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Browsing by Author "Filippi, M. (7202268530)"

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    Brain structural and functional signatures of impulsive-compulsive behaviours in Parkinson's disease
    (2018)
    Imperiale, F. (55632966200)
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    Agosta, F. (6701687853)
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    Canu, E. (25225458900)
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    Markovic, V. (55324145700)
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    Inuggi, A. (8325245600)
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    Jecmenica-Lukic, M. (35801126700)
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    Tomic, A. (26654535200)
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    Copetti, M. (24474249000)
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    Basaia, S. (56830447300)
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    Kostic, V.S. (57189017751)
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    Filippi, M. (7202268530)
    This study assessed brain structural and functional alterations in patients with Parkinson's disease and impulsive-compulsive behaviours (PD-ICB) compared with controls and PD no-ICB cases. Eighty-five PD patients (35 PD-ICB) and 50 controls were recruited. All subjects underwent three-dimensional T1-weighted, diffusion tensor (DT), and resting state functional magnetic resonance imaging (RS fMRI). We assessed cortical thickness with surface-based morphometry, subcortical volumes using FIRST, DT MRI metrics using region of interest and tractography approaches, and RS fMRI using a model free approach. Compared with controls, both PD groups showed a pattern of brain structural alterations in the basal ganglia (more evident in PD no-ICB patients), sensorimotor and associative systems. Compared with PD no-ICB, PD-ICB cases showed left precentral and superior frontal cortical thinning, and motor and extramotor white matter tract damage. Compared with controls, all patients had an increased functional connectivity within the visual network. Additionally, PD no-ICB showed increased functional connectivity of bilateral precentral and postcentral gyri within the sensorimotor network compared with controls and PD-ICB. Severity and duration of PD-ICB modulated the functional connectivity between sensorimotor, visual and cognitive networks. Relative to PD no-ICB, PD-ICB patients were characterised by a more severe involvement of frontal, meso-limbic and motor circuits. These data suggest ICB in PD as the result of a disconnection between sensorimotor, associative and cognitive networks with increasing motor impairment, psychiatric symptoms, and ICB duration. These findings may have important implications in understanding the neural substrates underlying ICB in PD. © 2018 Macmillan Publishers Limited, part of Springer Nature. All rights reserved.
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    Brain structural and functional signatures of impulsive-compulsive behaviours in Parkinson's disease
    (2018)
    Imperiale, F. (55632966200)
    ;
    Agosta, F. (6701687853)
    ;
    Canu, E. (25225458900)
    ;
    Markovic, V. (55324145700)
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    Inuggi, A. (8325245600)
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    Jecmenica-Lukic, M. (35801126700)
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    Tomic, A. (26654535200)
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    Copetti, M. (24474249000)
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    Basaia, S. (56830447300)
    ;
    Kostic, V.S. (57189017751)
    ;
    Filippi, M. (7202268530)
    This study assessed brain structural and functional alterations in patients with Parkinson's disease and impulsive-compulsive behaviours (PD-ICB) compared with controls and PD no-ICB cases. Eighty-five PD patients (35 PD-ICB) and 50 controls were recruited. All subjects underwent three-dimensional T1-weighted, diffusion tensor (DT), and resting state functional magnetic resonance imaging (RS fMRI). We assessed cortical thickness with surface-based morphometry, subcortical volumes using FIRST, DT MRI metrics using region of interest and tractography approaches, and RS fMRI using a model free approach. Compared with controls, both PD groups showed a pattern of brain structural alterations in the basal ganglia (more evident in PD no-ICB patients), sensorimotor and associative systems. Compared with PD no-ICB, PD-ICB cases showed left precentral and superior frontal cortical thinning, and motor and extramotor white matter tract damage. Compared with controls, all patients had an increased functional connectivity within the visual network. Additionally, PD no-ICB showed increased functional connectivity of bilateral precentral and postcentral gyri within the sensorimotor network compared with controls and PD-ICB. Severity and duration of PD-ICB modulated the functional connectivity between sensorimotor, visual and cognitive networks. Relative to PD no-ICB, PD-ICB patients were characterised by a more severe involvement of frontal, meso-limbic and motor circuits. These data suggest ICB in PD as the result of a disconnection between sensorimotor, associative and cognitive networks with increasing motor impairment, psychiatric symptoms, and ICB duration. These findings may have important implications in understanding the neural substrates underlying ICB in PD. © 2018 Macmillan Publishers Limited, part of Springer Nature. All rights reserved.
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    Diffusion tensor MRI tractography and cognitive impairment in multiple sclerosis
    (2012)
    Mesaros, S. (7004307592)
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    Rocca, M.A. (34973365100)
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    Kacar, K. (12647164500)
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    Kostic, J. (57159483500)
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    Copetti, M. (24474249000)
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    Stosic-Opincal, T. (55886486600)
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    Preziosa, P. (6506754661)
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    Sala, S. (35601748700)
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    Riccitelli, G. (57193017272)
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    Horsfield, M.A. (7005497140)
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    Drulovic, J. (55886929900)
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    Comi, G. (7201788288)
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    Filippi, M. (7202268530)
    Objective: To assess the correlation between cognitive impairment and overall vs regional CNS damage, quantified using conventional and diffusion tensor (DT) MRI tractography in multiple sclerosis (MS). Methods: Brain dual-echo, T1-weighted, and DT MRI data were acquired from 82 patients with MS. DT tractography was used to produce maps of white matter (WM) tracts involved in cognition. The sensory thalamocortical projections and optic radiations were studied as "control"WMtracts. The contribution of global brain damage (T2 lesion volume, normalized brain volume, gray matter [GM] volume, WM volume, DT MRI measures of normal-appearing WM and GM damage) and damage to selected WM tracts to overall cognitive impairment and to impairment at individual neuropsychological tests was assessed using a random forest (RF) analysis. Results: Thirty-three patients had cognitive impairment. The majority of MRI measures differed significantly between cognitively impaired and cognitively preserved (CP) patients. Significant correlations were found between performance in the majority of neuropsychological tests and global or regional brain damage (r ranging from -0.60 to 0.57). The RF analysis showed a high performance in classifying cognitively impaired vs CP patients, with a classification (C)-index = 76.8%, as well as in classifying patients' impairment in individual neuropsychological tests (Cindex between 75.6% and 86.6%). Measures of lesional damage in cognitive-related tracts, rather than measures of normal- appearingWMdamage in the same tracts or global brain/WM/GM damage, resulted in the highest classification accuracy. Conclusions: Lesions in strategic brain WM tracts contribute to cognitive impairment in MS through a multisystem disconnection syndrome. Copyright © 2012 by AAN Enterprises, Inc.
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    Hippocampal and deep gray matter nuclei atrophy is relevant for explaining cognitive impairment in MS: A multicenter study
    (2017)
    Damjanovic, D. (59572798100)
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    Valsasina, P. (6506051299)
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    Rocca, M.A. (34973365100)
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    Stromillo, M.L. (6507889401)
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    Gallo, A. (56421492900)
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    Enzinger, C. (6602781849)
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    Hulst, H.E. (57214771421)
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    Rovira, A. (7102462625)
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    Muhlert, N. (36010957200)
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    De Stefano, N. (7006800085)
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    Bisecco, A. (37090163000)
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    Fazekas, F. (7102945505)
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    Arévalo, M.J. (36742881600)
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    Yousry, T.A. (7006486284)
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    Filippi, M. (7202268530)
    BACKGROUND AND PURPOSE: The structural MR imaging correlates of cognitive impairment in multiple sclerosis are still debated. This study assessed lesional and atrophy measures of white matter and gray matter involvement in patients with MS acquired in 7 European sites to identify the MR imaging variables most closely associated with cognitive dysfunction. MATERIALS AND METHODS: Brain dual-echo, 3D T1-weighted, and double inversion recovery scans were acquired at 3T from 62 patients with relapsing-remitting MS and 65 controls. Patients with at least 2 neuropsychological tests with abnormal findings were considered cognitively impaired. Focal WM and cortical lesions were identified, and volumetric measures from WM, cortical GM, the hippocampus, and deep GM nuclei were obtained. Age- and site-adjusted models were used to compare lesion and volumetric MR imaging variables between patients with MS who were cognitively impaired and cognitively preserved. A multivariate analysis identified MR imaging variables associated with cognitive scores and disability. RESULTS: Twenty-three patients (38%) were cognitively impaired. Compared with those with who were cognitively preserved, patients with MS with cognitive impairment had higher T2 and T1 lesion volumes and a trend toward a higher number of cortical lesions. Significant brain, cortical GM, hippocampal, deepGMnuclei, andWMatrophy was found in patients with MS with cognitive impairment versus those who were cognitively preserved. Hippocampal and deep GM nuclei atrophy were the best predictors of cognitive impairment, whileWM atrophy was the best predictor of disability. CONCLUSIONS: Hippocampal and deep GM nuclei atrophy are key factors associated with cognitive impairment in MS. These MR imaging measures could be applied in a multicenter context, with cognition as clinical outcome.
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    Pattern of brain tissue loss associated with freezing of gait in Parkinson disease
    (2012)
    Kostić, V.S. (35239923400)
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    Agosta, F. (6701687853)
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    Pievani, M. (24476859800)
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    Stefanova, E. (7004567022)
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    Ječmenica-Lukić, M. (35801126700)
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    Scarale, A. (57204024869)
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    Špica, V. (55324145700)
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    Filippi, M. (7202268530)
    Objective: To investigate whether a specific pattern of gray matter (GM) tissue loss is associated with freezing of gait (FOG) in patients with Parkinson disease (PD). Methods: Seventeen patients with PD with FOG (PD-FOG), 20 patients with PD with no FOG (PD-noFOG), and 34 healthy control subjects were recruited. PD-FOG and PD-noFOG patients were matched on an individual basis for age, disease duration, and Hoehn and Yahr stage. Patients were also administered a comprehensive neuropsychological battery focused on executive functions. The extent and distribution ofGMatrophy were assessed using voxel-based morphometry. Results: In patients with PD, the severity of FOG correlated with frontal executive deficits. Compared with healthy control subjects, PD-FOG patients showed a distributed pattern of GM atrophy including the dorsolateral prefrontal, medial, and lateral temporal, inferior parietal, and occipital cortices. PD-noFOG patients showed only small regions of GM atrophy in the bilateral frontal and temporal cortex. The left inferior frontal gyrus, left precentral gyrus, and left inferior parietal gyrus were more atrophic in PD-FOG patients relative to both healthy control subjects and PD-noFOG patients. In PD-FOG patients, the severity of FOG was associated with GM volumes of the frontal and parietal cortices bilaterally. Conclusions: GM frontal and parietal atrophy occur in PD-FOG patients. FOG in PD seems to share with executive dysfunction and perception deficits a common pattern of structural damage to the frontal and parietal cortices. Copyright © 2012 by AAN Enterprises, Inc.
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    Regional patterns of brain tissue loss associated with depression in Parkinson disease
    (2010)
    Kostić, V.S. (35239923400)
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    Agosta, F. (6701687853)
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    Petrović, I. (7004083314)
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    Galantucci, S. (36466328000)
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    Špica, V. (55324145700)
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    Ječmenica-Lukic, M. (35801126700)
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    Filippi, M. (7202268530)
    Objective: To investigate, using MRI and voxel-based morphometry (VBM), whether specific patterns of gray matter (GM) and white matter (WM) loss are associated with depression in patients with Parkinson disease (PD). Methods: Forty patients with PD and 26 healthy subjects were studied. Patients were diagnosed with depression using DSM-IV criteria. The Hamilton Depression Rating Scale (HDRS) was administered to patients. The topographic distribution of brain tissue loss in patients with PD and controls was assessed using VBM as implemented in Statistical Parametric Mapping (SPM5). Results: Twenty-four patients with PD were diagnosed as nondepressed (PD-NDep) and 16 as having depression (PD-Dep). Patient groups were similar in terms of clinical findings, except for the HDRS score (p < 0.001). Compared to controls, patients with PD showed common GM loss in the right anterior cingulate (AC) cortex and insula, and in the left middle frontal and angular gyri (p < 0.001). No regions of WM loss common to PD-NDep and PD-Dep patients relative to healthy controls were found. PD-Dep vs PD-NDep patients showed WM loss in the right AC bundle and inferior orbitofrontal (OF) region (p < 0.001). In patients with PD, HDRS score correlated with WM loss in the right inferior OF region (r =-0.51, p < 0.05). Conclusions: Tissue loss in several WM regions within the cortical-limbic network occurs in PD-Dep vs PD-NDep patients. Such pattern of brain atrophy overlaps with key regions involved in major depressive disorders, suggesting an increased vulnerability of this neural circuit in PD. This may partially account for the high prevalence of depression in PD. © 2010 by AAN Enterprises, Inc.

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