steroids. Pharmacology Biochemistry and Behavior, 84(4), 628–634. doi:10.1016/­j.pbb.­2006.­06.­008.

189. Follesa, P., Porcu, P., Sogliano, C. et al. (2002). Changes in GABAA receptor γ2 subunit gene expression induced by long-term administration of oral contraceptives in rats. Neuropharmacology, 42(3), 325–336. doi:10.1016/­s0028-3908­(01)­001­87-3.

190. Paoletti, A. M., Lello, S., Fratta, S. et al. (2004). Psychological effect of the oral contraceptive formulation containing 3 mg of drospirenone plus 30 μg of ethinyl estradiol. Fertility and Sterility, 81(3), 645–651. doi:10.1016/­j.fertnstert.­2003.­08.­030; Rapkin, A. J., Biggio, G., & Concas, A. (2006). Oral contraceptives and neuroactive steroids. Pharmacology Biochemistry and Behavior, 84(4), 628–634. doi:10.1016/­j.pbb.­2006.­06.­00.

191. Follesa, P., Porcu, P., Sogliano, C. et al. (2002). Changes in GABAA receptor γ2 subunit gene expression induced by long-term administration of oral contraceptives in rats. Neuropharmacology, 42(3), 325–336. doi:10.1016/­s0028-3908­(01)­00187-3.

192. Hasler, G., Veen, J. W., Geraci, M.et al. (2009). Prefrontal cortical gamma-aminobutyric acid levels in panic disorder determined by proton magnetic resonance spectroscopy. Biological Psychiatry, 65(3), 273–275. doi:10.1016/­j.biopsych.­2008.­06.­023.

193. Brambilla, P., Perez, J., Barale, F. et al. (2003). GABAergic dysfunction in mood disorders. Molecular Psychiatry, 8(8), 715–715. doi:10.1038/­sj.­mp.­4001­395.

194. Petty, F., & Sherman, A. (1984). Plasma GABA levels in psychiatric illness. Journal of Affective Disorders, 6(2), 131–138. doi:10.1016/­0165-0327(84)90018-1; Petty, F., Kramer, G. L., Dunnam, D., & Rush, A. J. (1990). Plasma GABA in mood disorders. Psychopharmacology Bulletin, 26(2), 157–161; Petty, F., Kramer, G. L., Fulton, M. et al. (1993). Low plasma GABA is a trait-like marker for bipolar illness. Neuropsychopharmacology, 9(2), 125–132. doi:10.1038/­npp.­1993.­51.

195. Halbreich, U., Petty, F., Yonkers, K. et al. (1996). Low plasma gamma-aminobutyric acid levels during the late luteal phase of women with premenstrual dysphoric disorder. American Journal of Psychiatry, 153(5), 718–720. doi:10.1176/­ajp.­153.­5.718.

196. Petty, F., Fulton, M., Moeller, F. G., Kramer, G. et al. (1993). Plasma gamma-aminobutyric acid (GABA) is low in alcoholics. Psychopharmacology Bulletin, 29, 277–281.

197. Grant, B. F., Chou, S. P., Saha, T. D. et al. (2017). Prevalence of 12-month alcohol use, high-risk drinking, and DSM-IV Alcohol use disorder in the United States, 2001-2002 to 2012-2013: Results from the National Epidemiologic Survey on Alcohol and Related Conditions. JAMA Psychiatry, 74(9): 911–923. doi:10.1001/­jama­psychiatry.­2017.­2161.

198. Becker, J. B., Robinson, T. E., & Lorenz, K. A. (1982). Sex difference and estrous cycle variations in amphetamine-elicited rotational behavior. European Journal of Pharmacology, 80(1), 65–72. doi:10.1016/­0014-2999(82)90178-9; Castner, S. A., Xiao, L., & Becker, J. B. (1993). Sex differences in striatal dopamine: In vivo microdialysis and behavioral studies. Brain Research, 610(1), 127–134. doi:10.1016/­0006-8993(93)91225-h; Hu, M., & Becker, J. B. (2003). Effects of sex and estrogen on behavioral sensitization to cocaine in rats. Journal of Neuroscience, 23(2), 693–699. doi:10.1523/­jneurosci.­23-02-00693.­2003; Lynch, W. J., Roth, M. E., Mickelberg, J. L., & Carroll, M. E. (2001). Role of estrogen in the acquisition of intravenously self-administered cocaine in female rats. Pharmacology Biochemistry and Behavior, 68(4), 641–646. doi:10.1016/s0091-3057(01)00455-5; Hu, M., Crombag, H. S., Robinson, T. E., & Becker, J. B. (2003). Biological basis of sex differences in the propensity to self-administer cocaine. Neuropsychopharmacology, 29(1), 81–85. doi:10.1038/­sj.­npp.­130­0301.

199. Evans, S. M., & Foltin, R. W. (2006). Exogenous progesterone attenuates the sub­jective effects of smoked cocaine in women, but not in men. Neuropsychopharmacology, 31(3), 659–674. doi:10.1038/­sj.­npp.­130­08­87.

200. Skovlund, C. W., Mørch, L. S., Kessing, L. V., & Lidegaard, Ø. (2016). Association of hormonal contraception with depression. JAMA Psychiatry, 73(11), 1154–1162. doi:10.1001/­jama­psychiatry.­2016.­2387.

201. Pizzagalli, D. A. (2014). Depression, stress, and anhedonia: Toward a synthesis and integrated model. Annual Review of Clinical Psychology, 10, 393–423. http://doi.org/­10.­1146/­annurev-clinpsy-050212-185606.

202. Jarva, J. A., & Oinonen, K. A. (2007). Do oral contraceptives act as mood stabilizers? Evidence of positive affect stabilization. Archives of Women’s Mental Health, 10(5), 225–234. doi:10.1007/­s00737-007-0197-5.

203. Scheele, D., Plota, J., Stoffel-Wagner, B. et al. (2016). Hormonal contraceptives suppress oxytocin-induced brain reward responses to the partner’s face. Social Cognitive and Affective Neuroscience, 11(5), 767–774. doi:10.1093/­scan/­nsv157.

Вход
Поиск по сайту
Ищем:
Календарь
Навигация