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> It is likely that the modulation of neuronal activity during perceptual grouping occurs in multiple visual areas.
For instance Goris et al. (2014) found that a stimulus-independent parameter can account for the super-Poissonian variability observed in multiple visual areas.
The boarders of multiple visual areas were demarcated as the convergence and divergence point in the phase map generated using the rotating fan-shaped stimulus.
These stereotyped waves of retinal spikes have recently been shown to coordinate patterned activity across multiple visual areas [ 4], where they are proposed to mediate the sculpting and refinement of retinotopic and eye-specific maps [ 3, 5].
This conflict also manifested in the seemingly counterintuitive functional connectivity pattern of enhanced functional connectivity to multiple unrelated areas of the frontal lobe with no apparent selectivity when larger seed areas of visual cortex are considered in the blind (Bock and Fine, 2014) despite the task-selective responses shown in multiple visual areas (Reich et al., 2012).
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Here, we suggest a mapping procedure designed to quantify spatial and functional properties of single positions at close proximity in multiple human visual areas.
Especially, there is convincing evidence for multiple domain specific "higher" visual areas in this region.
The responses were recorded by multiple electrodes in the primary visual areas and the synchronization of local field potentials across the electrodes were analyzed with a recent method derived from dynamical system theory.
In fMRI experiments responses to each of multiple stimuli can be isolated in retinotopic visual areas with high spatial resolution (e.g. McMains & Somers, 2004).
Clusters in bilateral PMd, contralateral SMA, ipsilateral PMv, anterior and posterior cingulate, and bilateral extrastriate visual areas were significant after correction for multiple tests (Table 1).
An effective connectivity analysis using dynamic causal modeling showed that high-order visual form engages higher visual areas that generate top-down signals, from multiple levels of the visual hierarchy.
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multiple visual thrills
multiple visual properties
multiple visual features
multiple clinical areas
multiple visual tests
multiple visual memories
multiple visual means
multiple visual strategies
multiple visual cues
multiple geographic areas
multiple visual stimuli
multiple visual representations
multiple visual targets
multiple visual elements
multiple overlapping areas
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