Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/64378
Title: Patient specific hemodynamic response functions associated with interictal discharges recorded via simultaneous intracranial EEG-fMRI
Contributor(s): Beers, Craig A (author); Williams, Rebecca J  (author)orcid ; Gaxiola-Valdez, Ismael (author); Pittman, Daniel J (author); Kang, Anita T (author); Aghakhani, Yahya (author); Pike, G Bruce (author); Goodyear, Bradley G (author); Federico, Paolo (author)
Publication Date: 2015-12
DOI: 10.1002/hbm.23008
Handle Link: https://hdl.handle.net/1959.11/64378
Abstract: 

Simultaneous collection of scalp EEG and fMRI has become an important tool for studying the hemodynamic changes associated with interictal epileptiform discharges (IEDs) in persons with epilepsy, and has become a standard presurgical assessment tool in some centres. We previously demonstrated that performing EEG-fMRI using intracranial electrodes (iEEG-fMRI) is of low risk to patients in our research centre, and offers unique insight into BOLD signal changes associated with IEDs recorded from very discrete sources. However, it is unknown whether the BOLD response corresponding to IEDs recorded by iEEG-fMRI follows the canonical hemodynamic response. We therefore scanned 11 presurgical epilepsy patients using iEEG-fMRI, and assessed the hemodynamic response associated with individual IEDs using two methods: assessment of BOLD signal changes associated with isolated IEDs at the location of the active intracranial electrode, and by estimating subject-specific impulse response functions to isolated IEDs. We found that the hemodynamic response associated with the intracranially recorded discharges varied by patient and by spike location. The observed shape and timing differences also deviated from the canonical hemodynamic response function traditionally used in many fMRI experiments. It is recommended that future iEEG-fMRI studies of IEDs use a flexible hemodynamic response model when performing parametric tests to accurately characterize these data.

Publication Type: Journal Article
Source of Publication: Human Brain Mapping, 36(12), p. 5252-5264
Publisher: John Wiley and Sons, Inc
Place of Publication: United State of America
ISSN: 1097-0193
1065-9471
Fields of Research (FoR) 2020: 3209 Neurosciences
Peer Reviewed: Yes
HERDC Category Description: C1 Refereed Article in a Scholarly Journal
Appears in Collections:Journal Article
School of Science and Technology

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