Blume HW, Pittman QJ, Lafontaine S, Renaud LP (1982) Lateral septum — medial hypothalamic connections: an electrophysiological study in the rat. Neuroscience 7:2783–2792
Google Scholar
Caldwell JD, Jirikowski GF, Greer ER, Pedersen CA (1989) Medial preoptic area oxytocin and female sexual receptivity. Behav Neurosci 103:655–662
Google Scholar
Cedarbaum JM, Aghajanian GK (1978) Afferent projections to the rat locus coeruleus as determined by a retrograde tracing technique. J Comp Neurol 178:1–16
Google Scholar
Cirino M, Renaud LP (1985) Influence of the lateral septum and amygdala stimulation on the excitability of the hypothalamic supraoptic neurons. An electrophysiological study in the rat. Brain Res 326:357–361
Google Scholar
Conrad LCA, Pfaff DW (1976) Efferents from medial basal forebrain and hypothalamus in the rat. II. An autoradiographic study of the anterior hypothalamus. J Comp Neurol 169:221–262
Google Scholar
Cunningham ET Jr, Sawchenko PE (1988) Anatomical specificity of noradrenergic inputs to the paraventricular and supraoptic nuclei of the rat hypothalamus. J Comp Neurol 274:60–76
Google Scholar
Diepen R (1962) Der Hypothalamus. In: Bargmann W (ed) Handbuch der mikroskopischen Anatomie des Menschen, Bd IV7. Springer, Göttingen Heidelberg Berlin
Google Scholar
Drago F, Pedersen CA, Caldwell JD, Prange AJ Jr (1986) Oxytocin enhances novelty-induced grooming behavior in the rat. Brain Res 368:287–295
Google Scholar
Dubois-Dauphin M, Tribollet E, Dreifuss JJ (1989a) Distribution of neurohypophysial peptides in the guinea pig brain. I. An immunocytochemical study of the vasopressin-related glycopeptide. Brain Res 496:45–65
Google Scholar
Dubois-Dauphin M, Tribollet E, Dreifuss JJ (1989a) Distribution of neurohypophysial peptides in the guinea pig brain. II. An immunocytochemical study of oxytocin. Brain Res 496:66–81
Google Scholar
Fahrbach SE, Morrell JI, Pfaff DW (1989) Studies of ventromedial hypothalamic afferents in the rat using three methods of HRP application. Exp Brain Res 77:221–233
Google Scholar
Ferris CF, Gold L, DeVries GJ, Potegal M (1990) Evidence for a functional and anatomical relationship between the lateral septum and the hypothalamus in the control of flank marking behavior in golden hamsters. J Comp Neurol 293:476–485
Google Scholar
Freund-Mercier M-J, Moos F, Poulain DA, Richard P, Rodriguez F, Theodosis DT, Vincent J-D (1988) Role of central oxytocin in the control of the milk ejection reflex. Brain Res Bull 20:737–741
Google Scholar
Gaines WL (1915) A contribution to the physiology of lactation. Am J Physiol 38:285–312
Google Scholar
Garris DR (1979) Direct septo-hypothalamic projections in the rat. Neurosci Lett 13:82–90
Google Scholar
Gray TS, Carney ME, Magnuson DJ (1989) Direct projections from the central amygdaloid nucleus to the hypothalamic paraventricular nucleus: possible role in stress-induced adrenocorticotropin release. Neuroendocrinology 50:433–446
Google Scholar
Groenewegen HJ, Wouterlood FG (1990) Light and electron microscopic tracing of neuronal connections with Phaseolus vulgaris-leucoagglutinin (PHA-L), and combinations with other neuroanatomical techniques. In: Björklund A, Hökfelt T, Wouterlood FG, Van den Pol AN (eds) Handbook of chemical neuroanatomy, vol 8. Analysis of neuronal microcircuits and synaptic interactions. Elsevier, Amsterdam, pp 47–124
Google Scholar
Harris MC (1978) The concept of the neuroendocrine reflex. In: Vincent JD, Cordon C (eds) Cell biology of hypothalamic neurosecretion. CNRS, Paris, pp 47–61
Google Scholar
Herkenham M, Nauta WJH (1977) Afferent connections of the habenular nuclei in the rat: a horseradish peroxidase study, with a note on the fiber-of-passage problem. J Comp Neurol 173:123–146
Google Scholar
Iijima K, Ogawa T (1981) An HRP study on the distribution of all nuclei innervating the supraoptic nucleus in the rat brain. Acta Histochem (Jena) 69:274–295
Google Scholar
Insel TR, Harbaugh CR (1989) Lesions of the hypothalamic paraventricular nucleus disrupt the initiation of maternal behavior. Physiol Behav 45:1033–1041
Google Scholar
Jennes L, Stumpf WE, Kalivas PW (1982) Neurotensin: topographical distribution in rat brain by immunohistochemistry. J Comp Neurol 210:211–224
Google Scholar
Jhamandas JH, Lind RW, Renaud LP (1989a) Angiotensin II may mediate excitatory neurotransmission from the subfornical organ to the hypothalamic supraoptic nucleus: an anatomical and electrophysiological study in the rat. Brain Res 487:52–61
Google Scholar
Jhamandas JH, Raby W, Rogers J, Buijs RM, Renaud LP (1989b) Diagonal band projection towards the hypothalamic supraoptic nucleus: light and electron microscopic observations in the rat. J Comp Neurol 282:15–23
Google Scholar
Jirikowski GF, Caldwell JD, Pilgrim C, Stumpf WE, Pederson CA (1989) Changes in immunostaining for oxytocin in the forebrain of the female rat during late pregnancy, parturition and early lactation. Cell Tissue Res 256:411–417
Google Scholar
Johnson RF, Smale L, Moore RY, Morin LP (1989) Paraventricular nucleus efferents mediating photoperiodism in male golden hamsters. Neurosci Lett 98:85–90
Google Scholar
Kiss JZ, Palkovits M, Záborszky L, Tribollet E, Szabo D, Makara GB (1983) Quantitative histological studies on the hypothalamic paraventricular nucleus in rats. II. Number of local and certain afferent nerve terminals. Brain Res 265:11–20
Google Scholar
Kita H, Oomura Y (1982) An HRP study of the afferent connections to rat medial hypothalamic region. Brain Res Bull 8:53–62
Google Scholar
Koranji L, Yamanouchi K, Arai Y (1988) Neural transection between preoptic area and septum inhibits maternal behavior in female and male rats. Neurosci Res 6:167–173
Google Scholar
Leibowitz SF, Sladek C, Spencer L, Tempel D (1988) Neuropeptide Y, epinephrine and norepinephrine in the paraventricular nucleus: stimulation of feeding and the release of corticosterone, vasopressin and glucose. Brain Res Bull 21:905–912
Google Scholar
Lindvall O, Stenevi U (1978) Dopamine and noradrenaline neurons projecting to the septal area in the rat. Cell Tissue Res 190:383–407
Google Scholar
Luparello TJ (1967) Stereotaxic atlas of the forebrain of the guinea pig. Karger, Basel New York
Google Scholar
Marcinkiewicz M, Morcos R, Chretien M (1989) CNS connections with the median raphe nucleus: retrograde tracing with WGA-apoHRP-gold complex in the rat. J Comp Neurol 289:11–35
Google Scholar
Mason WT, Ho YW, Eckstein F, Hatton GI (1983) Mapping of cholinergic neurons associated with rat supraoptic nucleus: combined immunocytochemical and histochemical identification. Brain Res Bull 11:617–626
Google Scholar
Meibach RC, Siegel A (1977) Efferent connections of the septal area in the rat: an analysis utilizing anterograde and retrograde transport methods. Brain Res 119:1–20
Google Scholar
Meister B, Cortes R, Villar MJ, Scalling M, Hökfelt T (1990) Peptides and transmitter enzymes in hypothalamic magnocellular neuron after administration of hyperosmotic stimuli: comparison between messenger RNA and peptide/protein levels. Cell Tissue Res 260:279–297
Google Scholar
Merker G, Blähser S, Zeisberger E (1980) Reactivity pattern of vasopressin-containing neurons and its relation to the antipyretic reaction in the pregnant guinea pig. Cell Tissue Res 212:47–61
Google Scholar
Meyer DK, Brownstein MJ (1980) Effect of surgical deafferentation of the supraoptic nucleus on its choline acetyltransferase content. Brain Res 193:566–569
Google Scholar
Meyer DK, Oertel WH, Brownstein MJ (1980) Deafferentation studies on the glutamic acid decarboxylase content of the supraoptic nucleus of the rat. Brain Res 200:165–168
Google Scholar
Miselis RR (1981) The efferent projections of the subfornical organ of the rat: a circumventricular organ within a neural network subserving water balance. Brain Res 230:1–23
Google Scholar
Neumann I, Landgraf R (1989) Septal and hippocampal release of oxytocin, but not vasopressin, in the conscious lactating rat during suckling. J Neuroendocrinol 1:305–308
Google Scholar
Ohtake M, Sakaguchi T (1990) Gastrin-17 injected into the hypothalamic paraventricular nucleus can induce gastric acid secretion in rats. Brain Res 508:325–328
Google Scholar
Oldfield BJ, Silverman A-J (1985) A light microscopic HRP study of limbic projections to the vasopressin-containing nuclear groups of the hypothalamus. Brain Res Bull 14:143–157
Google Scholar
Onaka T, Yagi K (1988) Bimodal effects of noxious stimuli on vasopressin secretion in rats. Neuroscience Res 6:141–148
Google Scholar
Oorjitham EG, Godfrey DA, Ross CD, Dunn JD (1989) Effect of septal ablation on choline acetyltransferase in the paraventricular nucleus. Brain Res Bull 22:277–282
Google Scholar
Pickard GE (1982) The afferent connections of the suprachiasmatic nucleus of the golden hamster with emphasis on the retinohypothalamic projection. J Comp Neurol 211:65–83
Google Scholar
Poulain DA, Lebrun CJ, Vincent JD (1981) Electrophysiological evidence for connections between septal neurones and the supraoptic nucleus of the hypothalamus of the rat. Exp Brain Res 42:260–268
Google Scholar
Pratt NC, Lisk RD (1989) Role of the hypothalamic paraventricular nucleus in mediating stress-related litter deficits in the golden hamster. J Neuroendocrinol 1:407–413
Google Scholar
Sawchenko PE, Swanson LW (1983) The organization of forebrain afferents to the paraventricular and supraoptic nuclei of the rat. J Comp Neurol 218:121–144
Google Scholar
Sherman TG, McKelvey JF, Watson SJ (1986) Vasopressin mRNA regulation in individual hypothalamic nuclei: a northern and in situ hybridization analysis. J Neurosci 6:1685–1694
Google Scholar
Shinoda K, Tohyama M (1987) Analysis of the habenulopetal enkephalinergic system in the rat brain: an immunohistochemical study. J Comp Neurol 255:483–496
Google Scholar
Silverman A-J, Zimmerman EA (1983) Magnocellular neurosecretory system. Annu Rev Neurosci 6:357–380
Google Scholar
Silverman A-J, Hoffman DL, Zimmerman EA (1981) The descending afferent connections of the paraventricular nucleus of the hypothalamus (PVN). Brain Res Bull 6:47–61
Google Scholar
Sladek CD, Armstrong WD (1987) Effects of neurotransmitters and neuropeptides on vasopressin release. In: Gash DM, Boer GJ (eds) Vasopressin: principles and properties. Plenum Press, New York, pp 287–333
Google Scholar
Sofroniew MV (1985) Vasopressin, oxytocin and their related neurophysins. In: Björklund A, Hökfelt T (eds) Handbook of chemical neuroanatomy, vol 4. GABA and neuropeptides in the CNS, part I. Elsevier, Amsterdam, pp 93–165
Google Scholar
Sofroniew MV, Weindl A, Schinko I, Wetzstein R (1979) The distribution of vasopressin-, oxytocin-, and neurophysin-producing neurons in the guinea pig brain. Cell Tissue Res 196:376–384
Google Scholar
Staiger JF, Nürnberger F (1989) Pattern of afferents to the lateral septum in the guinea pig. Cell Tissue Res 257:471–490
Google Scholar
Staiger JF, Wouterlood FG (1990) Efferent projections from the lateral septal nucleus to the anterior hypothalamus in the rat: a study combining Phaseolus vulgaris-leucoagglutinin tracing with vasopressin immunocytochemistry. Cell Tissue Res 261:17–23
Google Scholar
Staines WA, Yamamoto T, Dewar KM, Daddona PE, Geiger JD, Nagy JI (1988) Distribution, morphology and habenular projections of adenosine deaminase-containing neurons in the septal area of rat. Brain Res 455:72–87
Google Scholar
Steinbusch HWM (1981) Distribution of serotonin-immunoreactivity in the central nervous system of the rat — cell bodies and terminals. Neuroscience 6:557–618
Google Scholar
Swanson LW (1987) The hypothalamus. In: Björklund A, Hökfelt T, Swanson LW (eds) Handbook of chemical neuroanatomy, vol 5. Integrated systems of the CNS, part I. Elsevier, Amsterdam, pp 125–277
Google Scholar
Swanson LW, Cowan WM (1979) The connections of the septal region. J Comp Neurol 186:621–656
Google Scholar
Swanson LW, Sawchenko PE (1983) Hypothalamic integration: organization of the paraventricular and supraoptic nuclei. Annu Rev Neurosci 6:269–324
Google Scholar
Theodosis DT, Mason WT (1988) Choline acetyltransferase immunocytochemical staining of the rat supraoptic nucleus and its surroundings. Cell Tissue Res 254:119–124
Google Scholar
Theodosis DT, Poulain DA (1989) Neuronal-glial and synaptic plasticity in the adult rat paraventricular nucleus. Brain Res 484:361–366
Google Scholar
Theodosis DT, Paut L, Tappaz ML (1986) Immunocytochemical analysis of the GABAergic innervation of oxytocin- and vasopressin-secreting neurons in the rat supraoptic nucleus. Neuroscience 19:207–222
Google Scholar
Tribollet E, Dreifuss JJ (1981) Localization of neurones projecting to the hypothalamic paraventricular nucleus area of the rat: a horseradish peroxidase study. Neuroscience 6:1315–1328
Google Scholar
Tribollet E, Armstrong WE, Dubois-Dauphin M, Dreifuss JJ (1985) Extra-hypothalamic afferent inputs to the supraoptic nucleus area of the rat as determined by retrograde and anterograde tracing techniques. Neuroscience 15:135–148
Google Scholar
Veening JG, Swanson LW, Cowan WM, Nieuwenhuys R, Geeraedts LMG (1982) The medial forebrain bundle of the rat. II. An autoradiographic study of the topography of the major descending and ascending components. J Comp Neurol 206:82–108
Google Scholar
Vincent JD, Hayward JN (1970) Activity of single cells in the osmoreceptor-supraoptic nuclear complex in the hypothalamus of the waking rhesus monkey. Brain Res 23:105–108
Google Scholar
Walaas I, Fonnum F (1980) The distribution and origin of glutamate decarboxylase and choline acetyltransferase in the ventral pallidum and other basal forebrain regions. Brain Res 177:325–336
Google Scholar
Watts AG, Swanson LW, Sanchez-Watts G (1987) Efferent projections of the suprachiasmatic nucleus. I. Studies using anterograde transport of Phaseolus vulgaris-leucoagglutinin in the rat. J Comp Neurol 258:204–229
Google Scholar
Whitnall MH (1989) Stress selectively activates the vasopressin-containing subset of corticotropin-releasing hormone neurons. Neuroendocrinology 50:702–707
Google Scholar
Wouterlood FG, Groenewegen HJ (1985) Neuroanatomical tracing by use of Phaseolus vulgaris-leucoagglutinin (PHA-L): electron microscopy of PHA-L-filled somate, dendrites, axons and axon terminals. Brain Res 326:188–191
Google Scholar
Wouterlood FG, Bol JGJM, Steinbusch HWM (1987) Double-label immunocytochemistry: Combination of anterograde neuroanatomical tracing with Phaseolus vulgaris-leucoagglutinin and enzyme immunocytochemistry of target neurons. J Histochem Cytochem 35:817–823
Google Scholar
Yamashita H, Inenaga K, Dyball REJ (1988) Thermal, osmotic and chemical modulation of neural activity in the paraventricular nucleus: in vitro studies. Brain Res Bull 20:825–829
Google Scholar
Záborszky L, Cullinan WE (1989) Hypothalamic axons terminate on forebrain cholinergic neurons: an ultrastructural doublelabeling study using PHA-L tracing and CHAT immunocytochemistry. Brain Res 479:177–184
Google Scholar
Záborszky L, Léranth C, Makara GB, Palkovits M (1975) Quantitative studies on the supraoptic nucleus in the rat. II. Afferent fiber connections. Exp Brain Res 22:525–540
Google Scholar