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DTSTART:20001029T030000
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BEGIN:VEVENT
UID:20260727T121643Z - 27002@eupp247
DTSTART;TZID=Europe/Berlin:20261013T150000
DTEND;TZID=Europe/Berlin:20261013T160000
CREATED:20260727T121643Z
DESCRIPTION:<a href="https://academy.ant-neuro.com/event/understanding-epil
 eptic-activity-propagation-through-multimodal-neuroimaging-95/register">Un
 derstanding Epileptic Activity Propagation Through Multimodal Neuroimaging
 </a>\nAbout the webinar This talk will present recent advances in understa
 nding epileptic activity propagation using multimodal neuroimaging. It wil
 l cover how EEG\, MEG\, MRI\, and source imaging can be integrated to reco
 nstruct the spatiotemporal dynamics of epileptic discharges and estimate e
 ffective brain connectivity. The presentation will discuss the clinical va
 lue of these approaches in identifying epileptogenic networks\, improving 
 presurgical evaluation\, and providing quantitative biomarkers to support 
 diagnosis\, prognosis\, and personalized treatment in drug-resistant epile
 psy. Meet the speakerDr. Margherita A.G. Matarrese Assistant Professor in 
 Biomedical Signal Processing Campus Bio-Medico University of Rome Dr. Marg
 herita A.G. Matarrese is an Assistant Professor in Biomedical Signal Proce
 ssing at Campus Bio-Medico University of Rome. Her research focuses on neu
 roengineering\, multimodal neuroimaging\, brain connectivity\, biomedical 
 signal processing\, and computational neuroscience. She received her Ph.D.
  in Biomedical Engineering from Campus Bio-Medico University of Rome\, dev
 eloping advanced methods for pediatric epilepsy using EEG\, MEG\, MRI\, an
 d source imaging. She has collaborated with Boston Children's Hospital\, C
 ook Children's Health Care System\, the University of Texas at Arlington\,
  and Aston University. Her work also spans artificial intelligence\, mathe
 matical modeling\, and network neuroscience. We look forward to welcoming 
 you to this informative session. Disclaimer: Any medical information provi
 ded during this webinar is intended solely as a general information servic
 e and should not be considered a substitute for advice from a registered p
 hysician or other qualified healthcare professional.
DTSTAMP:20260727T121643Z
SUMMARY:Understanding Epileptic Activity Propagation Through Multimodal Neu
 roimaging
X-ALT-DESC;FMTTYPE=text/html:<a href="https://academy.ant-neuro.com/event/u
 nderstanding-epileptic-activity-propagation-through-multimodal-neuroimagin
 g-95/register">Understanding Epileptic Activity Propagation Through Multim
 odal Neuroimaging</a>\nAbout the webinar This talk will present recent adv
 ances in understanding epileptic activity propagation using multimodal neu
 roimaging. It will cover how EEG\, MEG\, MRI\, and source imaging can be i
 ntegrated to reconstruct the spatiotemporal dynamics of epileptic discharg
 es and estimate effective brain connectivity. The presentation will discus
 s the clinical value of these approaches in identifying epileptogenic netw
 orks\, improving presurgical evaluation\, and providing quantitative bioma
 rkers to support diagnosis\, prognosis\, and personalized treatment in dru
 g-resistant epilepsy. Meet the speakerDr. Margherita A.G. Matarrese Assist
 ant Professor in Biomedical Signal Processing Campus Bio-Medico University
  of Rome Dr. Margherita A.G. Matarrese is an Assistant Professor in Biomed
 ical Signal Processing at Campus Bio-Medico University of Rome. Her resear
 ch focuses on neuroengineering\, multimodal neuroimaging\, brain connectiv
 ity\, biomedical signal processing\, and computational neuroscience. She r
 eceived her Ph.D. in Biomedical Engineering from Campus Bio-Medico Univers
 ity of Rome\, developing advanced methods for pediatric epilepsy using EEG
 \, MEG\, MRI\, and source imaging. She has collaborated with Boston Childr
 en's Hospital\, Cook Children's Health Care System\, the University of Tex
 as at Arlington\, and Aston University. Her work also spans artificial int
 elligence\, mathematical modeling\, and network neuroscience. We look forw
 ard to welcoming you to this informative session. Disclaimer: Any medical 
 information provided during this webinar is intended solely as a general i
 nformation service and should not be considered a substitute for advice fr
 om a registered physician or other qualified healthcare professional.
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