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1 cortex (PFC) and thalamus, particularly the mediodorsal nucleus.
2 ellular, and caudodorsal subdivisions of the mediodorsal nucleus.
3 are located in the paralaminar region of the mediodorsal nucleus.
4 tral lateral nucleus, pars caudalis, (3) the mediodorsal nucleus, (4) the ventral anterior nucleus, p
5 posterior insular cortex projected to medial mediodorsal nucleus, agranular anterior insular and infr
7 t Alzheimer's type pathology, volumes of the mediodorsal nucleus and pulvinar, but not the anterior o
8 ated with visual attention, specifically the mediodorsal nucleus and pulvinar, have not been well inv
9 ated with volume and neuronal changes in the mediodorsal nucleus and pulvinar, the major association
10 tly lower relative glucose metabolism in the mediodorsal nucleus and the centromedian nucleus and sig
11 changes in volume and neuronal number in the mediodorsal nucleus and the pulvinar regions of the thal
12 ograde labeling of the medial segment of the mediodorsal nucleus and ventral tegmental area and weak
13 llidum, anterograde labeling was weak in the mediodorsal nucleus and ventral tegmental area, but robu
14 predominant accumbens shell influence on the mediodorsal nucleus and with cortico-ventral striatopall
15 fied by their antidromic activation from the mediodorsal nucleus and/or by their firing characteristi
16 ve glucose metabolism in the total thalamus, mediodorsal nucleus, and pulvinar was associated with gr
17 divisions (medial and lateral sectors of the mediodorsal nucleus; and the ventral lateral posterior,
18 ing) identified an area in the region of the mediodorsal nucleus bilaterally with significantly lower
19 ignificantly lower, and neuronal size in the mediodorsal nucleus, caudodorsal subdivision, and pulvin
20 f amygdaloid neurons with projections to the mediodorsal nucleus did not exhibit glutamate or asparta
22 ignificantly greater than for lesions of the mediodorsal nucleus in thalamus, the fornix, or the dors
23 ctions were with the paralamellar portion of mediodorsal nucleus, intralaminar nuclei and magnocellul
24 densocellular, dc; magnocellular, mc) of the mediodorsal nucleus (MD) and from the ventral posterior
25 would be critical for recollection while the Mediodorsal nucleus (MD) of the thalamus would support f
26 al lateral nucleus of the thalamus (VL), the mediodorsal nucleus (MD), and intralaminar nuclei includ
27 terconnected with the lateral portion of the mediodorsal nucleus (MD1), VL, and the central lateral (
31 he central nucleus of the amygdala (Ce), the mediodorsal nucleus of the thalamus (MD), the lateral hy
33 as well as the magnocellular division of the mediodorsal nucleus of the thalamus and midline thalamic
34 studies of EAAT1 and EAAT2 expression in the mediodorsal nucleus of the thalamus in an elderly cohort
35 lobes, caudate nucleus, cingulate gyrus, and mediodorsal nucleus of the thalamus relative to normal v
36 iculate nucleus to primary visual cortex and mediodorsal nucleus of the thalamus to prefrontal cortex
37 ver, inhibition of the basolateral amygdala, mediodorsal nucleus of the thalamus, or the ventral pref
40 hizophrenic subjects, neuronal number in the mediodorsal nucleus, parvocellular subdivision, and pulv
42 t were coregistered, and the whole thalamus, mediodorsal nucleus, pulvinar, and centromedian nucleus
43 r is also associated with dysfunction in the mediodorsal nucleus, pulvinar, and centromedian nucleus,
45 iques were used to determine volumes for the mediodorsal nucleus, pulvinar, and the anterior and cent
47 itional thalamic nuclei, particularly to the mediodorsal nucleus, suggests that these thalamic nuclei
49 rminals from the prefrontal-related thalamic mediodorsal nucleus to the middle cortical layers, which
50 nucleus accumbens to influence the thalamic mediodorsal nucleus via ventral striatopallidothalamic c
51 ile lower relative glucose metabolism in the mediodorsal nucleus was associated with more negative sy
54 om the orbitofrontal cortex and the thalamic mediodorsal nucleus, which similarly innervated extensiv
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