Giulio Bernardi, MD, PhD

2010-2015 MoMiLab University of Pisa, Pisa, Toscana, Italy 
 2012-2014 Center for sleep and consciousness University of Wisconsin, Madison, Madison, WI 
 2015-2016 CIRS Lausanne University Hospital 
 2018- MoMiLab IMT School for Advanced Studies Lucca 
"Giulio Bernardi"
Mean distance: 15.38 (cluster 6)


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Pietro Pietrini grad student 2008-2013
Giulio Tononi post-doc 2012-2014
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Castelnovo A, Lividini A, Bernardi G, et al. (2022) Sleep Power Topography in Children with Attention Deficit Hyperactivity Disorder (ADHD). Children (Basel, Switzerland). 9
Avvenuti G, Bernardi G. (2022) Local sleep: A new concept in brain plasticity. Handbook of Clinical Neurology. 184: 35-52
Avvenuti G, Bertelloni D, Lettieri G, et al. (2021) Emotion Regulation Failures Are Preceded by Local Increases in Sleep-like Activity. Journal of Cognitive Neuroscience. 33: 2342-2356
Bernardi G, Avvenuti G, Cataldi J, et al. (2021) Role of corpus callosum in sleep spindle synchronization and coupling with slow waves. Brain Communications. 3: fcab108
Betta M, Handjaras G, Leo A, et al. (2021) Cortical and subcortical hemodynamic changes during sleep slow waves in human light sleep. Neuroimage. 236: 118117
Imperatori LS, Cataldi J, Betta M, et al. (2020) Cross-participant prediction of vigilance stages through the combined use of wPLI and wSMI EEG functional connectivity metrics. Sleep
Avvenuti G, Handjaras G, Betta M, et al. (2020) Integrity of corpus callosum is essential for the cross-hemispheric propagation of sleep slow waves: a high-density EEG study in split-brain patients. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Berger M, Hirotsu C, Haba-Rubio J, et al. (2020) Risk factors of excessive daytime sleepiness in a prospective population-based cohort. Journal of Sleep Research. e13069
Lecci S, Cataldi J, Betta M, et al. (2020) EEG changes associated with subjective under- and overestimation of sleep duration. Sleep
Betta M, Handjaras G, Ricciardi E, et al. (2020) Quantifying peripheral sympathetic activations during sleep by means of an automatic method for pulse wave amplitude drop detection. Sleep Medicine. 69: 220-232
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