Distinct neural signatures of pulvinar in C9orf72 amyotrophic lateral sclerosis mutation carriers and noncarriers

Author:

Nigri Anna1ORCID,Stanziano Mario12,Fedeli Davide1,Manera Umberto23ORCID,Ferraro Stefania14,Medina Carrion Jean Paul1ORCID,Palermo Sara1,Lequio Laura5,Denegri Federica5,Agosta Federica678,Spinelli Edoardo Gioele679,Filippi Massimo678910ORCID,Grisoli Marina1,Valentini Maria Consuelo5,De Mattei Filippo23,Canosa Antonio23,Calvo Andrea23ORCID,Chiò Adriano2311,Bruzzone Maria Grazia1,Moglia Cristina23ORCID

Affiliation:

1. Neuroradiology Unit Fondazione IRCCS Istituto Neurologico Carlo Besta Milan Italy

2. ALS Centre, “Rita Levi Montalcini” Department of Neuroscience University of Turin Turin Italy

3. Azienda Ospedaliero‐Universitaria Città della Salute e della Scienza di Torino, SC Neurologia 1U Turin Italy

4. School of Life Science and Technology, MOE Key Laboratory for Neuroinformation University of Electronic Science and Technology of China Chengdu China

5. Neuroradiology Unit CTO Hospital, AOU Città della Salute e della Scienza di Torino Turin Italy

6. Neuroimaging Research Unit, Division of Neuroscience IRCCS San Raffaele Scientific Institute Milan Italy

7. Neurology Unit IRCCS San Raffaele Scientific Institute Milan Italy

8. Vita‐Salute San Raffaele University Milan Italy

9. Neurorehabilitation Unit IRCCS San Raffaele Scientific Institute Milan Italy

10. Neurophysiology Service IRCCS San Raffaele Scientific Institute Milan Italy

11. Institute of Cognitive Sciences and Technologies National Council of Research Rome Italy

Abstract

AbstractBackground and purposeThalamic alterations have been reported as a major feature in presymptomatic and symptomatic patients carrying the C9orf72 mutation across the frontotemporal dementia–amyotrophic lateral sclerosis (ALS) spectrum. Specifically, the pulvinar, a high‐order thalamic nucleus and timekeeper for large‐scale cortical networks, has been hypothesized to be involved in C9orf72‐related neurodegenerative diseases. We investigated whether pulvinar volume can be useful for differential diagnosis in ALS C9orf72 mutation carriers and noncarriers and how underlying functional connectivity changes affect this region.MethodsWe studied 19 ALS C9orf72 mutation carriers (ALSC9+) accurately matched with wild‐type ALS (ALSC9−) and ALS mimic (ALSmimic) patients using structural and resting‐state functional magnetic resonance imaging data. Pulvinar volume was computed using automatic segmentation. Seed‐to‐voxel functional connectivity analyses were performed using seeds from a pulvinar functional parcellation.ResultsPulvinar structural integrity had high discriminative values for ALSC9+ patients compared to ALSmimic (area under the curve [AUC] = 0.86) and ALSC9− (AUC = 0.77) patients, yielding a volume cutpoint of approximately 0.23%. Compared to ALSmimic, ALSC9− showed increased anterior, inferior, and lateral pulvinar connections with bilateral occipital–temporal–parietal regions, whereas ALSC9+ showed no differences. ALSC9+ patients when compared to ALSC9− patients showed reduced pulvinar–occipital connectivity for anterior and inferior pulvinar seeds.ConclusionsPulvinar volume could be a differential biomarker closely related to the C9orf72 mutation. A pulvinar–cortical circuit dysfunction might play a critical role in disease progression and development, in both the genetic phenotype and ALS wild‐type patients.

Funder

Ministero dell'Università e della Ricerca

Ministero della Salute

Publisher

Wiley

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