Adler, N.T. (1969). Effects of the male’s copulatory behavior on successful pregnancy of the female rat. Journal of Comparative and Physiological Psychology, 69, 613-622. Adler, N. T., & Toner, J. P. (1986). The effects of copulatory behavior on sperm transport and fertility in rats. Annals of the New York Academy of Sciences, 474, 21–32. Adler, N. T., Davis, P. G., & Komisaruk, B. R. (1977). Variation in the size and sensitivity of a genital sensory field in relation to the estrous cycle in rats. Hormones and Behavior, 9(3), 334–344. Adler, N.T., Resko, J.A., Goy, R.W. (1970). The effect of copulatory behavior on hormonal change in the female rat prior to implantation. Physiology and Behavior, 5, 1003-1007. Afonso, V., & Pfaus, J. (2006). Hormonal and experiential control of female-male mounting in the female rat. Hormones and behavior, 49, 30-7. Agmo, A., Berenfeld, R. (1990). Reinforcing properties of ejaculation in the male rat: role of opioids and dopamine. Behavioral neuroscience, 104, 177-182. Agmo, A., Gomez, M., Irazabal, Y. (1994). Enkephalinase inhibition facilitates sexual behavior in the male rat but does not produce conditioned place preference. Pharmacology biochemistry and behavior, 47, 771-778. Andréen, L., Nyberg, S., Turkmen, S., van Wingen, G., Fernández, G., & Bäckström, T. (2009). Sex steroid induced negative mood may be explained by the paradoxical effect mediated by GABAA modulators. Psychoneuroendocrinology, 34(8), 1121–1132. Auger, A.P., Blaustein, J.D. (1995). Progesterone enhances an estradiol-induced increase in Fos immunoreactivity in localized regions of female rat forebrain. Journal of Neuroscience, 15, 2272-2279. Avis, N. E., Brockwell, S., Randolph, J. F., Shen, S., Cain, V. S., Ory, M., & Greendale, G. A. (2009). Longitudinal changes in sexual functioning as women transition through menopause: results from the Study of Women's Health Across the Nation. Menopause (New York, N.Y.), 16(3), 442–452. Bancroft, J., Sanders, D., Davidson, D., & Warner, P. (1983). Mood, sexuality, hormones, and the menstrual cycle. III. Sexuality and the role of androgens. Psychosomatic Medicine, 45(6), 509–516. Barnett, S.A. (1963). The Rat. Aldine Publishing, Chicago, IL. Baum, M. J., Södersten, P., & Vreeburg, J. T. (1974). Mounting and receptive behavior in the ovariectomized female rat: influence of estradiol, dihydrotestosterone, and genital anesthetization. Hormones and Behavior, 5(2), 175–190. Baumgardner, D.J., Dewsbury, D.A. (1980). Pseudopregnancy in female rats: effects of hormonal manipulations of the male. Physiology and Behavior, 24, 693- 697. Beach, F.A. (1948). Hormones and Behavior, Hoeber-Harper, New York. Beach, F. A. (1976). Sexual attractivity, proceptivity, and receptivity in female mammals. Hormones and Behavior, 7(1), 105–138. Beach, F.A. and Holtz, A. M. (1946). Mating behavior in male rats castrated at various ages and injected with androgen. Journal of experimental zoology, 101, 91-142. Berkley, K. J., Robbins, A., & Sato, Y. (1993). Functional differences between afferent fibers in the hypogastric and pelvic nerves innervating female reproductive organs in the rat. Journal of Neurophysiology, 69(2), 533–544. Bermant, G. (1961). Response latencies of female rats during sexual intercourse. Science, 133, 1771-1773. Bermant, G., & Westbrook, W. (1966). Peripheral factors in the regulation of sexual contact by female rats. Journal of comparative and physiological psychology, 61, 244-50. Bitzer, J., Brandenburg, U. (2009). Psychotherapeutic interventions for female sexual dysfunction. Maturitas. 20, 160-163. Blake, C.A., Sawyer, C.H. (1972). Effects of vaginal stimulation on hypothalamic multiple-unit activity and pituitary LH release in the rat. Neuroendocrinology, 10, 358-370. Brandling-Bennett, E.M., Blasberg, E.M., Clark, A.S. (1999). Paced mating behavior in female rats in response to different hormone priming regimens. Hormones and Behavior, 35, 144-154. Brody, S., Costa, R. M. (2009). Satisfaction (sexual, life, relationship, and mental health) is associated directly with penile-vaginal intercourse, but inversely with other sexual behavior frequencies. Journal of Sexual Medicine, 6(7), 1947– 1954. Cabilio, S. Behavioral Observation Program. 1996. [unpublished computer software]. Concordia University. Cain, V. S., Johannes, C. B., Avis, N. E., Mohr, B., Schocken, M., Skurnick, J., & Ory, M. (2003). Sexual functioning and practices in a multi-ethnic study of midlife women: baseline results from SWAN. Journal of Sex Research, 40(3), 266–276. Calhoun, J.B. (1972). Disruption of behavioral states as a cause of aggression. Nebraska Symposium on Motivation, 20, 183-260. Carlson, R. R., De Feo, V. J. (1965). Role of the pelvic nerve vs. the abdominal sympathetic nerves in the reproductive function of the female rat. Endocrinology, 77(6), 1014–1022. Chester, R.V., Zucker, I. (1970). Influence of male copulatory behavior on sperm transport, pregnancy, and pseudopregnancy in female rats. Physiology and Behavior, 5, 35-43. Chinapen, S., Swann, J. M., Steinman, J. L., & Komisaruk, B. R. (1992). Expression of c-fos protein in lumbosacral spinal cord in response to vaginocervical stimulation in rats. Neuroscience Letters, 145(1), 93–96. Cibrian-Llanderal, T., Tecamachaltzi-Silvaran, M., Triana-Del Rio, R., Pfaus, J., Manzo, J., & Coria-Avila, G. (2010). Clitoral stimulation modulates appetitive sexual behavior and facilitates reproduction in rats. Physiology & behavior, 100, 148-53. Cooper, M. D., Newman, S. K., Schermerhorn, E. C., & Foote, R. H. (1985). Uterine contractions and fertility following clitoral massage of dairy cattle in estrus. Journal of Dairy Science, 68(3), 703–708. Coopersmith, C., & Erskine, M. (1994). Influence of paced mating and number of intromissions on fertility in the laboratory rat. Journal of reproduction and fertility, 102, 451-8. Coopersmith, C., Candurra, C., Erskine, M.S. (1996). Effects of paced mating and intromissive stimulation on feminine sexual behavior and estrus termination in the cycling rat. Journal of Comparative Psychology, 110, 176-186. Coopersmith, C., Erskine, M.S. (1994). Influence of paced mating and number of intromissions on fertility in the laboratory rat. Journal of Reproduction and Fertility. 102, 451-458. Coopersmith, C., Gans, S.E., Rowe, D.W., Erskine, M.S. (1996). Infusions of lidocaine into the amygdala, but not the preoptic area, block pseudopregnancy in the rat. Journal of Neuroendocrinology, 8, 259-266. Coria-Avila, G. A., Gavrila, A. M., Charron, N., Stanley, G., Pfaus, J.G. (2008). Neurochemical basis of conditioned partner preference in the female rat: II. disruption by flupenthixol. Behavioural Neuroscience, 122, 396-406. Coria-Avila, G., Gavrila, A., Boulard, B., Charron, N., Stanley, G., & Pfaus, J. (2008). Neurochemical basis of conditioned partner preference in the female rat: II. Disruption by flupenthixol. Behavioral neuroscience, 122, 396-406. Coria-Avila, G. A., Jones, S. L., Solomon, C. E., Gavrila, A. M., Jordan, G. J., & Pfaus, J. G. (2006). Conditioned partner preference in female rats for strain of male. Physiology & Behavior, 88(4-5), 529–537. Coria-Avila, G. A., Ouimet, A. J., Pacheco, P., Manzo, J., & Pfaus, J. G. (2005). Olfactory conditioned partner preference in the female rat. Behavioral Neuroscience, 119(3), 716–725. doi:10.1037/0735-7044.119.3.716 Coria-Avila, G. A., Solomon, C.E., Vargas, E. B., Lemme, I., Ryan, R., Ménard, S., Gavrila, A. M., Pfaus, J.G. (2008). Neurochemical basis of conditioned partner preference in the female rat: I. Disruption by naloxone. Behavioural Neuroscience, 122, 385-395. Coria-Avila, G., & Pfaus, J.G. (2007). Neuronal activation by stimuli that predict sexual reward in female rats. Neuroscience, 148, 623-32. Coria-Avila, G.A., Gavrila, A.M., Jacubovich, M., Menard, S., Pfaus, J.G. (2005). Olfactory conditioned partner preference in the female rat. Behavioral Neuroscience, 119, 716-725. Corona, R., Camacho, F. J., García Horsman, P., Guerrero, A., Ogando, A., & Paredes, R. G. (2011). Different doses of estradiol benzoate induce conditioned place preference after paced mating. Hormones and Behavior, 1– 5. Cruz, Y., Zempoalteca, R., Angelica Lucio, R., Pacheco, P., Hudson, R., Martinez- Gomez, M. (2004). Pattern of sensory innervation of the perineal skin in the female rat. Brain Research, 1024, 97-103. Diakow, C. (1975). Motion picture analysis of rat mating behavior. Journal of Comparative and Physiological Psychology, 88, 704-712. Diamond, M. (1970). Intromission pattern and species vaginal code in relation to induction of psueudopregnancy. Science, 169, 995-997. Domínguez-Salazar, E., Camacho, F.J., Paredes, R.G. (2005). Prenatal blockade of androgen receptors reduces the number of intromissions needed to induce conditioned place preference after paced mating in female rats. Pharmacology Biochemistry and Behavior, 81, 871-878. Dudley, C., Rajendren, G., & Moss, R. (1992). Induction of FOS immunoreactivity in central accessory olfactory structures of the female rat following exposure to conspecific males. Molecular and Cellular Neurosciences, 3, 360-9. Edinger, K.L., Frye, C.A. (2007). Sexual experience of male rats influences anxiety- like behavior and androgen levels. Edmonds, S., Zoloth, S. R., & Adler, N. T. (1972). Storage of copulatory stimulation in the female rat. Physiology & Behavior. Eliasson, M., & Meyerson, B. (1975). Sexual preference in female rats during estrous cycle, pregnancy and lactation. Physiology & Behavior, 14, 705-10. Engin, E., & Treit, D. (2007). The anxiolytic-like effects of allopregnanolone vary as a function of intracerebral microinfusion site: the amygdala, medial prefrontal cortex, or hippocampus. Behavioural Pharmacology, 18(5-6), 461–470. Erskine, M.S. (1985). Effects of paced coital stimulation on estrus duration in intact cycling rats and ovariectomized and ovariectomized-adrenalectomized hormone-primed rats. Behavioral Neuroscience, 99, 151-161. Erskine, M. S. (1989). Solicitation behavior in the estrous female rat: a review. Hormones and Behavior, 23(4), 473–502. Erskine, M. (1993). Mating-induced increases in FOS protein in preoptic area and medial amygdala of cycling female rats. Brain Research Bulletin, 32, 447-51. Erskine, M. S. (2005). Learning about sex: conditioning of partner preference: theoretical comment on Coria-Avila et Al. (2005). Behavioral Neuroscience, 119(4), 1136–1139. Erskine, M., Lehmann, M., Cameron, N., & Polston, E. (2004). Co-regulation of female sexual behavior and pregnancy induction: an exploratory synthesis. Behavioural Brain Research, 153, 295-315. Erskine, M.S., Baum, M.J. (1982). Effects of paced coital stimulation on termination of estrus and brain indoleamine levels in female rats. Pharmacology Biochemistry and Behavior, 17, 857-861. Erskine, M.S., Hanrahan, S.B. (1997). Effects of paced mating on c-fos gene expression in the female rat brain. Journal of Neuroendocrinology, 9, 903-912. Erskine, M.S., Kornberg, E., Cherry, J.A. (1989). Paced copulation in rats: Effects of intromission frequency and duration on luteal activation and estrus length. Physiology and Behavior, 45, 33-39. Erskine, M.S., Lehmann, M.L., Cameron, N.M., Polston, E.K. (2004). Co-regulation of female sexual behavior and pregnancy induction: an exploratory synthesis. Behavioural Brain Research, 153, 295-315. Everitt, B.J. (1990). Sexual motivation: A neural and behavioural analysis of the mechanisms underlying appetitive and copulatory responses of male rats. Neuroscience and biobehavioral reviews, 14, 217-232. Fernández-Guasti, A., Vega-Matuszczyk, J., Larsson, K. (1991). Synergistic action of estradiol, progesterone and testosterone on rat proceptive behavior. Physiology and Behavior, 50, 1007-1011. Foldes, P., Buisson, O. (2009). The clitoral complex: A dynamic sonographic study. Journal of Sexual Medicine, 6, 1223-1231. Freeman, M. E. (1979). A direct effect of the uterus on the surges of prolactin induced by cervical stimulation in the rat. Endocrinology, 105(2), 387–390. Freeman, M. E. (1988). The nonpregnant uterus as an endocrine organ. Freud, S. (1962). Three essays on the theory of sexuality, trans. James Strachey. New York: Basic Books. Frye, C. A., & Erskine, M. S. (1990). Influence of time of mating and paced copulation on induction of pseudopregnancy in cyclic female rats. Journal of Reproduction and Fertility, 90(2), 375–385. García Horsman, P., & Paredes, R. (2004). Dopamine antagonists do not block conditioned place preference induced by paced mating behavior in female rats. Behavioral neuroscience, 118, 356-64. Garcia Horsman, P., Agmo, A., Paredes, R.G. (2008). Infusions of naloxone into the medial preoptic area, ventromedial nucleus of the hypothalamus, and amygdala block conditioned place preference induced by paced mating behavior. Hormones and Behavior, 54, 709-716. García-Horsman, P., Paredes, R.G. (2004). Dopamine antagonists do not block conditioned place preference induced by paced mating behavior in female rats. Behavioural Neuroscience, 118, 356-364. García-Horsman, S., Agmo, A., & Paredes, R. (2008). Infusions of naloxone into the medial preoptic area, ventromedial nucleus of the hypothalamus, and amygdala block conditioned place preference induced by paced mating behavior. Hormones and Behavior, 54, 709-716. Georgescu, M., Cyr, D., Pfaus, J.G. (2012). AMPA/kainite receptors in the ventromedial hypothalamus mediate the effects of glutamate on estrus termination in the rat. Pharmacology Biochemistry and Behavior, 102, 146- 150. Georgescu, M., Pfaus, J.G. (2006). Role of glutamate receptors in the ventromedial hypothalamus in the regulation of female rat sexual behaviors I. Behavioral effects of glutamate and its selective receptor agonists AMPA, NMDA and kainite. Pharmacology Biochemistry and Behavior, 83, 322-33. Georgescu, M., Pfaus, J.G. (2006). Role of glutamate receptors in the ventromedial hypothalamus in the regulation of female rat sexual behaviors. II. Behavioral effects of selective glutamate receptor antagonists AP-5, CNQX, and DNQX. Pharmacology Biochemistry and Behavior, 83, 333-341. Georgescu, M., Sabongui, C., Del Corpo, A., Marsan, L., Pfaus, J.G. (2009). Vaginocervical stimulation induces Fos in glutamate neurons in the ventromedial hypothalamus: attenuation by estrogen and progesterone. Hormones and Behavior, 56, 450-456. Gilman, D.P., Mercer, L.F., Hitt, J.C. (1979). Influence of female copulatory behavior on the induction of pseudopregnancy in the female rat. Physiology and Behavior, 22, 675-678. Girladi, A., Marson, L., Nappi, R., Pfaus, J., Traish, A.M., Vardi, Y., Goldstein, I. (2004). Physiology of female sexual function: animal models. Journal of Sexual Medicine, 1(3), 237-253. Giuliano, F., Allard, J., Compagnie, S., Alexandre, L., Droupy, S., Bernabe, J. (2001). Vaginal physiological changes in a model of sexual arousal in anesthetized rats. The American Journal of Physiology. Regulatory, Integrative, and Comparative Physiology, 281, 140-14B9. Giuliano, F., Allard, J., Compagnie, S., Alexandre, L., Droupy, S., Bernabe, J. (2001). Vaginal physiological changes in a model of sexual arousal in anesthetized rats. American Journal of Physiology Regulatory Integrative and Comparative Physiology, 281, 140-149. Giuliano, F., Rampin, O., Allard, J. (2002). Neurophysiology and pharmacology of Female genital sexual response. Journal of Sex & Marital Therapy, 28, 101- 121. Gourley, S. L., Kedves, A. T., Olausson, P., & Taylor, J. R. (2009). A history of corticosterone exposure regulates fear extinction and cortical NR2B, GluR2/3, and BDNF. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology, 34(3), 707–716. Graham, J., & Desjardins, C. (1980). Classical conditioning: Induction of luteinizing hormone and testosterone secretion in anticipation of sexual activity. Science, 210, 1039-41. Graham, M.D., Pfaus, J.G. (2010). Differential regulation of female sexual behaviour by dopam