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1 ) were in the anterior temporal lobe and the precentral gyrus.
2 ercularis, and the junction with the ventral precentral gyrus.
3 rtex in and near the Sylvian fissure and the precentral gyrus.
4 pounds (Cho) ratios were calculated from the precentral gyrus.
5  in dorsolateral prefrontal cortex and right precentral gyrus.
6 n the left ventromedial PFC (vmPFC) and left precentral gyrus.
7 al insula, bilateral dorsal caudate and left precentral gyrus.
8          The fraction of pixels in the right precentral gyrus above a confidence level of 95% for cor
9  smaller fraction of the pixels in the right precentral gyrus above the confidence level.
10 d increases in ECN connectivity in the right precentral gyrus and decreases in DMN connectivity in th
11 elated positively with RSFC between the left precentral gyrus and other motor regions, and between Br
12 , and dorsal cortical areas (checking); left precentral gyrus and right orbitofrontal cortex (hoardin
13 n cortical areas were identified between the precentral gyrus and the anterior bank of the intraparie
14 anxiety with cortical thickness in bilateral precentral gyrus and the dorsolateral prefrontal cortex.
15 ing in the precentral sulcus, connecting the precentral gyrus and the SMA; (2) U-fibres running in th
16 egions (e.g., in the caudate, cingulate, and precentral gyrus) and decreased activation in the insula
17 previously, such as parafascicular thalamus, precentral gyrus, and dentate nucleus of the cerebellum.
18 ons, not seen in normals, in fusiform gyrus, precentral gyrus, and intra-parietal sulcus.
19 gulate cortex with supplementary motor area, precentral gyrus, and postcentral gyrus.
20 r activation in the cuneus, parietal lobule, precentral gyrus, and superior temporal gyrus.
21 aged the superior frontal and parietal gyri, precentral gyrus, and the caudate.
22 ent conditions namely in the left hemisphere precentral gyrus (BA 4), the left hemisphere superior pa
23 precentral gyrus (BA 9) on the left, and the precentral gyrus (BA 6) and cerebellum bilaterally.
24 tex (Brodmann area [BA] 22) bilaterally, the precentral gyrus (BA 9) on the left, and the precentral
25 ior temporal and middle occipital gyri, left precentral gyrus, bilateral opercular part of the inferi
26 ulate cortex (P < .001) and a cluster in the precentral gyrus bilaterally (P = .004).
27 ead rotation was observed bilaterally in the precentral gyrus, both medial and lateral to the hand ar
28 herapy in the right prefrontal cortex (right precentral gyrus [Brodmann's area 9], inferior frontal g
29 11)C-CNS 5161 uptake in caudate, putamen and precentral gyrus compared to the patients without dyskin
30 RI), that a region of the medial wall of the precentral gyrus consistently activates during both volu
31 ate, right superior temporal gyrus and right precentral gyrus during psychography compared to their n
32 al gyrus with high correlation with the left precentral gyrus for the finger-tapping state versus the
33                                       In the precentral gyrus from amyotrophic lateral sclerosis samp
34 ignificantly compared to the activity in the precentral gyrus from control samples (22.7 +/- 0.5 nmol
35 atched on reading abilities, with only right precentral gyrus GMV surviving this second analysis.
36 ared with passive movements, although in the precentral gyrus, hand, elbow, and shoulder movements sh
37 l area 6VR, in the most anterior part of the precentral gyrus, has strong connections with the rostra
38 electrically excitable cortex located on the precentral gyrus, including cortex sometimes considered
39 nvolvement of the brainstem and the inferior precentral gyrus (IPCG).
40  primary motor cortical region in the caudal precentral gyrus is not connected with the posterior par
41        These findings suggest that the right precentral gyrus merges oculomotor and somatomotor space
42 significantly less gray matter volume in the precentral gyrus, middle and superior frontal gyri, fron
43 nia patients exhibited decreased ReHo in the precentral gyrus, middle occipital gyrus, and posterior
44 f an association between hand preference and precentral gyrus-morphology in chimpanzees (Pan troglody
45          Neurons in a restricted zone in the precentral gyrus of macaque monkeys respond to tactile,
46                 We examined samples from the precentral gyrus of the cerebral cortex, a region affect
47 ap study identified the superior part of the precentral gyrus of the insula (in the anterior insula)
48  that included a discrete region of the left precentral gyrus of the insula, a cortical area beneath
49 sula, anterior insula or superior tip of the precentral gyrus of the insula.
50 talase were not significantly altered in the precentral gyrus or cerebellar cortex in the patient sam
51 c masks of the superior frontal gyrus (SFG), precentral gyrus (PcG), middle frontal gyrus (MFG), orbi
52 elated to hand velocity in the contralateral precentral gyrus, postcentral gyrus, and inferior pariet
53 , are represented as motor primitives in the precentral gyrus (PrG).
54  posterior inferior frontal gyrus (PIFG) and precentral gyrus (PrG); the impairment was immediately r
55 s, frontal inferior operculum, Heschl gyrus, precentral gyrus, rolandic operculum, and superior and i
56 rality in the medial superior frontal gyrus, precentral gyrus, Rolandic operculum, superior parietal
57 This sound-related somatotopic activation in precentral gyrus shows that, during speech perception, s
58 ally, however, distinct motor regions in the precentral gyrus sparked by articulatory movements of th
59 oca's region) and the ventral portion of the precentral gyrus (speech motor cortex) resulted in the m
60 ngulate, gyrus rectus, orbitofrontal cortex, precentral gyrus, superior frontal cortex, middle fronta
61 ildren had a stronger activation in the left precentral gyrus than did adults in response to unhealth
62 kening relative to HR-well subjects and left precentral gyrus thickening relative to HR-well and HC i
63 mproving behaviour, while hypertrophy in the precentral gyrus was associated with declining behaviour
64 e level of 95% for correlation with the left precentral gyrus was calculated for each subject.
65                                 Bilaterally, precentral gyrus was most frequently activated (82%) fol
66                              Activity in the precentral gyrus was related to affective empathy.
67 et regions (cLBP study, thalamus; ALS study, precentral gyrus) was normalized with the SUV from candi
68 he left pars opercularis, extending into the precentral gyrus, was activated to a greater extent by d
69 d pixels to a region of interest in the left precentral gyrus were calculated.
70               Increases in blood flow in the precentral gyrus were correlated with increases in react
71 with low-ED cues in the insula, declive, and precentral gyrus were negatively related to appetitive t
72 hout special foot skill mainly activated the precentral gyrus, which differed from those with more ad
73 tations of rules from both levels except for precentral gyrus, which represented only low-level rule
74  reductions in the left inferior frontal and precentral gyrus, which were greater in HR-well subjects
75                    Greater FA in the SCR and precentral gyrus white matter were associated with bette
76          A plot of the fraction of the right precentral gyrus with high correlation with the left pre

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