<p>(<b>a–d</b>): The same flattened occipital representations from <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0047685#pone-0047685-g003" target="_blank">Fig 3</a>, overlaid with the activations obtained with the two functional contrasts (see colour key top right). Activations are shown thresholded at two different levels in each case. corr: Bonferroni corrected. The continuous black lines show the borders of retinotopic areas V1–V7 as defined by the polar angle maps. The dashed white and cyan lines show the definitions of area V6 based on the polar angle and eccentricity maps, respectively. The red line indicates the position of the parieto-occipital sulcus. The approximate location of the foveal confluence is ind...
<p>A map of response phase in the right hemisphere is shown on the folded pial surface of cortex (A)...
<p><i>A</i>: Schematic illustration of the Gabor stimuli used for retinotopic mapping: the central e...
<p>Results from the polar angle (A) and eccentricity mapping stimuli (B) on a flattened cortical sur...
<p>A) Medial view and B) unfolded patch of the subject's right occipital cortical surface show the p...
<p>Retinotopic maps overlaid on flattened representations of the dorsal portion of the occipital lob...
<p>Medio-posterior view on the inflated left occipital cortex of subject HP (A and B) and subject AK...
<p>Overview of group activation patterns (T-maps) for three tasks. The figure was split into panels ...
<p>Response phase is shown in color for all voxels within the functional field of view, without stat...
<p>The top panel shows the retinotopic eccentricity maps and the middle panel the retinotopic polar ...
<p>Activation maps show group activation from 9 participants of Group B on the group-averaged anatom...
<p>(<b>A</b>) The polar angle map, of a subject from our 10° dataset, shown on an inflated left hemi...
Retinotopic mapping is a key property of organization of occipital cortex, predominantly on the medi...
Using functional MRI, we characterized field sign maps of the occipital cortex and created three-dim...
<p>Flattened pseudo-color phase maps are used to visualize retinotopic maps for: a) JC_1041, b) JC_1...
<p>Functional activation maps for one subject showing the early retinotopic ventral (V1, V2, VP, and...
<p>A map of response phase in the right hemisphere is shown on the folded pial surface of cortex (A)...
<p><i>A</i>: Schematic illustration of the Gabor stimuli used for retinotopic mapping: the central e...
<p>Results from the polar angle (A) and eccentricity mapping stimuli (B) on a flattened cortical sur...
<p>A) Medial view and B) unfolded patch of the subject's right occipital cortical surface show the p...
<p>Retinotopic maps overlaid on flattened representations of the dorsal portion of the occipital lob...
<p>Medio-posterior view on the inflated left occipital cortex of subject HP (A and B) and subject AK...
<p>Overview of group activation patterns (T-maps) for three tasks. The figure was split into panels ...
<p>Response phase is shown in color for all voxels within the functional field of view, without stat...
<p>The top panel shows the retinotopic eccentricity maps and the middle panel the retinotopic polar ...
<p>Activation maps show group activation from 9 participants of Group B on the group-averaged anatom...
<p>(<b>A</b>) The polar angle map, of a subject from our 10° dataset, shown on an inflated left hemi...
Retinotopic mapping is a key property of organization of occipital cortex, predominantly on the medi...
Using functional MRI, we characterized field sign maps of the occipital cortex and created three-dim...
<p>Flattened pseudo-color phase maps are used to visualize retinotopic maps for: a) JC_1041, b) JC_1...
<p>Functional activation maps for one subject showing the early retinotopic ventral (V1, V2, VP, and...
<p>A map of response phase in the right hemisphere is shown on the folded pial surface of cortex (A)...
<p><i>A</i>: Schematic illustration of the Gabor stimuli used for retinotopic mapping: the central e...
<p>Results from the polar angle (A) and eccentricity mapping stimuli (B) on a flattened cortical sur...