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1 ot correlate with leftward laterality of the planum temporale.
2 ctors and the asymmetry of the length of the planum temporale.
3 abnormalities within the caudate nucleus and planum temporale.
4 itory areas: primary auditory cortex and the planum temporale.
5 tion between the two types of stimuli in the planum temporale.
6 temporal gyrus, Heschl's gyrus (HG), and the planum temporale.
7 erior temporal gyrus: Heschl's gyrus and the planum temporale.
8 right Heschl's gyrus or in the right or left planum temporale.
9 ent identification of Heschl's gyrus and the planum temporale.
10 ex, in parietal and frontal lobes and in the planum temporale.
11 ate gyri, posterior supramarginal gyrus, and planum temporale.
12 tic-lexical network, which also includes the planum temporale.
13 tively), smaller gray matter volumes of left planum temporale (21.0% relative to both), and a smaller
14 volume was significantly reduced in the left planum temporale (28.2%) in schizophrenic patients compa
15 ime in the left Heschl gyrus (6.9%) and left planum temporale (7.2%) compared with patients with firs
16 and left hemisphere size predominance of the planum temporale, a language area of the human brain, ar
17 conclude that bilateral hippocampal and left planum temporale abnormalities are present near the onse
19 ationship between rightward asymmetry of the planum temporale and atypical language (R = 0.70, P < 0.
24 ty only, were significantly increased in the planum temporale and posterior superior temporal gyrus c
25 ior planum polare) and posterior "where" (in planum temporale and posterior superior temporal gyrus)
30 l gyrus and adjacent anterior angular gyrus, planum temporale, and posterior superior temporal gyrus.
31 rus of the inferior parietal lobule, and the planum temporale are brain regions that play a critical
39 ed a reversal of the left greater than right planum temporale asymmetry found in normal controls.
41 ychotic language disorder predicted abnormal planum temporale asymmetry in the adolescents with schiz
43 anum temporale gray matter and a reversal of planum temporale asymmetry, which may underlie an impair
44 ntary and pre-supplementary motor areas, and planum temporale), b) domain-general creative-ideation r
45 whether the superior temporal gyrus and the planum temporale, both parts of the anatomic substrate f
48 sures of the superior temporal gyrus and the planum temporale for 17 community-dwelling patients with
49 condary auditory cortices (planum polare and planum temporale) for nonperiodic than periodic sequence
50 e measured gray matter volume underlying the planum temporale from high spatial resolution magnetic r
51 atients with schizophrenia have reduced left planum temporale gray matter and a reversal of planum te
53 ive volume reduction in the Heschl gyrus and planum temporale gray matter in patients with first-epis
54 with first-episode schizophrenia showed left planum temporale gray matter volume reduction and bilate
57 tions were also tested on asymmetries of the planum temporale, Heschl's gyrus, and superior temporal
59 bilaterally in the Heschl gyrus and in left planum temporale in patients with first-episode schizoph
60 gray matter volumes of the Heschl gyrus and planum temporale in patients with first-episode schizoph
62 = 0.70, P < 0.0001); patients with a longer planum temporale in the right (unaffected) hemisphere we
65 It is increasingly recognized that the human planum temporale is not a dedicated language processor,
66 contains the auditory cortex, including the planum temporale, is the most consistently altered neoco
68 pants recruited left superior temporal gyrus/planum temporale, matching the pattern observed in Chine
72 terior superior temporal sulcus (RTPJ/pSTS), planum temporale/parietal operculum (PT/PO), and posteri
74 l posterior network of activation, including planum temporale (PT) and parieto-temporal operculum (PT
75 ffin-embedded, 10-mum-thick section from the planum temporale (PT) of each hemisphere was prepared fr
79 auditory cortex posterior to Heschl's gyrus [planum temporale (PT)] and inferior parietal lobule.
80 , but the size of the right, contra-lesional planum temporale region may reflect a 'reserve capacity'
81 eview of 34 MRI and 5 post-mortem studies of planum temporale reveals that half of those measuring re
82 ver, the specificity of the Heschl gyrus and planum temporale structural abnormalities to schizophren
84 This study extends the finding of reversed planum temporale surface area asymmetry in schizophrenic
85 triking reversal of the normal asymmetry for planum temporale surface area in the male and female sch
89 l gyrus, which includes the Heschl gyrus and planum temporale, the latter being an important substrat
91 ificantly stronger feedback connections from planum temporale to primary auditory cortex bilaterally,
96 schizophrenia had significantly smaller left planum temporale volume than controls (20.0%) and patien
97 yndrome, neither superior temporal gyrus nor planum temporale volume was significantly correlated wit
98 s had smaller bilateral hippocampal and left planum temporale volumes than the comparison subjects.
99 relations of the superior temporal gyrus and planum temporale volumes with performance on tests of la
100 icolumn asymmetry of both Heschl's gyrus and planum temporale was correlated with axon number in the
101 , and the gray matter thickness of the right planum temporale was only 50% of the comparison value.
104 Bilaterally, gray matter volume beneath the planum temporale was smaller in the schizophrenic patien
105 o difference in the activation levels in the planum temporale when comparing motion and stationary co
106 asymmetry in dyslexia similar to that of the planum temporale, which in our view reflects abnormality
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