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1 ociation areas, lateral agranular cortex and orbital cortex.
2 , and within the olfactory tubercle (OT) and orbital cortex.
3  nigra reticulata (SNr), NAC, OT, septum and orbital cortex.
4  agranular insular area Iai in the posterior orbital cortex.
5  proliferation) to corticosterone within the orbital cortex.
6                               Other areas of orbital cortex (11l, 12m, 12l, 13m, 13l, Ial, and Iam) t
7 ateral orbital cortex (-18%), medial/ventral orbital cortex (-17%), and parietal cortex (-17%) as wel
8 -19%), frontal cortex-area 3 (-19%), lateral orbital cortex (-18%), medial/ventral orbital cortex (-1
9 ter for emotions-is strongly linked with the orbital cortex, a region associated with social interact
10   The dual pathways from the amygdala to the orbital cortex and to the thalamus are distinct by morph
11 m cortex, entorhinal cortex, insular cortex, orbital cortex, and all cortical amygdaloid areas.
12 rtex (M1), cingulate cortex, frontal cortex, orbital cortex, and inferior parietal cortex.
13 ea 3, lateral orbital cortex, medial/ventral orbital cortex, and parietal cortex, in addition to alte
14 statory cortex, prelimbic prefrontal cortex, orbital cortex, and the anterior olfactory nucleus.
15  cortex was predominantly from ventrolateral orbital cortex, and was not uniform; rostrally, the proj
16 s study, attenuated activity in the inferior orbital cortex, and, like noxious stimulation, increased
17 r areas known to project to the RSC (ventral orbital cortex, anterior cingulate cortex and subiculum)
18 al relationships among brain activity in the orbital cortex, caudate nucleus, and thalamus that obtai
19 7/12m, 47/12l, and 47/12s occupy the lateral orbital cortex, corresponding to monkey areas 12r, 12m,
20  in the thalamus that link directly with the orbital cortex, forming a tight tripartite network.
21 ebellar blood flow, rCBF in the striatum and orbital cortex in patients with HD was less during maze
22 vation specifically in the left anteromedial orbital cortex in response to m-CPP.
23                              For example, as orbital cortex is reciprocally connected with hypothalam
24 areas in the central and lateral part of the orbital cortex, is connected with vision-related areas i
25 ortex-area 1, frontal cortex-area 3, lateral orbital cortex, medial/ventral orbital cortex, and parie
26                                Specifically, orbital cortex (OC) inputs primarily targeted neurons in
27 d areas AGm, lateral agranular cortex (AGl), orbital cortex, posterior parietal cortex (PPC), and vis
28 densely interconnected subregions: a lateral/orbital cortex processing primarily sensory/exteroceptiv
29 NA expression for the zeta1-a splice form in orbital cortex showed the best performances in the worki
30 m the retrosplenial, anterior cingulate, and orbital cortex to the dorsal hippocampus, with potential
31 c input from the prelimbic, infralimbic, and orbital cortex to the ventral hippocampus, with potentia
32 somedially, PPC dorsally, AGl laterally, and orbital cortex ventrally.
33 onses of single neurons in the ventrolateral orbital cortex (VLO) to a noxious visceral stimulus (col
34 rom the piriform cortex to the ventrolateral orbital cortex (VLO), a prefrontal area where chemosenso
35 sterior parietal cortex (PPC), ventrolateral orbital cortex (VLO), and secondary visual cortex (Oc2M)
36 f VO overlap with those of the ventrolateral orbital cortex (VLO).
37 d 12r in the caudal and lateral parts of the orbital cortex (which received inputs from several senso
38  with areas 13l, 13m, and 13b in the central orbital cortex, with further connections to the rostral
39  network linked most of the areas within the orbital cortex, with very few connections to medial pref

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