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example:ft_realtime_hilbert [2018/10/21 15:09]
42.49.180.224 [Realtime neurofeedback application based on Hilbert phase estimation]
example:ft_realtime_hilbert [2017/08/17 11:21] (current)
127.0.0.1 external edit
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 ====== Realtime neurofeedback application based on Hilbert phase estimation ====== ====== Realtime neurofeedback application based on Hilbert phase estimation ======
  
-This page describes the neurofeedback application that was developed by Marco Rotonda for his MSc thesis **"Controllo volontario della sincronizzazione di fase intraemisferica nella banda gamma eeg mediante neurofeedback"** (Voluntary control of intrahemispheric phase sychronization in the EEG gamma band using neurofeedback).+This page describes the neurofeedback application that was developed by Marco Rotonda for his MSc thesis **"Controllo volontario della sincronizzazione di fase intraemisferica nella banda gamma eeg mediante neurofeedback"** (Voluntary control of intrahemispheric phase sychronization in the EEG gamma band using neurofeedback).
  
 The thesis (in Italian) which describes all details and the results is available {{:​example:​rt_hilbert:​rotonda_thesis_msc.pdf|here}}. The thesis (in Italian) which describes all details and the results is available {{:​example:​rt_hilbert:​rotonda_thesis_msc.pdf|here}}.
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 Basically there are 12 channels: 4 for EEG (I used F3-P3-F4-P4),​ 4 for the EOG, 4 for the EMG (front and neck). In this script, those are selected from the forty originally recorded channels you can find in the variable '​lab'​. ​ Basically there are 12 channels: 4 for EEG (I used F3-P3-F4-P4),​ 4 for the EOG, 4 for the EMG (front and neck). In this script, those are selected from the forty originally recorded channels you can find in the variable '​lab'​. ​
 The algorithm will care to take away both EOG and EMG artifacts. The algorithm will care to take away both EOG and EMG artifacts.
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 ===== Source code for realtime_hilbert ===== ===== Source code for realtime_hilbert =====
  
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 </​code>​ </​code>​
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