bioRxiv · 10.1101/206797
Tracking Individual Differences in Perception by TMS-EEG Intrinsic Effective Connectivity
Abstract
Non-invasive human electroencephalography (EEG) coupled with transcranial magnetic stimulation (TMS) is currently used to measure coarse stimulus-response relationships in brain physiology during behavior. However, with key modifications, the TMS-EEG technique holds even greater promise for monitoring fine-scale neural signatures of human behavior. Here, we demonstrate that a novel TMS-EEG co-registration technique can dynamically monitor individual human variation in perception based solely on EEG resting-state intrinsic effective connectivity probed by TMS-based phase resetting of ongoing activity. We used a bistable stimulus task, where the percept is perceived as either horizontal or vertical apparent motion, to record gamma band interhemispheric integration of information. Fine-grained inter-individual behavioral differences in horizontal motion bias could be measured by tracking resting-state gamma-band effective connectivity from right hMT+ to left hMT+. Thus, our method of triggering intrinsic resting-state effective connectivity in oscillatory dynamics can monitor individual differences in perception via the long-range integration of information. This technique will be useful for the manipulative dissection of individual-scale human cognition mediated by neural dynamics and may also expand neurofeedback approaches.
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Mizuno, Y., Kawasaki, M., Shimono, M., Miniussi, C., Okazaki, Y. O., Ueno, K., Suzuki, C., Asamizuya, T., Cheng, K., Kitajo, K.. 2017-10-20. Tracking Individual Differences in Perception by TMS-EEG Intrinsic Effective Connectivity. https://doi.org/10.1101/206797
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