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김성필

Kim, Sung-Phil
Brain-Computer Interface Lab.
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Decoding pressure stimulation locations on the fingers from human neural activation patterns

Author(s)
Kim, JunsukChung, Yoon GiChung, Soon-CheolBuelthoff, Heinrich HKim, Sung-Phil
Issued Date
2016-11
DOI
10.1097/WNR.0000000000000683
URI
https://scholarworks.unist.ac.kr/handle/201301/20585
Fulltext
https://insights.ovid.com/article/00001756-201611010-00008
Citation
NEUROREPORT, v.27, no.16, pp.1232 - 1236
Abstract
In this functional MRI study, we investigated how the human brain activity represents tactile location information evoked by pressure stimulation on fingers. Using the searchlight multivoxel pattern analysis, we looked for local activity patterns that could be decoded into one of four stimulated finger locations. The supramarginal gyrus (SMG) and the thalamus were found to contain distinct multivoxel patterns corresponding to individual stimulated locations. In contrast, the univariate general linear model analysis contrasting stimulation against resting phases for each finger identified activations mainly in the primary somatosensory cortex (S1), but not in SMG or in thalamus. Our results indicate that S1 might be involved in the detection of the presence of pressure stimuli, whereas the SMG and the thalamus might play a role in identifying which finger is stimulated. This finding may provide additional evidence for hierarchical information processing in the human somatosensory areas.
Publisher
LIPPINCOTT WILLIAMS & WILKINS
ISSN
0959-4965
Keyword (Author)
pressure stimulusfunctional MRIhierarchical somatosensory processingmultivoxel pattern analysis
Keyword
SOMATOSENSORY CORTEXINFORMATIONREPRESENTATIONSSERIALAREAS

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