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http://bura.brunel.ac.uk/handle/2438/32377| Title: | Thalamus involvement in genetic frontotemporal dementia assessed using structural and diffusion MRI: a GENFI study |
| Authors: | Soskic, S Tregidgo, HFJ Todd, EG Bouzigues, A Cash, DM Russell, LL Thomas, DL Malone, IB Foster, PH Ferry-Bolder, E van Swieten, JC Giaccone, G Van Damme, P van Minkelen, R Balasa, M Tang-Wai, D Rogaeva, E Maruta, C Krüger, J Seelaar, H Bessi, V Verdelho, A Black, S Mitchell, S Barandiaran, M Shoesmith, C Tiraboschi, P Miltenberger, G Papma, JM Giannini, L Vandenbulcke, M de Boer, L Lebouvier, T Bender, B Pijnenburg, Y Ferrari, C Migliaccio, R Polito, C Bruffaerts, R Fainardi, E Chiti, S Wagemann, O Nilsson, M Burgos, N Rydell, MT Jelic, V Anderl-Straub, S Ullgren, A Lladó, A Antonell, A Durães, J Olives, J Bargalló, N Borrego-Ecija, S Tábuas-Pereira, M Simões do Couto, F Gabilondo, A Croitoru, I Jiskoot, LC Tainta, M Masellis, M Schönecker, S GENetic Frontotemporal dementia Initiative (GENFI) Mengel, D Graf, L de Mendonça, A Vogels, A Caroppo, P Sanchez-Valle, R Poesen, K Rosa-Neto, P Bertoux, M Montembault, M Freedman, M Santana, I Rinaldi, D Prix, C Tartaglia, MC Wlasich, E Ducharme, S Bernhardt, AM Stockbauer, A Alexander, DC Lombardi, J Rowe, JB Rollin, A Kuchcinski, G Goldsmith, S Deramecourt, V Lima, M Leitão, MJ Premi, E Almeida, MR Afonso, S Lemos, J Arighi, A Laforce, R Graff, C Galimberti, D Gerhard, A Vandenberghe, R Rademakers, R Iglesias, JE Carandini, T Levin, J Nacmias, B Di Fede, G Otto, M Costa-Coelho, T Samra, K Butler, CR Le Ber, I Castelo-Branco, M Finger, EC Alves, P Prioni, S Synofzik, M Moreno, F Bartha, R Borroni, B Keren, R Rohrer, JD Bocchetta, M de Houwer, J Convery, R Poos, J Cope, T Malpetti, M Lombardi, G Alberici, A Gasparotti, R Buratti, E Viklund, H Cantoni, V Fenoglio, C Borracci, V Langheinrich, T Serpente, M Rotondo, E Rossi, G Redaelli, V |
| Keywords: | frontotemporal dementia;genetics;thalamus;MRI;diffusion tensor imaging |
| Issue Date: | 24-Oct-2025 |
| Publisher: | Oxford University Press on behalf of the Guarantors of Brain |
| Citation: | Soskic, S. on behalf of the GENetic Frontotemporal dementia Initiative (GENFI) (2025) 'Thalamus involvement in genetic frontotemporal dementia assessed using structural and diffusion MRI: a GENFI study', Brain Communications, 7 (6), fcaf420, pp. 1 - 16. doi: 10.1093/braincomms/fcaf420. |
| Abstract: | Thalamic subregions are commonly, but variably, affected by different forms of frontotemporal dementia. We aimed to better characterize thalamic subregional involvement in genetic frontotemporal dementia with a recently published thalamus segmentation tool that utilizes structural and diffusion MRI, offering additional assessment of mean diffusivity and a more fine-grained analysis of the pulvinar specifically compared to previous studies. Using this tool, we performed thalamus segmentations in MRI scans from C9orf72, GRN and MAPT mutation carriers and mutation non-carriers with suitable 3-Tesla MRI cross-sectional data from the GENetic Frontotemporal dementia Initiative. Mutation carriers were divided according to their genetic group and Clinical Dementia Rating® Dementia Staging Instrument plus National Alzheimer’s Coordinating Center Behaviour and Language Domains global score (0 or 0.5: presymptomatic/prodromal stage, 1 or higher: symptomatic stage). Following stringent quality control and harmonization across sites and scanners, we compared volumes and mean diffusivity values of thalamic subregions in C9orf72 (47 presymptomatic, 10 symptomatic), GRN (57 presymptomatic, 11 symptomatic) and MAPT (31 presymptomatic, 12 symptomatic) mutation carriers to those in 109 mutation non-carriers with analyses of covariance including age and sex (and total intracranial volume for volumetric comparisons) as covariates. Presymptomatic C9orf72 expansion carriers showed smaller volumes (3–8% difference from non-carriers) and higher mean diffusivity (2–5% difference from non-carriers) for several thalamic subregions, including all pulvinar subdivisions. We found subtly larger volumes of the ventral anterior subregion and the non-medial pulvinar (3% difference from non-carriers for both) in presymptomatic GRN mutation carriers, and of the anteroventral subregion (5% difference from non-carriers) in presymptomatic MAPT mutation carriers. Symptomatic mutation carriers in all three genetic groups showed significantly smaller volumes and widespread higher mean diffusivity of thalamic subregions compared with non-carriers, which were overall most prominent in subregions involved in associative and limbic functions (the midline, medial pulvinar, anteroventral, mediodorsal, laterodorsal and lateral posterior subregions). Notably smaller volume (12–23% difference from non-carriers) and higher mean diffusivity (16–23% difference from non-carriers) of the most medial part of the medial pulvinar was a shared feature across the three genetic groups at the symptomatic stage. Overall, our study confirms that thalamic subregions are affected in genetic frontotemporal dementia and identifies prominent involvement of the most medial part of the medial pulvinar as a potential unifying feature in the variable pattern of thalamic subregional involvement across the main genetic groups. |
| Description: | Data availability:
Anonymized data may be shared upon reasonable request from a qualified academic investigator for the purpose of replication of procedures and results detailed in this article. Supplementary data are available online at: https://academic.oup.com/braincomms/article/7/6/fcaf420/8301026#supplementary-data . |
| URI: | https://bura.brunel.ac.uk/handle/2438/32377 |
| DOI: | https://doi.org/10.1093/braincomms/fcaf420 |
| Other Identifiers: | ORCiD: Emily G. Todd https://orcid.org/0000-0003-1551-5691 ORCiD: Arabella Bouzigues https://orcid.org/0000-0002-0267-8590 ORCiD: David M. Cash https://orcid.org/0000-0001-7833-616X ORCiD: Ian B. Malone https://orcid.org/0000-0001-7512-7856 ORCiD: Lize C. Jiskoot https://orcid.org/0000-0002-1120-1858 ORCiD: Harro Seelaar https://orcid.org/0000-0003-1989-7527 ORCiD: Raquel Sanchez-Valle https://orcid.org/0000-0001-7750-896X ORCiD: Caroline Graff https://orcid.org/0000-0002-9949-2951 ORCiD: Rik Vandenberghe https://orcid.org/0000-0001-6237-2502 ORCiD: Alexander Gerhard https://orcid.org/0000-0002-8071-6062 ORCiD: Johannes Levin https://orcid.org/0000-0001-5092-4306 ORCiD: Maxime Bertoux https://orcid.org/0000-0002-5283-503X ORCiD: Simon Ducharme https://orcid.org/0000-0002-7309-1113 ORCiD: Christopher R. Butler https://orcid.org/0000-0002-7502-9284 ORCiD: Elizabeth C.Finger https://orcid.org/0000-0003-4461-7427 ORCiD: Matthis Synofzik https://orcid.org/0000-0002-2280-7273 ORCiD: Barbara Borroni https://orcid.org/0000-0001-9340-9814 ORCiD: Martina Bocchetta https://orcid.org/0000-0003-1814-5024 Article number: fcaf420 |
| Appears in Collections: | Dept of Life Sciences Research Papers |
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