Alfredo Colosimo
Sapienza University of Rome
194 Papers
1.8K Citations
Alfredo Colosimo is an academic researcher from Sapienza University of Rome. The author has contributed to research in topics: Cytochrome c oxidase & Cytochrome c. The author has an hindex of 42, co-authored 194 publications. Previous affiliations of Alfredo Colosimo include Regional Environmental Protection Agency & American Board of Legal Medicine.
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Papers
Adaptive Automation Triggered by EEG-Based Mental Workload Index: A Passive Brain-Computer Interface Application in Realistic Air Traffic Control Environment.
Pietro Aricò,Gianluca Borghini,Gianluca Di Flumeri,Alfredo Colosimo,Stefano Bonelli,Alessia Golfetti,Simone Pozzi,Jean-Paul Imbert,Géraud Granger,Raïlane Benhacene,Fabio Babiloni +10 more
TL;DR: A passive Brain-Computer Interface system able to trigger AA solutions integrated in a realistic Air Traffic Management (ATM) research simulator developed and hosted at ENAC demonstrated the effectiveness of the proposed pBCI system, since it enabled the AA mostly during the high-demanding conditions, inducing a reduction of the mental workload under which the ATCOs were operating.
Oxygen "pulsed" cytochrome c oxidase: functional properties and catalytic relevance
TL;DR: Both the pre-steady-state events and the steady-state kinetics of cytochrome oxidase are found to be different in the two cases, showing that the product of the reaction of fully reduced oxidase with O2 (pulsed oxidase) is functionally different from the oxidase as prepared (resting oxidase).
194
Cortical functional connectivity networks in normal and spinal cord injured patients: Evaluation by graph analysis
Fabrizio De Vico Fallani,Laura Astolfi,Febo Cincotti,Donatella Mattia,Maria Grazia Marciani,Serenella Salinari,Jürgen Kurths,Shangkai Gao,Andrzej Cichocki,Alfredo Colosimo,Fabio Babiloni +10 more
TL;DR: The structure of cortical connectivity during the attempt to move a paralyzed limb by a group of spinal cord injured (SCI) patients suggests a sort of compensative mechanism as local response to the alteration in their MIF areas, which is probably due to the indirect effects of the spinal injury.
A re-examination of the reactions of cyanide with cytochrome c oxidase
TL;DR: Computer fitting of the experimentally obtained data to the kinetic predictions given by this model indicate that the cyanide-sensitive form of the enzyme binds the ligand with combination constants in excess of 10(6) M-1 X s-1 and with KD values of 50 nM or less.
155
Passive BCI in Operational Environments: Insights, Recent Advances, and Future Trends
Pietro Aricò,Gianluca Borghini,Gianluca Di Flumeri,Nicolina Sciaraffa,Alfredo Colosimo,Fabio Babiloni +5 more
TL;DR: Despite recent innovations on algorithms and neurotechnology, pBCI systems are not completely ready to enter the market yet, mainly due to limitations of the EEG electrodes technology, and algorithms reliability and capability in real settings.