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We report the architecture and learning strategy of the module and characterize its performance by simulations in two situations of reaching by a linear arm with multiple degrees of freedom: (1) mapping of tactile and arm-related proprioceptive information, and (2) mapping of gaze and arm-related proprioceptive information.
Therefore, the extent that tactile perception arises from isomorphic mapping of tactile afferents onto the somatosensory cortex remains controversial.
What is more, the supposed primacy of the tactile sense in self-consciousness [28], [29] generates the prediction that whenever self-location is displaced, an associated change in the mapping of tactile sensations should also occur.
The present data show that the previously described [17], [18], [25], [27] changes in self-location and self-identification are - under certain experimental conditions - associated with changes in the CCE, and hence with changes in the mapping of tactile stimuli.
The present study reveals that systematic alterations in the mapping of tactile stimuli occur in the full body illusion, and thus establishes CCE magnitude as an online performance proxy for subjective changes in bodily self-consciousness.
These data reveal that systematic alterations in the mapping of tactile stimuli occur in a full body illusion and thus establish CCE magnitude as an online performance proxy for subjective changes in global bodily self-consciousness.
Similar(53)
Studies of early sensory cortex reported somatotopic maps of tactile inputs [24].
32 These nociceptive maps are highly aligned to maps of tactile input to the same digits, in each individual subject.
Our map of tactile acuity across the whole body follows a spatial pattern similar to that observed previously.
This possibility is supported by the high alignment of the fine-grained maps of tactile and nociceptive input to individual digits in the SI [ 4].
The group analysis contrasted the averaged left and right tactile activation between the blindfold and control groups, producing a random effects map of differential tactile activity.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com