TY - JOUR
T1 - Can Cognitive training Reignite Compensatory Mechanisms in Advanced Multiple Sclerosis Patients? An Explorative Morphological Network Approach
AU - Frieske, Joana
AU - Pareto, Deborah
AU - García-Vidal, Aran
AU - Cuypers, Koen
AU - Meesen, Raf L.J.
AU - Alonso, Juli
AU - Arévalo, Maria Jesus
AU - Galán, Ingrid
AU - Renom, Marta
AU - Vidal-Jordana, Ángela
AU - Auger, Cristina
AU - Montalban, Xavier
AU - Rovira, Àlex
AU - Sastre-Garriga, Jaume
N1 - Publisher Copyright:
© 2022
PY - 2022/7/15
Y1 - 2022/7/15
N2 - Multiple Sclerosis (MS) has been shown to significantly impair brain connectivity, as alterations in functional and structural networks have been identified and associated with clinical status, particularly cognitive deficits. We aimed to identify structural connectivity changes in grey matter networks following cognitive rehabilitation (CR) in persons with MS (PwMS). Fifteen long-standing PwMS underwent a 5-week CR-program and five healthy controls (HC) were also investigated. T1-weighted MRI scans and neuropsychological tests were obtained before and after CR. T1-weighted scans were used to examine grey matter networks with graph analytic parameters [betweenness centrality (BC), degree (D), clustering (Cl), path length (PL) and small world properties: connectedness, gamma and lambda values]. Results were analysed at the whole brain level and for each brain lobe. Before CR, PwMS displayed lower values for D in the left parietal lobe (p = 0.009) compared to HC. After CR, significant increases in Cl located in frontal (p = 0.024) and temporal (p = 0.026) regions in PwMS were accompanied by significant decreases in PL located in the right parietal lobe (p = 0.025) and BC globally (p = 0.010). Overall, CR may prevent a network worsening in long-standing PwMS by increasing local efficiency of the brain and therefore facilitating compensation mechanisms.
AB - Multiple Sclerosis (MS) has been shown to significantly impair brain connectivity, as alterations in functional and structural networks have been identified and associated with clinical status, particularly cognitive deficits. We aimed to identify structural connectivity changes in grey matter networks following cognitive rehabilitation (CR) in persons with MS (PwMS). Fifteen long-standing PwMS underwent a 5-week CR-program and five healthy controls (HC) were also investigated. T1-weighted MRI scans and neuropsychological tests were obtained before and after CR. T1-weighted scans were used to examine grey matter networks with graph analytic parameters [betweenness centrality (BC), degree (D), clustering (Cl), path length (PL) and small world properties: connectedness, gamma and lambda values]. Results were analysed at the whole brain level and for each brain lobe. Before CR, PwMS displayed lower values for D in the left parietal lobe (p = 0.009) compared to HC. After CR, significant increases in Cl located in frontal (p = 0.024) and temporal (p = 0.026) regions in PwMS were accompanied by significant decreases in PL located in the right parietal lobe (p = 0.025) and BC globally (p = 0.010). Overall, CR may prevent a network worsening in long-standing PwMS by increasing local efficiency of the brain and therefore facilitating compensation mechanisms.
KW - cognitive rehabilitation
KW - connectivity
KW - grey matter networks
KW - MRI
KW - MS
UR - https://www.scopus.com/pages/publications/85132348682
U2 - 10.1016/j.neuroscience.2022.03.031
DO - 10.1016/j.neuroscience.2022.03.031
M3 - Article
C2 - 35364228
AN - SCOPUS:85132348682
SN - 0306-4522
VL - 495
SP - 86
EP - 96
JO - Neuroscience
JF - Neuroscience
ER -