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1 ions (angular gyrus, mid-frontal cortex, and anterior cingulate gyrus).
2 ted obese people by opposite activity in the anterior cingulate gyrus.
3 agnetic resonance spectroscopy in the dorsal anterior cingulate gyrus.
4 work involving the motor/premotor cortex and anterior cingulate gyrus.
5 ith a relative decrease in activation in the anterior cingulate gyrus.
6 y gray matter volume in the frontal pole and anterior cingulate gyrus.
7 receptor binding in orbitofrontal cortex and anterior cingulate gyrus.
8  posit a primary role for dysfunction of the anterior cingulate gyrus.
9 ted in the left fronto-temporal junction and anterior cingulate gyrus.
10 significantly lower metabolism in the dorsal anterior cingulate gyrus.
11 elated with glucose metabolism in the dorsal anterior cingulate gyrus.
12 here frontal and temporal regions and in the anterior cingulate gyrus.
13 ion in the ventral prefrontal cortex and the anterior cingulate gyrus.
14 he comparison group had greater increases in anterior cingulate gyrus.
15 structural and functional alterations in the anterior cingulate gyrus.
16 er both in the right parietal cortex and the anterior cingulate gyrus.
17 , P < 0.05), and in the contralateral dorsal anterior cingulate gyrus (ACC; r = 0.43, P < 0.05), dors
18                               Neurons in the anterior cingulate gyrus (ACCg) encoded reward allocatio
19  (OFC), medial prefrontal cortex (mPFC), and anterior cingulate gyrus (ACG)].
20 ei, hippocampus, orbitofrontal cortex (OFC), anterior cingulate gyrus (aCING), and peripeduncular nuc
21 with schizophrenia showed significantly less anterior cingulate gyrus activation while naming the col
22 viduals is associated with activation of the anterior cingulate gyrus, amygdala, orbitofrontal cortex
23 metabolism in limbic regions (eg, perigenual anterior cingulate gyrus and amygdala) and ratings of st
24 activation deficits were noted in the dorsal anterior cingulate gyrus and hippocampus of the depresse
25 he left inferior parietal lobule, and in the anterior cingulate gyrus and medial pre-frontal cortex.
26                 Results suggest that ventral anterior cingulate gyrus and right amygdala play a role
27 ects with PTSD had increased rCBF in ventral anterior cingulate gyrus and right amygdala when generat
28 dus and gray and white matter volumes of the anterior cingulate gyrus and superior frontal gyrus were
29 (18)F]dopa K(i)(o) were observed in the left anterior cingulate gyrus and the dorsal midbrain region
30 The authors investigated the function of the anterior cingulate gyrus and the related neural systems
31  with gray matter deficits only in the right anterior cingulate gyrus and ventral striatum.
32 e hippocampus, insula, orbitofrontal cortex, anterior cingulate gyrus, and caudate in subjects with h
33 e dopamine content in the prefrontal cortex, anterior cingulate gyrus, and hippocampus between health
34 uding lateral superior frontal gyrus, dorsal anterior cingulate gyrus, and medial frontopolar cortex.
35 lamus, caudate and putamen, globus pallidum, anterior cingulate gyrus, and medial temporal regions, i
36 en most commonly found in prefrontal cortex, anterior cingulate gyrus, and temporal lobe.
37 tivity in bilateral prefrontal cortices, the anterior cingulate gyrus, and the precuneus; and induced
38 ivation of the amygdala, the left insula and anterior cingulate gyrus, and the right subcallosal gyru
39              Volumetric abnormalities in the anterior cingulate gyrus appear specific to the gray mat
40 ann's areas 6, 7, 8, 9, 10, 11, 44, 45, 47), anterior cingulate gyrus (areas 24, 32), temporal cortex
41  rostral insula, and pregenual region of the anterior cingulate gyrus (areas 24/32).
42 atients with elevated metabolic rates in the anterior cingulate gyrus at baseline are more likely to
43 ivates several cortical areas, including the anterior cingulate gyrus (BA 24 and 25), the lateral bas
44 uced markedly greater activation of the left anterior cingulate gyrus, bilateral frontopolar regions,
45 tical activations were observed in the right anterior cingulate gyrus (Brodmann area 24), in the intr
46 , patients had more total gray matter in the anterior cingulate gyrus but not the superior frontal gy
47 ume were estimated for 7 structures: rostral anterior cingulate gyrus, caudal anterior cingulate gyru
48 UD showed reduced gray matter volumes in the anterior cingulate gyrus compared with individuals with
49 ished D(1) binding in several brain regions (anterior cingulate gyrus, dorsolateral prefrontal cortex
50 ents with schizophrenia fail to activate the anterior cingulate gyrus during selective attention perf
51 bilateral insula and middle cingulate/dorsal anterior cingulate gyrus during the processing of fearfu
52 t hemisphere and, to a lesser extent, in the anterior cingulate gyrus, head of the caudate nucleus an
53                                       In the anterior cingulate gyrus, however, no group differences
54 ents of glucose metabolism and volume of the anterior cingulate gyrus in autism.
55                             We show that the anterior cingulate gyrus in male macaques is critical fo
56 r hGR splice variants in the hippocampus and anterior cingulate gyrus in suicide completers with and
57  in the middle and inferior frontal gyri and anterior cingulate gyrus, in addition to regions of the
58 regional CBF increases in insular cortex and anterior cingulate gyrus; increases in anterior cingulat
59 (medial thalamus, amygdala, caudate nucleus, anterior cingulate gyrus, insular cortex and orbitofront
60                                          The anterior cingulate gyrus is proposed to be an important
61 matter were identified in the frontal lobes, anterior cingulate gyrus, left temporal lobe, and of whi
62     These results suggest that damage to the anterior cingulate gyrus may be the cause of changes in
63 psychotherapy-treated on the right) and left anterior cingulate gyrus metabolism, and increases in no
64       Volumes of the superior frontal gyrus, anterior cingulate gyrus, orbital frontal region, hippoc
65  AD patients had increased rCBF in the right anterior cingulate gyrus (P = .02) compared with that in
66 es: rostral anterior cingulate gyrus, caudal anterior cingulate gyrus, posterior cingulate gyrus, hip
67  and CSF in seven prefrontal subregions: the anterior cingulate, gyrus rectus, orbitofrontal cortex,
68 elative glucose metabolism in the perigenual anterior cingulate gyrus spanning the midline.
69 disorders showed reduced volume of the right anterior cingulate gyrus, specifically in Brodmann's are
70  in the medial prefrontal cortex and rostral anterior cingulate gyrus (Talairach coordinates: x=0, y=
71 entalizing network-medial prefrontal cortex, anterior cingulate gyrus, temporoparietal junction, and
72 ants showed greater activation in the dorsal anterior cingulate gyrus than did low-risk participants,
73                               Regions in the anterior cingulate gyrus, the temporal lobes, and the po
74                                        Total anterior cingulate gyrus volume correlated significantly
75                                          The anterior cingulate gyrus was the only brain region with
76       For this follow-up study of postmortem anterior cingulate gyrus, we have found evidence of incr
77 x and anterior cingulate gyrus; increases in anterior cingulate gyrus were greater in the comparison
78             The orbitofrontal cortex and the anterior cingulate gyrus, which are regions neuroanatomi
79 antly lower FA bilaterally in 3 areas of the anterior cingulate gyrus white matter.
80 rbitofrontal cortex) and inhibitory control (anterior cingulate gyrus), whose disruption results in c
81 ctivation patterns were also observed in the anterior cingulate gyrus with the proximal esophagus bei
82  and its metabolic products were observed in anterior cingulate gyrus without proton decoupling in on

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