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1 globus pallidus; the lateral septum; and the islands of Calleja).
2 ns, including hippocampal region CA1 and the islands of Calleja.
4 he brain, including suprachiasmatic nucleus, islands of Calleja and medial preoptic area, olfactory b
5 c [3H]7-OH-DPAT binding were detected in the islands of Calleja and nucleus accumbens but in addition
6 high expression in the ventral pallidum, the islands of Calleja and pars compacta of the substantia n
8 its were also seen in the nucleus accumbens, islands of Calleja, and the nucleus of the stria termina
9 ity was also observed in olfactory tubercle, islands of Calleja, cerebral cortex, striatum, thalamic
11 (type 2) nuclear positive neurons within the islands of Calleja, endopiriform nucleus, lateral septum
12 buted with highest densities observed in the islands of Calleja, followed by the nucleus accumbens.
14 minantly binds to D(3) dopamine receptors on Islands of Calleja granule cell axons but avoids dopamin
15 e nucleus accumbens (NACC) (52--83%) and the islands of calleja (IC) (67%), all of which returned to
17 -like receptors) binding in Acc (by 84%) and islands of Calleja (IC; 44%), without affecting [3H](+)-
20 ted compounds on granule neurones within the islands of Calleja in vitro, in slices if approximately
21 he reported presence of gap junctions in the islands of Calleja offers the explanation that these eff
22 rved in the superior and inferior colliculi, islands of Calleja, subiculum, lateral septum, lateral a
23 ry bulb, the anterior olfactory nucleus, the islands of Calleja, the CA1-CA3 fields of the hippocampu
24 l preoptic area, anterior olfactory nucleus, islands of Calleja, the dorsal endopiriform n, piriform
25 populated neuron rich regions including the Islands of Calleja, the olfactory bulb, and the internal
26 ven the reported lack of D2 receptors in the islands of Calleja, these findings indicate a direct act