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Oxytocin reduced activation in early visual cortex and dorsal-stream motion processing regions for the social > size contrast, indicating reduced activity related to social attention.
Motion processing regions apart from V5+/MT+ are still relatively poorly understood.
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The human analog of macaque motion processing area MT has been called V5 or human hMT+.
Most models of the human visual system argue that higher-order motion-processing cortical regions receive their inputs only via the primary visual cortex (striate cortex), rather than also via direct projections from the thalamus that bypass primary visual cortex.
In human imaging studies, the most significant activations related to motion processing have been found in the lingual region (ventral V3), in V3A, in the lateral occipital region (LOS), in the MT+ complex and in the intraparietal sulcus (IPS) of the posterior parietal cortex [cf. 1].
The role that the detection of occlusion regions might play for motion processing is not yet clear.
Moreover, after such experience has been acquired, brain regions involved in mediating the aesthetic response shift from subcortical regions associated with dopaminergic reward processing to posterior temporal regions involved in multisensory integration, emotion, and biological motion processing.
We first assessed TMS responses in area V5/MT since this region is critically important in visual motion processing (Zeki 1974; Born and Bradley 2005).
Animal and human studies have suggested that posterior temporal, parietal, and frontal regions are specifically involved in auditory spatial (location and motion) processing, forming a putative dorsal "where" pathway.
Several neuroimaging studies have shown that migraineurs exhibit greater activation of the visual cortex and motion sensitive temporal cortical regions and exhibit atypical responses to visual stimulation in visual motion processing areas [38 40].
Motion processing starts at the early stage of primary visual area V1.
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