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1 tively correlated with Fos expression in the tuberomammillary nucleus.
2 antia nigra, posterior hypothalamic area and tuberomammillary nucleus.
3 rexin-A in the wake-promoting neurons of the tuberomammillary nucleus.
4 tems, but the integrity of the histaminergic tuberomammillary nucleus, a major arousal-promoting syst
5 ventrolateral preoptic neurons innervate the tuberomammillary nucleus, a posterior hypothalamic cell
6  focal restoration of OX2R in neurons of the tuberomammillary nucleus and adjacent parts of the poste
7 f known interactions between the Me5 and the tuberomammillary nucleus and because of the role of both
8 not dopaminergic neurons), the histaminergic tuberomammillary nucleus and in cholinergic neurons of t
9 tic area GABAergic neurons projecting to the tuberomammillary nucleus are both sleep active and sleep
10         Histamine-containing neurones of the tuberomammillary nucleus densely innervate the cholinerg
11 , and many hypothalamic nuclei including the tuberomammillary nucleus, dorsomedial nucleus, paraventr
12 he frontal motor neocortex and hypothalamic (tuberomammillary nucleus) histaminergic-neurons of gamma
13 bthreshold voltages, using dissociated mouse tuberomammillary nucleus neurons, pacemaking neurons wit
14  innervated by histaminergic fibers from the tuberomammillary nucleus of the hypothalamus, causes a s
15 ion of the histamine-containing cells in the tuberomammillary nucleus of the hypothalamus.
16 ave shown that histaminergic neurones of the tuberomammillary nucleus project directly to hypothalami
17  of CTB-labeled monoaminergic neurons in the tuberomammillary nucleus, raphe nuclei, and ventrolatera
18 noradrenergic locus coeruleus, histaminergic tuberomammillary nucleus, serotoninergic raphe nucleus,
19 icular zone, ventrolateral preoptic nucleus, tuberomammillary nucleus, supramammillary nucleus, later
20    Histaminergic neurones of the dorsomedial tuberomammillary nucleus that project to the magnocellul
21 ons that may promote sleep by inhibiting the tuberomammillary nucleus, the source of the ascending hi
22 mical evidence exists for projections to the tuberomammillary nucleus (TM) from the nucleus of the di
23                 Histaminergic neurons of the tuberomammillary nucleus (TM) project monosynaptically t
24 monosynaptic input to SON, the histaminergic tuberomammillary nucleus (TM) projection, activation of
25 arousal-related neurons in the histaminergic tuberomammillary nucleus (TM), the noradrenergic locus c
26  proposed to be histaminergic neurons of the tuberomammillary nucleus (TM).
27 afinil increased Fos immunoreactivity in the tuberomammillary nucleus (TMN) and in orexin (hypocretin
28                 Histaminergic neurons in the tuberomammillary nucleus (TMN) are an important componen
29                 Histaminergic neurons of the tuberomammillary nucleus (TMN) are hypothesized to promo
30                                          The tuberomammillary nucleus (TMN) is the major source of hi
31 The activity of histaminergic neurons in the tuberomammillary nucleus (TMN) of the hypothalamus corre
32 n system is the histaminergic neurons of the tuberomammillary nucleus (TMN), an essential wake-promot
33 sal forebrain (BF), histamine neurons in the tuberomammillary nucleus (TMN), and the noradrenergic lo
34 neurons, found in the posterior hypothalamic tuberomammillary nucleus (TMN), extend fibers throughout
35 s a dense histaminergic innervation from the tuberomammillary nucleus (TMN).
36 ation, we identified a possible role for the tuberomammillary nucleus (TMN): when gabazine was microi
37 ished sleep and arousal nodes, including the tuberomammillary nucleus, ventral periaqueductal gray, a
38  preoptic area, mediobasal hypothalamus, and tuberomammillary nucleus, whereas kainate-2 subunit mRNA

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