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1 magnocellular preoptic area, and substantia innominata).
2 the medial preoptic area, and the substantia innominata.
3 l area, medial preoptic area, and substantia innominata.
4 tic area, medial septal area, and substantia innominata.
5 um, the internal capsule, and the substantia innominata.
6 nocellular preoptic area, and the substantia innominata.
7 s dense projections to the caudal substantia innominata, a distinct caudal dorsolateral region of the
8 heaviest inputs are to the caudal substantia innominata and adjacent central amygdalar nucleus, retro
9 leus, formed a continuum with the substantia innominata and bed nucleus of the stria terminalis, supp
10 to the nucleus accumbens, caudal substantia innominata and central amygdalar nucleus, thalamic parav
13 ng the caudal globus pallidus and substantia innominata and moderate input from the horizontal limb o
15 ral pallidum and anterior half of substantia innominata), and lateral SNC (caudal half of the substan
16 associated nucleus accumbens and substantia innominata); and behavioral state control (supramammilla
17 iagonal band of Broca, within the substantia innominata, and in a narrow band bordering the substanti
18 rum, tania tecta, lateral septum, substantia innominata, and medial and lateral preoptic nuclei of th
19 the nucleus of the diagonal band, substantia innominata, and preoptic region), entopeduncular nucleus
21 rd prediction (nucleus accumbens, substantia innominata, and ventral tegmental area), ingestive behav
22 endopiriform nucleus, dorsal BST, substantia innominata, and, most prominently the amygdala--primaril
23 ala, and basal nucleus of Meynert/substantia innominata; and sent efferents to the pons, superior col
24 al band nuclei, the sublenticular substantia innominata, bed nucleus of the stria terminalis, ventral
25 entral pallidum, globus pallidus, substantia innominata, globus pallidus, and internal capsule, where
27 strum, nucleus accumbens, septum, substantia innominata, lateral preoptic area, and diagonal band nuc
28 sconnection of the accumbens, FS, substantia innominata/magnocellular preoptic nucleus (SI/MA), and b
29 agnocellular preoptic nucleus and substantia innominata (MCPO/SI) in mice and determined the effects
30 cleus basalis magnocellularis and substantia innominata (NBM/SI) attenuate operant suppression induce
31 cleus basalis magnocellularis and substantia innominata (NBM/SI) may be important in mediating aversi
32 the globus pallidus, whereas the substantia innominata neurons bore similarities to isodendritic neu
35 mb of the diagonal band (HDB) and substantia innominata/nucleus basalis (SI/NB) following ovariectomy
36 rgic neurons in the contralateral substantia innominata/nucleus basalis (SI/nBM) failed to show the e
37 nucleus (CEA) and the cholinergic substantia innominata/nucleus basalis magnocellularis (SI/nBM) is i
38 onnected CeA from the cholinergic substantia innominata/nucleus basalis magnocellularis (SI/nBM) on p
39 rgic neurons in the sublenticular substantia innominata/nucleus basalis magnocellularis (SI/nBM), as
41 ), the cholinergic neurons of the substantia innominata/nucleus basalis region, and their innervation
42 hat electrical stimulation of the substantia innominata of the basal forebrain phase shifts the circa
44 erconnected nucleus accumbens and substantia innominata), orofacial motor control (retrorubral area),
45 ; lateral habenula; zona incerta; substantia innominata; posterior thalamic nuclei; ventral tegmental
46 d that cholinergic neurons of the substantia innominata receive significantly higher numbers of adren
47 rgic and GABAergic neurons of the substantia innominata (SI) and magnocellular preoptic area, but the
48 d comparing loss of the midbrain, substantia innominata (SI), temporoparietal cortex and hippocampus
49 sions activated the sublenticular substantia innominata (SI), where signal increases were observed to
52 eus, to the nucleus accumbens and substantia innominata, to hypothalamic parts of the behavior contro
53 nucleus of the stria terminalis, substantia innominata, various thalamic and hypothalamic nuclei, pe
54 omotor system (nucleus accumbens, substantia innominata, ventral tegmental area, and retrorubral area
55 inals in the ventral pallidum and substantia innominata were found to establish synaptic specializati
56 urons in the ventral pallidum and substantia innominata were recorded extracellularly, labeled juxtac
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