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  1.  5
    Identifying the neural signature of thermic comfort sensation: neuroergonomic evaluation of a new ventilating system integrated in car seat.Audrey Breton, Vincenzo Ronca, Anne Isabelle Mallet-Dacosta, Florent Longatte, Romaric Servajean-Hilst & Yohan Attal - 2018 - Frontiers in Human Neuroscience 12.
  2.  6
    Tracking the effect of a new massage system integrated in automotive seat on relaxation feeling: an electrophysiological study.Audrey Breton, Vincenzo Ronca, Samuel Baudu, Emmanuelle Brunet, Romaric Servajean-Hilst, Thibaud Dumas & Yohan Attal - 2018 - Frontiers in Human Neuroscience 12.
  3.  5
    EEG-Based Index for Timely Detecting User’s Drowsiness Occurrence in Automotive Applications.Gianluca Di Flumeri, Vincenzo Ronca, Andrea Giorgi, Alessia Vozzi, Pietro Aricò, Nicolina Sciaraffa, Hong Zeng, Guojun Dai, Wanzeng Kong, Fabio Babiloni & Gianluca Borghini - 2022 - Frontiers in Human Neuroscience 16.
    Human errors are widely considered among the major causes of road accidents. Furthermore, it is estimated that more than 90% of vehicle crashes causing fatal and permanent injuries are directly related to mental tiredness, fatigue, and drowsiness of the drivers. In particular, driving drowsiness is recognized as a crucial aspect in the context of road safety, since drowsy drivers can suddenly lose control of the car. Moreover, the driving drowsiness episodes mostly appear suddenly without any prior behavioral evidence. The present (...)
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    Evaluation of a New Lightweight EEG Technology for Translational Applications of Passive Brain-Computer Interfaces.Nicolina Sciaraffa, Gianluca Di Flumeri, Daniele Germano, Andrea Giorgi, Antonio Di Florio, Gianluca Borghini, Alessia Vozzi, Vincenzo Ronca, Fabio Babiloni & Pietro Aricò - 2022 - Frontiers in Human Neuroscience 16.
    Technologies like passive brain-computer interfaces can enhance human-machine interaction. Anyhow, there are still shortcomings in terms of easiness of use, reliability, and generalizability that prevent passive-BCI from entering real-life situations. The current work aimed to technologically and methodologically design a new gel-free passive-BCI system for out-of-the-lab employment. The choice of the water-based electrodes and the design of a new lightweight headset met the need for easy-to-wear, comfortable, and highly acceptable technology. The proposed system showed high reliability in both laboratory and (...)
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