Single-subject structural cortical networks in clinically isolated syndrome.

Sara Collorone ORCID logo; Ferran Prados; Marloes Hj Hagens; Carmen Tur ORCID logo; Baris Kanber; Carole H Sudre; Carsten Lukas; Claudio Gasperini; Celia Oreja-Guevara; Micaela Andelova; +8 more... Olga Ciccarelli; Mike P Wattjes; Sebastian Ourselin; Daniel R Altmann; Betty M Tijms ORCID logo; Frederik Barkhof; Ahmed T Toosy; MAGNIMS Study Group; (2019) Single-subject structural cortical networks in clinically isolated syndrome. Multiple Sclerosis Journal, 26 (11). pp. 1392-1401. ISSN 1352-4585 DOI: 10.1177/1352458519865739
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BACKGROUND: Structural cortical networks (SCNs) represent patterns of coordinated morphological modifications in cortical areas, and they present the advantage of being extracted from previously acquired clinical magnetic resonance imaging (MRI) scans. SCNs have shown pathophysiological changes in many brain disorders, including multiple sclerosis. OBJECTIVE: To investigate alterations of SCNs at the individual level in patients with clinically isolated syndrome (CIS), thereby assessing their clinical relevance. METHODS: We analyzed baseline data collected in a prospective multicenter (MAGNIMS) study. CIS patients (n = 60) and healthy controls (n = 38) underwent high-resolution 3T MRI. Measures of disability and cognitive processing were obtained for patients. Single-subject SCNs were extracted from brain 3D-T1 weighted sequences; global and local network parameters were computed. RESULTS: Compared to healthy controls, CIS patients showed altered small-world topology, an efficient network organization combining dense local clustering with relatively few long-distance connections. These disruptions were worse for patients with higher lesion load and worse cognitive processing speed. Alterations of centrality measures and clustering of connections were observed in specific cortical areas in CIS patients when compared with healthy controls. CONCLUSION: Our study indicates that SCNs can be used to demonstrate clinically relevant alterations of connectivity in CIS.


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