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Hippocampal abnormality and response to vagus nerve stimulation in epilepsy

Title: Hippocampal abnormality and response to vagus nerve stimulation in epilepsy
Authors: Clifford HJ; Fenske S; Horsley J; Simpson C; Evans N; Wang Y; da Silva Costa T; Thomas RH; Iqbal S; Elliott CA; Duncan JS; Taylor PN
Source: Epilepsia, 2025
Publisher Information: John Wiley and Sons Inc
Publication Year: 2025
Collection: Newcastle University Library ePrints Service
Description: © 2025 The Author(s). Epilepsia published by Wiley Periodicals LLC on behalf of International League Against Epilepsy.Vagus nerve stimulation (VNS) reduces seizure frequency and severity in some, but not all, individuals with epilepsy. The hippocampus has been implicated in VNS response, but is yet to be studied structurally using T1-weighted (T1w) magnetic resonance imaging (MRI). In this study we hypothesized greater hippocampal abnormality in VNS non-responders. Using hippocampal morphometrics, we extracted the volumes of four hippocampal regions from T1w MRI across three groups; VNS responders ((Formula presented.)), non-responders ((Formula presented.)), and healthy controls ((Formula presented.)). We first calculated the multivariate Mahalanobis distance using z-scores from all four hippocampal regions to measure abnormality relative to controls. We then compared traditional univariate measures to the Mahalanobis distance. Response to VNS was defined as having a (Formula presented.) seizure reduction 2 years post-implantation. Hippocampal morphometrics were significantly more abnormal in non-responders than responders ((Formula presented.)) using the multivariate Mahalanobis distance. Univariate approaches did not differ significantly between responders and non-responders ((Formula presented.)). At the group level, non-responders to VNS had greater structural hippocampal abnormality when using the multivariate approach. Conversely, this effect was lost with the univariate analysis. This suggests that abnormality is likely present in different parts of the hippocampus in different individuals. Future studies should incorporate multivariate, and potentially multi-modal, information to better characterize the mechanisms of VNS response.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: unknown
Relation: https://eprints.ncl.ac.uk/308287; https://eprints.ncl.ac.uk/fulltext.aspx?url=308287/95EEE178-9F8E-4BD8-972D-6E2677E9E353.pdf&pub_id=308287
Availability: https://eprints.ncl.ac.uk/308287
Rights: https://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.2ABDEEA
Database: BASE