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1 y in the regions of the left cuneus and left calcarine.
2 ied frontal, temporal, parietal, entorhinal, calcarine and cingulate cortex, putamen, and trigonal wh
5 rus was stronger than all other effects from calcarine and this effect showed a developmental increas
6 ons (midfrontal, inferior temporal, angular, calcarine, and hippocampal cortices), as 0 = none, 1 = m
7 ); bilateral precuneus, posterior cingulate, calcarine, and occipital-parietal cortex; and right rost
10 sing the optical fractionator method for the calcarine cortex and the opercular cortex separately.
11 cts showed that the mean ratio of caudate to calcarine cortex averaged 25:1 at 3 hr after injection (
13 erior cingulate cortex, globus pallidus, and calcarine cortex using the threshold-free cluster enhanc
21 ere similarly located near the fundus of the calcarine fissure, approximately 25 mm away from the mos
22 onnectivity to the left cuneus, right cuneus/calcarine fissure/precuneus, and left supramarginal gyru
23 M, -1.83% vs -0.32% per year [p = 0.008] for calcarine GM, -1.17% vs -0.67% per year [p = 0.02] for t
24 d atrophy of the occipital gray matter (GM), calcarine GM, and thalamus was seen in the AON cohort, a
25 re measured in a subject (G.Y.) with a large calcarine lesion that includes most of primary visual co
26 Is) than in control ROIs (superior parietal, calcarine, postcentral, central, and precentral cortices
29 in VGs in parts of the occipital cortex and calcarine sulcus and a larger BOLD signal in the cingula
31 lateral middle occipital gyrus and the right calcarine sulcus for unhealthy compared with healthy foo
32 plitude of the BOLD response in the anterior calcarine sulcus of early blind subjects correlated with
33 hat the medial extrastriate region above the calcarine sulcus projects mainly to the lateral pulvinar
35 lcus, the anterior and posterior rami of the calcarine sulcus, the cingulate and marginal sulci, and
37 early symmetrical halves with respect to the calcarine sulcus, with the dorsal halves representing lo
39 yrus for the auditory spelling task and from calcarine to fusiform gyrus for the visual spelling task
40 al) effect for the visual spelling task from calcarine to superior temporal gyrus was stronger than a
41 sted topological separations in the geniculo-calcarine tract consistent with tracer studies in animal
42 fy that nasotemporal inputs to opercular and calcarine V1 are unequal, with a consistent bias favorin
44 , 0.04), posterior frontal (variance, 0.05), calcarine (variance, 0.05), precentral (variance, 0.06),