Publikation: Alpha band oscillations correlate with illusory self-location induced by virtual reality
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Neuroscience of the self has focused on high-level mechanisms related to language, memory or imagery of the self. However, recent evidence suggests that low-level mechanisms such as multisensory and sensorimotor integration may play a fundamental role in self-related processing. Here we used virtual reality technology and visuo-tactile conflict to study such low-level mechanisms and manipulate where participants experienced their self to be localized (self-location). Frequency analysis and electrical neuroimaging of co-recorded high-resolution electroencephalography revealed body-specific alpha band power modulations in bilateral sensorimotor cortices. Furthermore, alpha power in the medial prefrontal cortex (mPFC) was correlated with the degree of experimentally manipulated self-location. We argue that these alpha oscillations in sensorimotor cortex and mPFC reflect self-location as manipulated through multisensory conflict.
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LENGGENHAGER, Bigna, Pär HALJE, Olaf BLANKE, 2011. Alpha band oscillations correlate with illusory self-location induced by virtual reality. In: European Journal of Neuroscience (EJN). Wiley-Blackwell. 2011, 33(10), pp. 1935-1943. ISSN 0953-816X. eISSN 1460-9568. Available under: doi: 10.1111/j.1460-9568.2011.07647.xBibTex
@article{Lenggenhager2011-05Alpha-56850, year={2011}, doi={10.1111/j.1460-9568.2011.07647.x}, title={Alpha band oscillations correlate with illusory self-location induced by virtual reality}, number={10}, volume={33}, issn={0953-816X}, journal={European Journal of Neuroscience (EJN)}, pages={1935--1943}, author={Lenggenhager, Bigna and Halje, Pär and Blanke, Olaf} }
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