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1 hanges from responsive units in the preoptic-anterior hypothalamic area.
2 the bed nucleus of stria terminalis, and the anterior hypothalamic area.
3 to the base of the brain at the level of the anterior hypothalamic area.
4 halamic nucleus, right lateral HT, and right anterior hypothalamic area.
5 ntromedial nucleus, lateral hypothalamus, or anterior hypothalamic area.
6 in either the suprachiasmatic nucleus or the anterior hypothalamic area.
7 lar nuclei (PVN), ventromedial nuclei (VMH), anterior hypothalamic area (AHA) and LHA of DiO rats, by
10 y by decreasing noradrenaline release in the anterior hypothalamic area (AHA), thereby reducing the a
11 ventricular nucleus (PVN; by 41%, P = 0.01), anterior hypothalamic area (AHA; by 34%, P < 0.01) and l
12 ese areas are especially concentrated in the anterior hypothalamic area and the ventromedial hypothal
13 insular area; bed nuclei of terminal stria; anterior hypothalamic area; arcuate, paraventricular, an
14 sion was also seen in the subfornical organ, anterior hypothalamic area, dorsal hypothalamic area, an
15 ermittent stress increased GAD65 mRNA in the anterior hypothalamic area, dorsomedial nucleus, medial
17 o identified in the paraventricular nucleus, anterior hypothalamic area, medial preoptic area, median
19 he importance of neurons within the preoptic/anterior hypothalamic area (POA) in the regulation of sl
21 trial nucleus, the medial preoptic area, the anterior hypothalamic area, the dorsomedial hypothalamic
22 o the nucleus, corresponding to parts of the anterior hypothalamic area, the posterior BNST, the medi
23 us, bed nucleus of the stria terminalis, and anterior hypothalamic area, whereas AR mRNA-containing n