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model of human working memory. During the project, we will follow an intertwined model-experimental approach. First, we will use electroencephalography (EEG) experiments to investigate the neural basis
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functional MRI experiments using a unique setup in Maastricht to investigate brain response. Simultaneous TMS-EEG experiments with epilepsy patients at Kempenhaeghe to monitor brain activity before and after
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epilepsy treatments. Specifically, your work will involve: Simultaneous TMS and functional MRI experiments using a unique setup in Maastricht to investigate brain response. Simultaneous TMS-EEG experiments
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will contribute to the development of experimental designs, run behavioral experiments and collect and analyze intracranial EEG data which provide a unique opportunity to get direct access to hippocampal
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collect and analyze intracranial EEG data which provide a unique opportunity to get direct access to hippocampal mnemonic signals. In addition, you will spearhead the reporting on the obtained findings via
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analyses using your own data and large public data resources and integrate your findings with clinical data (symptoms, EEG, etc). Finally, you will contribute to other activities of the STXBP1 team
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human cognition In all PhD projects we will use state-of-the art simultaneous TMS-fMRI-EEG measurements to probe the brain with TMS at specific oscillatory states and measure the subsequent network
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, including EEG. You will design and optimize experimental tasks, collect and analyze behavioral and neural data, and adapt computational models to capture variability between individuals. What you will be
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working memory PHD 3: The dynamic interplay between brain and bodily rhythms in human cognition In all PhD projects we will use state-of-the art simultaneous TMS-fMRI-EEG measurements to probe the brain
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addition to these core activities, you will perform bioinformatic analyses using your own data and large public data resources and integrate your findings with clinical data (symptoms, EEG, etc). Finally, you will