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Concurrent electrophysiology and optoacoustic tomography enable visualization of deep thalamocortical activity in an acute mouse model of focal epilepsy.

In: (Conference Proceedings, Optics and the Brain 2017, Optics in the Life Sciences Congress, 2–5 April 2017, San Diego, California United States). 2017. ( ; Part F76-BRAIN 2017)
DOI
Thalamocortical activity in epilepsy was studied in mice using an optoacoustic functional neuroimaging framework correlating hemodynamic responses with concurrent EEG-readings, demonstrating noninvasive real-time visualization of deep epileptic foci.
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Publication type Article: Conference contribution
Language english
Publication Year 2017
HGF-reported in Year 2017
ISSN (print) / ISBN 978-1-943580-25-5
Conference Title Conference Proceedings, Optics and the Brain 2017, Optics in the Life Sciences Congress
Conference Date 2–5 April 2017
Conference Location San Diego, California United States
Quellenangaben Volume: Part F76-BRAIN 2017 Issue: , Pages: , Article Number: , Supplement: ,
POF-Topic(s) 30205 - Bioengineering and Digital Health
Research field(s) Enabling and Novel Technologies
PSP Element(s) G-505590-001
Scopus ID 85039701531
Erfassungsdatum 2017-04-26