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1 vity in the right inferior frontal gyrus and supramarginal gyrus.
2 flow values, in a subnetwork centered at the supramarginal gyrus.
3 gyrus, whereas area 44 is connected with the supramarginal gyrus.
4 rus, has strong connections with the rostral supramarginal gyrus.
5 al areas of the cerebral cortex, as well the supramarginal gyrus.
6 hy, including the inferior frontal gyrus and supramarginal gyrus.
7 ts in the left middle frontal gyrus and left supramarginal gyrus.
8 well as the superior parietal lobule and the supramarginal gyrus.
9 nt part of the middle temporal gyrus and the supramarginal gyrus.
10 ylvian fissure, which included the posterior supramarginal gyrus and adjacent anterior angular gyrus,
11 vely with calculation activation in the left supramarginal gyrus and bilateral anterior cingulate cor
12 emporal areas, had higher degree in the left supramarginal gyrus and right gyrus rectus, and had high
13 ignificantly less metabolic activity and the supramarginal gyrus and vermis had significantly more me
14  that dysfunction of left Brodmann areas 40 (supramarginal gyrus) and 37 (posterior-inferior temporal
15 ; the right ventrolateral prefrontal cortex, supramarginal gyrus, and anterior thalamus; and bilatera
16 otor cortex, dorsolateral prefrontal cortex, supramarginal gyrus, and in ipsilateral posterior pariet
17 al prefrontal cortex, right anterior insula, supramarginal gyrus, and left inferior parietal lobule.
18  cingulate and paracingulate gyri, posterior supramarginal gyrus, and planum temporale.
19 regions included the caudate, lingual gyrus, supramarginal gyrus, and right and left superior and rig
20 stral middle frontal and frontal pole), left supramarginal gyrus, and right transverse temporal gyrus
21 ppocampus, fusiform/inferior temporal gyrus, supramarginal gyrus, and visual association cortex in wo
22 e superior temporal gyrus extending into the supramarginal gyrus, as well as lesions within the basal
23 ch has stronger connections to the posterior supramarginal gyrus, can be distinguished from both the
24 frontal gyrus, superior parietal lobule, and supramarginal gyrus, comparison subjects showed signific
25 ty in a phonologically related brain region (supramarginal gyrus) correlated with the verbalizer dime
26 e: left posterior superior temporal lobe and supramarginal gyrus; executive functions: bilateral fron
27 rtex, there was a dissociation such that the supramarginal gyrus exhibited greater activity to the ta
28  parietal lobule (IPL) (corresponding to the supramarginal gyrus) exhibited reduction in neural activ
29 gulate cortex, bilateral precuneus, and left supramarginal gyrus for fearful (relative to neutral) fa
30 ial role of the superior parietal lobule and supramarginal gyrus in mediating competition between vis
31 interaction effect on activation in the left supramarginal gyrus, irrespective of diagnostic group (Z
32 before the UP of lexical competition in left supramarginal gyrus, left superior temporal gyrus, left
33 in right anterior to middle cingulate, right supramarginal gyrus, left thalamus, and midbrain bilater
34 mulation focused on either the left anterior supramarginal gyrus or opercular part of the left inferi
35 and to the white matter adjacent to the left supramarginal gyrus, over and above overt speech product
36  postcentral gyri, supplementary motor area, supramarginal gyrus, posterior temporal cortex, and infe
37  regions including middle frontal gyrus, and supramarginal gyrus relative to young subjects and those
38 ial magnetic stimulation (rTMS) of the right supramarginal gyrus (rSMG) in humans lengthened the perc
39 iated with increased activation in the right supramarginal gyrus (rSMG), in a location distinct from
40  whether the functional contribution of left supramarginal gyrus (SMG) during action reprogramming de
41 ethods have shown the importance of the left supramarginal gyrus (SMG) for pitch memory.
42 signal differences at bilateral sites in the supramarginal gyrus (SMG) of the inferior parietal lobul
43 stently after lesions that include the right supramarginal gyrus (SMG), a part of the inferior pariet
44 ion was administered on 50% of trials to the supramarginal gyrus (SMG), anterior intraparietal sulcus
45  levels (HI>MI>LI) was a subarea of the left supramarginal gyrus (SMG).
46 t categorically processing area was the left supramarginal gyrus: stimuli from different phonetic cat
47 posterior cingulate, inferior parietal lobe, supramarginal gyrus, striatum, and thalamus.
48 posterior cingulate, inferior parietal lobe, supramarginal gyrus, striatum, and thalamus.
49  36, z = 8; FWE-corrected P = .009), and the supramarginal gyrus (t168 = 5.03; peak MNI coordinates x
50 ngulate/anterior cingulate cortex, and right supramarginal gyrus than control subjects.
51 nal cortex thickness, hippocampal volume and supramarginal gyrus thickness demonstrated an area under
52 h inattention and impulsivity; additionally, supramarginal gyrus thickness mediated the association w
53 nother dataset, which previously yielded the supramarginal gyrus using a univariate adaptation-fMRI p
54                        In contrast, the left supramarginal gyrus was somewhat more specific to sequen
55                  In the left hemisphere, the supramarginal gyrus was thinner in both patients with MD
56 motor cortex) and sensory-motor integration (supramarginal gyrus) were unaffected by remifentanil.
57                             In addition, the supramarginal gyrus, which is densely connected to prefr
58 emotor cortex, pre- and postcentral gyri and supramarginal gyrus with minimal extension into auditory

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