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72. Ronnekleiv OK, Kelly MJ (1988) Plasma prolactin and luteinizing hormone profi les during
the estrous cycle of the female rat: effects of surgically induced persistent estrus.
Neuroendocrinology 47(2):133-141
73. Gu GB, Simerly RB (1997) Projections of the sexually dimorphic anteroventral periventricu-
lar nucleus in the female rat. J Comp Neurol 384(1):142-164
74. Le WW, Berghorn KA, Rassnick S, Hoffman GE (1999) Periventricular preoptic area neu-
rons coactivated with luteinizing hormone (LH)-releasing hormone (LHRH) neurons at the
time of the LH surge are LHRH afferents. Endocrinology 140(1):510-519
75. Watson RE Jr, Langub MC Jr, Engle MG, Maley BE (1995) Estrogen-receptive neurons in the
anteroventral periventricular nucleus are synaptic targets of the suprachiasmatic nucleus and
peri-suprachiasmatic region. Brain Res 689(2):254-264
76. de la Iglesia HO, Blaustein JD, Bittman EL (1995) The suprachiasmatic area in the female
hamster projects to neurons containing estrogen receptors and GnRH. Neuroreport
6(13):1715-1722
77. Shughrue PJ, Lane MV, Merchenthaler I (1997) Comparative distribution of estrogen
receptor-alpha and -beta mRNA in the rat central nervous system. J Comp Neurol
388(4):507-525
78. Leak RK, Moore RY (2001) Topographic organization of suprachiasmatic nucleus projection
neurons. J Comp Neurol 433(3):312-334
79. Hoorneman EM, Buijs RM (1982) Vasopressin fi ber pathways in the rat brain following
suprachiasmatic nucleus lesioning. Brain Res 243(2):235-241
80. Leak RK, Moore RY (2001) Topographic organization of suprachiasmatic nucleus projection
neurons. J Comp Neurol 433(3):312-334
81. Palm IF, Van Der Beek EM, Wiegant VM, Buijs RM, Kalsbeek A (1999) Vasopressin induces
a luteinizing hormone surge in ovariectomized, estradiol-treated rats with lesions of the
suprachiasmatic nucleus. Neuroscience 93(2):659-666
82. Ostrowski NL, Lolait SJ, Young WS III (1994) Cellular localization of vasopressin V1a
receptor messenger ribonucleic acid in adult male rat brain, pineal, and brain vasculature.
Endocrinology 135(4):1511-1528
83. Funabashi T, Shinohara K, Mitsushima D, Kimura F (2000) Estrogen increases arginine-
vasopressin V1a receptor mRNA in the preoptic area of young but not of middle-aged female
rats. Neurosci Lett 285(3):205-208
84. Petersen SL, Barraclough CA (1989) Suppression of spontaneous LH surges in estrogen-
treated ovariectomized rats by microimplants of antiestrogens into the preoptic brain. Brain
Res 484(1-2):279-289
85. Grace CO, Fink G, Quinn JP (1999) Characterization of potential regulatory elements within
the rat arginine vasopressin proximal promoter. Neuropeptides 33(1):81-90
86. Munoz E, Brewer M, Baler R (2002) Circadian transcription. Thinking outside the E-box.
J Biol Chem 277(39):36009-36017
87. Jin X, Shearman LP, Weaver DR, Zylka MJ, de Vries GJ, Reppert SM (1999) A molecular
mechanism regulating rhythmic output from the suprachiasmatic circadian clock. Cell
96(1):57-68
88. Shinohara K, Honma S, Katsuno Y, Abe H, Honma K (1994) Circadian rhythms in the release
of vasoactive intestinal polypeptide and arginine-vasopressin in organotypic slice culture of
rat suprachiasmatic nucleus. Neurosci Lett 170(1):183-186
89. Schwartz WJ, Coleman RJ, Reppert SM (1983) A daily vasopressin rhythm in rat cerebrospi-
nal fl uid. Brain Res 263(1):105-112
90. Kalsbeek A, Buijs RM, Engelmann M, Wotjak CT, Landgraf R (1995) In vivo measurement
of a diurnal variation in vasopressin release in the rat suprachiasmatic nucleus. Brain Res
682(1-2):75-82
91. Funabashi T, Shinohara K, Mitsushima D, Kimura F (2000) Gonadotropin-releasing hor-
mone exhibits circadian rhythm in phase with arginine-vasopressin in co-cultures of the
female rat preoptic area and suprachiasmatic nucleus. J Neuroendocrinol 12(6):521-528
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