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Refining computer-assisted SEEG planning with spatial priors – A novel comparison of implantation strategies across adult and paediatric centres - 14/01/25

Doi : 10.1016/j.neucli.2024.103038 
Debayan Dasgupta a, b, , Aswin Chari a, c, Mehdi Khan d, e, Friederike Moeller f, Zubair Tahir e, Andrew W McEvoy a, Anna Miserocchi a, John S Duncan b, Rachel E. Sparks g, Martin Tisdall c, e
a Victor Horsley Department of Neurosurgery, National Hospital for Neurology and Neurosurgery, Queen Square, London, WC1N 3BG, UK 
b Department of Clinical and Experimental Epilepsy, UCL Queen Square Institute of Neurology, University College London, London, WC1N 3BG, UK 
c Developmental Neurosciences, UCL Great Ormond Street Institute of Child Health, London, WC1N 1EH, UK 
d University College London Medical School, London, WC1E 6BT, UK 
e Department of Neurosurgery, Great Ormond Street Hospital for Children, London, WC1N 3JH, UK 
f Department of Neurophysiology, Great Ormond Street Hospital for Children, London, WC1N 3JH, UK 
g School of Biomedical Engineering & Imaging Sciences, King's College London, London, WC2R 2LS, UK 

Corresponding author.

Abstract

Objectives

Computer-assisted planning (CAP) allows faster SEEG planning and improves grey matter sampling, orthogonal drilling angles to the skull, reduces risk scores and minimises intracerebral electrode length. Incorporating prior SEEG trajectories enhances CAP planning, refining output with centre-specific practices. This study significantly expands on the previous work, compares priors libraries between two centres, and describes differences between SEEG in adults and children in these centres.

Methods

98 adults and 61 children who underwent SEEG implantation as part of epilepsy surgery investigations were included. Priors libraries were created for each population, clustered by target regions and subdivided by cortical approaches. The libraries were coregistered and quantitatively and qualitatively compared.

Results

The average number of implanted electrodes per patient was higher in paediatric patients than adults (13.6 vs 8.0). Paediatric implantations focused more on the insula than adult implantations (38.0 % vs 13.5 %), with similar proportions of electrodes implanted in the temporal and parietal lobes, and a higher proportion of adult electrodes in the frontal and orbitofrontal regions (40.6 % vs 24.0 %). Correspondence between the priors libraries was high. We present an example of a complex insular implantation planned with paediatric spatial priors and illustrate resultant SEEG recordings.

Discussion

The use of centre-specific spatial priors allows the incorporation of surgeon-specific and unit-specific preferences into automated planning. We compare implantation styles between a paediatric and an adult centre, discussing similarities and differences. This tool allows centres to compare practice and represents an effective way to analyse implantation strategies that is agnostic to method of implantation.

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Keywords : Stereoelectroencephalography (SEEG), Computer-assisted planning, Spatial priors, Epilepsy surgery, Intracranial EEG, Surgical planning


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© 2024  The Author(s). Pubblicato da Elsevier Masson SAS. Tutti i diritti riservati.
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Vol 55 - N° 1

Articolo 103038- gennaio 2025 Ritorno al numero
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