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Mader, Marius Marc-Daniel ; Deuter, Daniel ; Sauvigny, Thomas ; Borchert, Patrick ; Faizy, Tobias D. ; Bester, Maxim ; Westphal, Manfred ; Rosengarth, Katharina ; Schmidt, Nils O. ; Sedlacik, Jan ; Dührsen, Lasse

Diffusion tensor imaging changes in patients with glioma-associated seizures

Mader, Marius Marc-Daniel, Deuter, Daniel , Sauvigny, Thomas, Borchert, Patrick, Faizy, Tobias D., Bester, Maxim, Westphal, Manfred, Rosengarth, Katharina, Schmidt, Nils O. , Sedlacik, Jan and Dührsen, Lasse (2022) Diffusion tensor imaging changes in patients with glioma-associated seizures. Journal of Neuro-Oncology 160 (2), pp. 311-320.

Date of publication of this fulltext: 29 Feb 2024 12:58
Article
DOI to cite this document: 10.5283/epub.57604


Abstract

Introduction Structural white matter changes associated with certain epilepsy subtypes have been demonstrated using diffusion tensor imaging (DTI). This observational study aims to identify potential water diffusion abnormalities in glioma patients with associated seizures. Methods Two cohorts from two centers were analyzed independently: (A) Prospectively recruited patients diagnosed with ...

Introduction
Structural white matter changes associated with certain epilepsy subtypes have been demonstrated using diffusion tensor imaging (DTI). This observational study aims to identify potential water diffusion abnormalities in glioma patients with associated seizures.

Methods
Two cohorts from two centers were analyzed independently: (A) Prospectively recruited patients diagnosed with glioma who received preoperative DTI to measure mean diffusivity (MD) and fractional anisotropy (FA) in regions-of-interest (ROIs) including the marginal tumor zone (TU), adjacent peritumoral white matter as well as distant ipsilateral and contralateral white matter and cortex. Data were compared between patients with and without seizures and tested for statistical significance. (B) A retrospective cohort using an alternative technical approach sampling ROIs in contrast enhancement, necrosis, non-enhancing tumor, marginal non-enhancing tumor zone, peritumoral tissue, edema and non-tumorous tissue.

Results
(A) The prospective study cohort consisted of 23 patients with 12 (52.2%) presenting with a history of seizures. There were no significant seizure-associated differences in MD or FA for non-tumor white matter or cortical areas. MD-TU was significantly lower in patients with seizures (p = 0.005). (B) In the retrospective cohort consisting of 46 patients with a seizure incidence of 50.0%, significantly decreased normalized values of MD were observed for non-enhancing tumor regions of non-glioblastoma multiforme (GBM) cases in patients with seizures (p = 0.022).

Conclusion
DTI analyses in glioma patients demonstrated seizure-associated diffusion restrictions in certain tumor-related areas. No other structural abnormalities in adjacent or distant white matter or cortical regions were detected.



Involved Institutions


Details

Item typeArticle
Journal or Publication TitleJournal of Neuro-Oncology
Publisher:Springer
Open Access Type:DEAL (Springer) - Non UR
Place of Publication:NEW YORK
Volume:160
Number of Issue or Book Chapter:2
Page Range:pp. 311-320
Date7 November 2022
InstitutionsMedicine > Lehrstuhl für Neurochirurgie
Identification Number
ValueType
10.1007/s11060-022-04139-9DOI
KeywordsWHITE-MATTER ABNORMALITIES; LOW-GRADE GLIOMA; EX-VIVO; ROBUST; IDH1; EPILEPSY; OPTIMIZATION; REGISTRATION; MUTATIONS; ACCURATE; Glioma; Seizures; Diffusion Tensor Imaging; Humans; White Matter; Epilepsy
Dewey Decimal Classification600 Technology > 610 Medical sciences Medicine
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgYes
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-576042
Item ID57604

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