Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Photography of the experimental setup: (1) Subject wearing an EEG cap with functional.

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Volume 27, Issue 9, Pages (May 2017)
John T. Serences, Geoffrey M. Boynton  Neuron 
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Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Photography of the experimental setup: (1) Subject wearing an EEG cap with functional near-infrared spectroscopy (fNIRS) detectors and sources; (2) subject’s hand inside the black paperboard covered by a black drapery being filmed by (3) a web-cam inside the black paperboard; (4) visual feedback the subject gets of his hand, in this case mirror-like illusion (MIR) on (5) a precuneus (PC) monitor. Not in the picture: control PCs. Figure Legend: From: Effect of a mirror-like illusion on activation in the precuneus assessed with functional near-infrared spectroscopy J. Biomed. Opt. 2013;18(6): doi: /1.JBO

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Display of optode positions, measurement channels (numbered in green), including main EEG positions from the standard 10–20 system (white labels). A number of fNIRS sources are at the same location as main standard EEG position. Figure Legend: From: Effect of a mirror-like illusion on activation in the precuneus assessed with functional near-infrared spectroscopy J. Biomed. Opt. 2013;18(6): doi: /1.JBO

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Left: Activation foci from previous imaging studies projected onto the surface of a standardized brain for (a) mirror effect in occipito- parietal area, and (b) movement effect in precentral area. Right: Channels chosen as regions of interest (ROI) for further statistical analysis in the area of the PC (a) and precentral areas (b). Figure Legend: From: Effect of a mirror-like illusion on activation in the precuneus assessed with functional near-infrared spectroscopy J. Biomed. Opt. 2013;18(6): doi: /1.JBO

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Time courses averaged over all subjects (n=20) of the PC- (a, b) and M1-ROIs (c, d), contra- (a, c) and ipsilateral (b, d) to the moving hand. The duration of stimulus presentation is shaded in gray. HbO is presented in red, while HbR is coded in blue. Time courses have error bars with standard error of the mean. Figure Legend: From: Effect of a mirror-like illusion on activation in the precuneus assessed with functional near-infrared spectroscopy J. Biomed. Opt. 2013;18(6): doi: /1.JBO

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Mean beta values and differences, and their corresponding standard errors at the PC-ROI (top row, a–c) and M1-ROI (bottom row, d–f). Left column (a+d): mean beta values for HbO of the ipsi- and contralateral hemisphere for the MIR and NOR conditions; middle column (b+e): mean beta values for HbR of the ipsi- and contralateral hemisphere for the MIR and NOR condition; right column (c+f): mean interhemispheric differences in the MIR and NOR conditions for HbO and HbR (multiplied by −1). Note that, in the figures of the right column, values >0 indicate activation in the contralateral > ipsilateral hemisphere, and values contralateral. Figure Legend: From: Effect of a mirror-like illusion on activation in the precuneus assessed with functional near-infrared spectroscopy J. Biomed. Opt. 2013;18(6): doi: /1.JBO

Date of download: 6/28/2016 Copyright © 2016 SPIE. All rights reserved. Effect sizes for the MIR for channels in the hemispheres ipsilateral (left hemisphere) and contralateral (right hemisphere) to the moving hand (top row: HbO, bottom row: HbR, view from occipital). Figure Legend: From: Effect of a mirror-like illusion on activation in the precuneus assessed with functional near-infrared spectroscopy J. Biomed. Opt. 2013;18(6): doi: /1.JBO