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- W2010148086 abstract "When we sense a touch, our brains take account of our current limb position to determine the location of that touch in external space [1Azañón E. Soto-Faraco S. Changing reference frames during the encoding of tactile events.Curr. Biol. 2008; 18: 1044-1049Abstract Full Text Full Text PDF PubMed Scopus (163) Google Scholar, 2Azañón E. Longo M.R. Soto-Faraco S. Haggard P. The posterior parietal cortex remaps touch into external space.Curr. Biol. 2010; 20: 1304-1309Abstract Full Text Full Text PDF PubMed Scopus (151) Google Scholar]. Here we show that changes in the way the brain processes somatosensory information in the first year of life underlie the origins of this ability [3Bremner A.J. Mareschal D. Lloyd-Fox S. Spence C. Spatial localization of touch in the first year of life: Early influence of a visual spatial code and the development of remapping across changes in limb position.J. Exp. Psychol. Gen. 2008; 137: 149-162Crossref PubMed Scopus (79) Google Scholar]. In three experiments we recorded somatosensory evoked potentials (SEPs) from 6.5-, 8-, and 10-month-old infants while presenting vibrotactile stimuli to their hands across uncrossed- and crossed-hands postures. At all ages we observed SEPs over central regions contralateral to the stimulated hand. Somatosensory processing was influenced by arm posture from 8 months onward. At 8 months, posture influenced mid-latency SEP components, but by 10 months effects were observed at early components associated with feed-forward stages of somatosensory processing. Furthermore, sight of the hands was a necessary pre-requisite for somatosensory remapping at 10 months. Thus, the cortical networks [4Graziano M.S.A. Progress in understanding spatial coordinate systems in the primate brain.Neuron. 2006; 51: 7-9Abstract Full Text Full Text PDF PubMed Scopus (18) Google Scholar] underlying the ability to dynamically update the location of a perceived touch across limb movements become functional during the first year of life. Up until at least 6.5 months of age, it seems that human infants’ perceptions of tactile stimuli in the external environment are heavily dependent upon limb position." @default.
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- W2010148086 date "2014-06-01" @default.
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- W2010148086 title "The Neural Basis of Somatosensory Remapping Develops in Human Infancy" @default.
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- W2010148086 doi "https://doi.org/10.1016/j.cub.2014.04.004" @default.
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