Browsing by Author "Canu, Elisa (25225458900)"
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Publication Altered Functional Connectivity of the Subthalamic Nucleus in Parkinson's Disease: Focus on Candidates for Deep Brain Stimulation(2023) ;Albano, Luigi (57191365090) ;Agosta, Federica (6701687853) ;Basaia, Silvia (56830447300) ;Cividini, Camilla (57197744667) ;Stojkovic, Tanja (57211211787) ;Sarasso, Elisabetta (56830484100) ;Stankovic, Iva (58775209600) ;Tomic, Aleksandra (26654535200) ;Markovic, Vladana (55324145700) ;Canu, Elisa (25225458900) ;Stefanova, Elka (7004567022) ;Mortini, Pietro (7004247180) ;Kostic, Vladimir S. (35239923400)Filippi, Massimo (7202268530)Background: The hypothesis that the effectiveness of deep brain stimulation (DBS) in Parkinson's disease (PD) would be related to connectivity dysfunctions between the site of stimulation and other brain regions is growing. Objective: To investigate how the subthalamic nucleus (STN), the most frequently used DBS target for PD, is functionally linked to other brain regions in PD patients according to DBS eligibility. Methods: Clinical data and resting-state functional MRI were acquired from 60 PD patients and 60 age- and sex-matched healthy subjects within an ongoing longitudinal project. PD patients were divided into 19 patients eligible for DBS and 41 non-candidates. Bilateral STN were selected as regions of interest and a seed-based functional MRI connectivity analysis was performed. Results: A decreased functional connectivity between STN and sensorimotor cortex in both PD patient groups compared to controls was found. Whereas an increased functional connectivity between STN and thalamus was found in PD patient groups relative to controls. Candidates for DBS showed a decreased functional connectivity between bilateral STN and bilateral sensorimotor areas relative to non-candidates. In patients eligible for DBS, a weaker STN functional connectivity with left supramarginal and angular gyri was related with a more severe rigidity and bradykinesia whereas a higher connectivity between STN and cerebellum/pons was related to poorer tremor score. Conclusion: Our results suggest that functional connectivity of STN varies among PD patients eligible or not for DBS. Future studies would confirm whether DBS modulates and restores functional connectivity between STN and sensorimotor areas in treated patients. © 2023 - The authors. Published by IOS Press. - Some of the metrics are blocked by yourconsent settings
Publication Altered Functional Connectivity of the Subthalamic Nucleus in Parkinson's Disease: Focus on Candidates for Deep Brain Stimulation(2023) ;Albano, Luigi (57191365090) ;Agosta, Federica (6701687853) ;Basaia, Silvia (56830447300) ;Cividini, Camilla (57197744667) ;Stojkovic, Tanja (57211211787) ;Sarasso, Elisabetta (56830484100) ;Stankovic, Iva (58775209600) ;Tomic, Aleksandra (26654535200) ;Markovic, Vladana (55324145700) ;Canu, Elisa (25225458900) ;Stefanova, Elka (7004567022) ;Mortini, Pietro (7004247180) ;Kostic, Vladimir S. (35239923400)Filippi, Massimo (7202268530)Background: The hypothesis that the effectiveness of deep brain stimulation (DBS) in Parkinson's disease (PD) would be related to connectivity dysfunctions between the site of stimulation and other brain regions is growing. Objective: To investigate how the subthalamic nucleus (STN), the most frequently used DBS target for PD, is functionally linked to other brain regions in PD patients according to DBS eligibility. Methods: Clinical data and resting-state functional MRI were acquired from 60 PD patients and 60 age- and sex-matched healthy subjects within an ongoing longitudinal project. PD patients were divided into 19 patients eligible for DBS and 41 non-candidates. Bilateral STN were selected as regions of interest and a seed-based functional MRI connectivity analysis was performed. Results: A decreased functional connectivity between STN and sensorimotor cortex in both PD patient groups compared to controls was found. Whereas an increased functional connectivity between STN and thalamus was found in PD patient groups relative to controls. Candidates for DBS showed a decreased functional connectivity between bilateral STN and bilateral sensorimotor areas relative to non-candidates. In patients eligible for DBS, a weaker STN functional connectivity with left supramarginal and angular gyri was related with a more severe rigidity and bradykinesia whereas a higher connectivity between STN and cerebellum/pons was related to poorer tremor score. Conclusion: Our results suggest that functional connectivity of STN varies among PD patients eligible or not for DBS. Future studies would confirm whether DBS modulates and restores functional connectivity between STN and sensorimotor areas in treated patients. © 2023 - The authors. Published by IOS Press. - Some of the metrics are blocked by yourconsent settings
Publication Brain structural abnormalities in patients with major depression with or without generalized anxiety disorder comorbidity(2015) ;Canu, Elisa (25225458900) ;Kostić, Milutin (56567649800) ;Agosta, Federica (6701687853) ;Munjiza, Ana (55583599900) ;Ferraro, Pilar M. (56567579800) ;Pesic, Danilo (55582296200) ;Copetti, Massimiliano (24474249000) ;Peljto, Amir (54409241100) ;Tosevski, Dusica Lecic (6602315043)Filippi, Massimo (7202268530)An overlap frequently occurs between major depression disorder (MDD) and generalized anxiety disorder (GAD). Aim of this study was to assess cortical and white matter (WM) alterations in MDD patients with or without GAD comorbidity. Seventy-one MDD patients and 71 controls were recruited. All subjects underwent T1-weighted and diffusion tensor (DT)/MRI. MRI metrics of cortical thickness and WM integrity were obtained from atlas-based cortical regions and the interhemispheric and major long association WM tracts. Between-group MRI comparisons and multiple regressions with clinical scale scores were performed. Compared to controls, both MDD and MDD-GAD patients showed a cortical thinning of the middle frontal cortex bilaterally, left medial frontal gyrus and frontal pole. Compared to controls and MDD patients, MDD-GAD cases also showed a thinning of the right medial orbitofrontal and fusiform gyri, and left temporal pole and lateral occipital cortices. Compared to controls, MDD patients showed DT MRI abnormalities of the right parahippocampal tract and superior longitudinal fasciculus bilaterally, while no WM alterations were found in MDD-GAD. In all patients, brain abnormalities were related with symptom severity. MDD and MDD-GAD share a common pattern of cortical alterations located in the frontal regions. However, while both the cortex and WM integrity are affected in MDD, only the former is affected in MDD-GAD. These findings support the notion of MDD-GAD as a distinct clinical entity, providing insights into patient vulnerability for specific networks as well as into patient resilience factors reflected by the integrity of other cerebral circuits. © 2015, Springer-Verlag Berlin Heidelberg. - Some of the metrics are blocked by yourconsent settings
Publication Brain structural abnormalities in patients with major depression with or without generalized anxiety disorder comorbidity(2015) ;Canu, Elisa (25225458900) ;Kostić, Milutin (56567649800) ;Agosta, Federica (6701687853) ;Munjiza, Ana (55583599900) ;Ferraro, Pilar M. (56567579800) ;Pesic, Danilo (55582296200) ;Copetti, Massimiliano (24474249000) ;Peljto, Amir (54409241100) ;Tosevski, Dusica Lecic (6602315043)Filippi, Massimo (7202268530)An overlap frequently occurs between major depression disorder (MDD) and generalized anxiety disorder (GAD). Aim of this study was to assess cortical and white matter (WM) alterations in MDD patients with or without GAD comorbidity. Seventy-one MDD patients and 71 controls were recruited. All subjects underwent T1-weighted and diffusion tensor (DT)/MRI. MRI metrics of cortical thickness and WM integrity were obtained from atlas-based cortical regions and the interhemispheric and major long association WM tracts. Between-group MRI comparisons and multiple regressions with clinical scale scores were performed. Compared to controls, both MDD and MDD-GAD patients showed a cortical thinning of the middle frontal cortex bilaterally, left medial frontal gyrus and frontal pole. Compared to controls and MDD patients, MDD-GAD cases also showed a thinning of the right medial orbitofrontal and fusiform gyri, and left temporal pole and lateral occipital cortices. Compared to controls, MDD patients showed DT MRI abnormalities of the right parahippocampal tract and superior longitudinal fasciculus bilaterally, while no WM alterations were found in MDD-GAD. In all patients, brain abnormalities were related with symptom severity. MDD and MDD-GAD share a common pattern of cortical alterations located in the frontal regions. However, while both the cortex and WM integrity are affected in MDD, only the former is affected in MDD-GAD. These findings support the notion of MDD-GAD as a distinct clinical entity, providing insights into patient vulnerability for specific networks as well as into patient resilience factors reflected by the integrity of other cerebral circuits. © 2015, Springer-Verlag Berlin Heidelberg. - Some of the metrics are blocked by yourconsent settings
Publication Brain structural and functional connectivity in Parkinson's disease with freezing of gait(2015) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Sarasso, Elisabetta (56830484100) ;Volontè, Maria Antonietta (7003972673) ;Basaia, Silvia (56830447300) ;Stojkovic, Tanja (57211211787) ;Stefanova, Elka (7004567022) ;Comi, Giancarlo (7201788288) ;Falini, Andrea (7003494994) ;Kostic, Vladimir S. (57189017751) ;Gatti, Roberto (7201689547)Filippi, Massimo (7202268530)Objective: To use a multimodal approach to assess brain structural pathways and resting state (RS) functional connectivity abnormalities in patients with Parkinson's disease and freezing of gait (PD-FoG). Methods: T1-weighted, diffusion tensor (DT) MRI and RS functional MRI (fMRI) were obtained from 22 PD-FoG patients and 35 controls on a 3.0 T MR scanner. Patients underwent clinical, motor, and neuropsychological evaluations. Gray matter (GM) volumes and white matter (WM) damage were assessed using voxel based morphometry and tract-based spatial statistics, respectively. The pedunculopontine tract (PPT) was studied using tractography. RS fMRI data were analyzed using a model free approach investigating the main sensorimotor and cognitive brain networks. Multiple regression models were performed to assess the relationships between structural, functional, and clinical/cognitive variables. Analysis of GM and WM structural abnormalities was replicated in an independent sample including 28 PD-FoG patients, 25 PD patients without FoG, and 30 healthy controls who performed MRI scans on a 1.5 T scanner. Results: Compared with controls, no GM atrophy was found in PD-FoG cases. PD-FoG patients showed WM damage of the PPT, corpus callosum, corticospinal tract, cingulum, superior longitudinal fasciculus, and WM underneath the primary motor, premotor, prefrontal, orbitofrontal, and inferior parietal cortices, bilaterally. In PD-FoG, right PTT damage was associated with a greater disease severity. Analysis on the independent PD sample showed similar findings in PD-FoG patients relative to controls as well as WM damage of the genu and body of the corpus callosum and right parietal WM in PD-FoG relative to PD no-FoG patients. RS fMRI analysis showed that PD-FoG is associated with a decreased functional connectivity of the primary motor cortex and supplementary motor area bilaterally in the sensorimotor network, frontoparietal regions in the default mode network, and occipital cortex in the visual associative network. Conclusions: This study suggests that FoG in PD can be the result of a poor structural and functional integration between motor and extramotor (cognitive) neural systems. Hum Brain Mapp 36:5064-5078, 2015. © 2015 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication Brain structural and functional connectivity in Parkinson's disease with freezing of gait(2015) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Sarasso, Elisabetta (56830484100) ;Volontè, Maria Antonietta (7003972673) ;Basaia, Silvia (56830447300) ;Stojkovic, Tanja (57211211787) ;Stefanova, Elka (7004567022) ;Comi, Giancarlo (7201788288) ;Falini, Andrea (7003494994) ;Kostic, Vladimir S. (57189017751) ;Gatti, Roberto (7201689547)Filippi, Massimo (7202268530)Objective: To use a multimodal approach to assess brain structural pathways and resting state (RS) functional connectivity abnormalities in patients with Parkinson's disease and freezing of gait (PD-FoG). Methods: T1-weighted, diffusion tensor (DT) MRI and RS functional MRI (fMRI) were obtained from 22 PD-FoG patients and 35 controls on a 3.0 T MR scanner. Patients underwent clinical, motor, and neuropsychological evaluations. Gray matter (GM) volumes and white matter (WM) damage were assessed using voxel based morphometry and tract-based spatial statistics, respectively. The pedunculopontine tract (PPT) was studied using tractography. RS fMRI data were analyzed using a model free approach investigating the main sensorimotor and cognitive brain networks. Multiple regression models were performed to assess the relationships between structural, functional, and clinical/cognitive variables. Analysis of GM and WM structural abnormalities was replicated in an independent sample including 28 PD-FoG patients, 25 PD patients without FoG, and 30 healthy controls who performed MRI scans on a 1.5 T scanner. Results: Compared with controls, no GM atrophy was found in PD-FoG cases. PD-FoG patients showed WM damage of the PPT, corpus callosum, corticospinal tract, cingulum, superior longitudinal fasciculus, and WM underneath the primary motor, premotor, prefrontal, orbitofrontal, and inferior parietal cortices, bilaterally. In PD-FoG, right PTT damage was associated with a greater disease severity. Analysis on the independent PD sample showed similar findings in PD-FoG patients relative to controls as well as WM damage of the genu and body of the corpus callosum and right parietal WM in PD-FoG relative to PD no-FoG patients. RS fMRI analysis showed that PD-FoG is associated with a decreased functional connectivity of the primary motor cortex and supplementary motor area bilaterally in the sensorimotor network, frontoparietal regions in the default mode network, and occipital cortex in the visual associative network. Conclusions: This study suggests that FoG in PD can be the result of a poor structural and functional integration between motor and extramotor (cognitive) neural systems. Hum Brain Mapp 36:5064-5078, 2015. © 2015 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication Cognitive impairment and structural brain damage in multiple system atrophy-parkinsonian variant(2020) ;Caso, Francesca (35785657000) ;Canu, Elisa (25225458900) ;Lukic, Milica Jecmenica (35801126700) ;Petrovic, Igor N. (7004083314) ;Fontana, Andrea (35573405800) ;Nikolic, Ivan (25929403000) ;Kostic, Vladimir S. (57189017751) ;Filippi, Massimo (7202268530)Agosta, Federica (6701687853)In this multiparametric, cross-sectional study, we aimed to investigate cognitive impairment and brain structural changes in patients with multiple system atrophy (MSA)-parkinsonian variant (MSA-p). Twenty-six MSA-p patients and 19 controls underwent clinical and neuropsychological evaluation and 1.5 T brain MRI scan. Cortical thickness measures and volumes of deep grey matter structures were obtained. A regression analysis correlated MRI metrics with clinical features in MSA-p patients. Almost 46% of MSA-p patients showed a mild cognitive impairment involving mainly attentive–executive and memory domains. Apathy and depression were found in half of MSA-p patients. MSA-p patients showed significant cortical thinning of fronto-temporal–parietal regions and atrophy of periaqueductal grey matter, left cerebellar hemisphere, left pallidum and bilateral putamen, compared to controls. Cortical thinning in temporal regions correlated with global cognitive status and memory impairment. Grey matter cerebellar atrophy correlated with motor deficits. MSA-p patients showed a multidomain cognitive impairment with a prominent cortical damage in anterior more than posterior brain regions and grey matter volume reduction in subcortical structures. Cortical and subcortical structural changes might lead to cognitive dysfunction in MSA-p. © 2019, Springer-Verlag GmbH Germany, part of Springer Nature. - Some of the metrics are blocked by yourconsent settings
Publication Cognitive impairment and structural brain damage in multiple system atrophy-parkinsonian variant(2020) ;Caso, Francesca (35785657000) ;Canu, Elisa (25225458900) ;Lukic, Milica Jecmenica (35801126700) ;Petrovic, Igor N. (7004083314) ;Fontana, Andrea (35573405800) ;Nikolic, Ivan (25929403000) ;Kostic, Vladimir S. (57189017751) ;Filippi, Massimo (7202268530)Agosta, Federica (6701687853)In this multiparametric, cross-sectional study, we aimed to investigate cognitive impairment and brain structural changes in patients with multiple system atrophy (MSA)-parkinsonian variant (MSA-p). Twenty-six MSA-p patients and 19 controls underwent clinical and neuropsychological evaluation and 1.5 T brain MRI scan. Cortical thickness measures and volumes of deep grey matter structures were obtained. A regression analysis correlated MRI metrics with clinical features in MSA-p patients. Almost 46% of MSA-p patients showed a mild cognitive impairment involving mainly attentive–executive and memory domains. Apathy and depression were found in half of MSA-p patients. MSA-p patients showed significant cortical thinning of fronto-temporal–parietal regions and atrophy of periaqueductal grey matter, left cerebellar hemisphere, left pallidum and bilateral putamen, compared to controls. Cortical thinning in temporal regions correlated with global cognitive status and memory impairment. Grey matter cerebellar atrophy correlated with motor deficits. MSA-p patients showed a multidomain cognitive impairment with a prominent cortical damage in anterior more than posterior brain regions and grey matter volume reduction in subcortical structures. Cortical and subcortical structural changes might lead to cognitive dysfunction in MSA-p. © 2019, Springer-Verlag GmbH Germany, part of Springer Nature. - Some of the metrics are blocked by yourconsent settings
Publication Mild cognitive impairment in Parkinson's disease is associated with a distributed pattern of brain white matter damage(2014) ;Agosta, Federica (6701687853) ;Canu, Elisa (25225458900) ;Stefanova, Elka (7004567022) ;Sarro, Lidia (38562146800) ;Tomić, Aleksandra (26654535200) ;Špica, Vladana (55324145700) ;Comi, Giancarlo (7201788288) ;Kostić, Vladimir S. (57189017751)Filippi, Massimo (7202268530)This study assesses the patterns of gray matter (GM) and white matter (WM) damage in patients with Parkinson's disease and mild cognitive impairment (PD-MCI) compared with healthy controls and cognitively unimpaired PD patients (PD-Cu). Three-dimensional T1-weighted and diffusion tensor (DT) magnetic resonance imaging (MRI) scans were obtained from 43 PD patients and 33 healthy controls. Cognition was assessed using a neuropsychological battery. Tract-based spatial statistics was applied to compare DT MRI indices between groups on a voxel-by-voxel basis. Voxel-based morphometry was performed to assess GM atrophy. Thirty PD patients were classified as MCI. Compared with healthy controls, PD-Cu and PD-MCI patients did not have GM atrophy. No region of WM damage was found in PD-Cu patients when compared with healthy controls. Relative to healthy controls and PD-Cu patients, PD-MCI patients showed a distributed pattern of WM abnormalities in the anterior and superior corona radiata, genu, and body of the corpus callosum, and anterior inferior fronto-occipital, uncinate, and superior longitudinal fasciculi, bilaterally. Subtle cognitive decline in PD is associated with abnormalities of frontal and interhemispheric WM connections, and not with GM atrophy. DT MRI might contribute to the identification of structural changes in PD-MCI patients prior to the development of dementia. © 2013 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication Mild cognitive impairment in Parkinson's disease is associated with a distributed pattern of brain white matter damage(2014) ;Agosta, Federica (6701687853) ;Canu, Elisa (25225458900) ;Stefanova, Elka (7004567022) ;Sarro, Lidia (38562146800) ;Tomić, Aleksandra (26654535200) ;Špica, Vladana (55324145700) ;Comi, Giancarlo (7201788288) ;Kostić, Vladimir S. (57189017751)Filippi, Massimo (7202268530)This study assesses the patterns of gray matter (GM) and white matter (WM) damage in patients with Parkinson's disease and mild cognitive impairment (PD-MCI) compared with healthy controls and cognitively unimpaired PD patients (PD-Cu). Three-dimensional T1-weighted and diffusion tensor (DT) magnetic resonance imaging (MRI) scans were obtained from 43 PD patients and 33 healthy controls. Cognition was assessed using a neuropsychological battery. Tract-based spatial statistics was applied to compare DT MRI indices between groups on a voxel-by-voxel basis. Voxel-based morphometry was performed to assess GM atrophy. Thirty PD patients were classified as MCI. Compared with healthy controls, PD-Cu and PD-MCI patients did not have GM atrophy. No region of WM damage was found in PD-Cu patients when compared with healthy controls. Relative to healthy controls and PD-Cu patients, PD-MCI patients showed a distributed pattern of WM abnormalities in the anterior and superior corona radiata, genu, and body of the corpus callosum, and anterior inferior fronto-occipital, uncinate, and superior longitudinal fasciculi, bilaterally. Subtle cognitive decline in PD is associated with abnormalities of frontal and interhemispheric WM connections, and not with GM atrophy. DT MRI might contribute to the identification of structural changes in PD-MCI patients prior to the development of dementia. © 2013 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication Multiparametric MRI to distinguish early onset Alzheimer's disease and behavioural variant of frontotemporal dementia(2017) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Mandic-Stojmenovic, Gorana (55780903300) ;Stojković, Tanja (57211211787) ;Stefanova, Elka (7004567022) ;Inuggi, Alberto (8325245600) ;Imperiale, Francesca (55632966200) ;Copetti, Massimiliano (24474249000) ;Kostic, Vladimir S. (57189017751)Filippi, Massimo (7202268530)This prospective study explored whether an approach combining structural [cortical thickness and white matter (WM) microstructure] and resting state functional MRI can aid differentiation between 62 early onset Alzheimer's disease (EOAD) and 27 behavioural variant of frontotemporal dementia (bvFTD) patients. Random forest and receiver operator characteristic curve analyses assessed the ability of MRI in classifying the two clinical syndromes. All patients showed a distributed pattern of brain alterations relative to controls. Compared to bvFTD, EOAD patients showed bilateral inferior parietal cortical thinning and decreased default mode network functional connectivity. Compared to EOAD, bvFTD patients showed bilateral orbitofrontal and temporal cortical thinning, and WM damage of the corpus callosum, bilateral uncinate fasciculus, and left superior longitudinal fasciculus. Random forest analysis revealed that left inferior parietal cortical thickness (accuracy 0.78, specificity 0.76, sensitivity 0.83) and WM integrity of the right uncinate fasciculus (accuracy 0.81, specificity 0.96, sensitivity 0.43) were the best predictors of clinical diagnosis. The combination of cortical thickness and DT MRI measures was able to distinguish patients with EOAD and bvFTD with accuracy 0.82, specificity 0.76, and sensitivity 0.96. The diagnostic ability of MRI models was confirmed in a subsample of patients with biomarker-based clinical diagnosis. Multiparametric MRI is useful to identify brain alterations which are specific to EOAD and bvFTD. A severe cortical involvement is suggestive of EOAD, while a prominent WM damage is indicative of bvFTD. © 2017 The Authors - Some of the metrics are blocked by yourconsent settings
Publication Multiparametric MRI to distinguish early onset Alzheimer's disease and behavioural variant of frontotemporal dementia(2017) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Mandic-Stojmenovic, Gorana (55780903300) ;Stojković, Tanja (57211211787) ;Stefanova, Elka (7004567022) ;Inuggi, Alberto (8325245600) ;Imperiale, Francesca (55632966200) ;Copetti, Massimiliano (24474249000) ;Kostic, Vladimir S. (57189017751)Filippi, Massimo (7202268530)This prospective study explored whether an approach combining structural [cortical thickness and white matter (WM) microstructure] and resting state functional MRI can aid differentiation between 62 early onset Alzheimer's disease (EOAD) and 27 behavioural variant of frontotemporal dementia (bvFTD) patients. Random forest and receiver operator characteristic curve analyses assessed the ability of MRI in classifying the two clinical syndromes. All patients showed a distributed pattern of brain alterations relative to controls. Compared to bvFTD, EOAD patients showed bilateral inferior parietal cortical thinning and decreased default mode network functional connectivity. Compared to EOAD, bvFTD patients showed bilateral orbitofrontal and temporal cortical thinning, and WM damage of the corpus callosum, bilateral uncinate fasciculus, and left superior longitudinal fasciculus. Random forest analysis revealed that left inferior parietal cortical thickness (accuracy 0.78, specificity 0.76, sensitivity 0.83) and WM integrity of the right uncinate fasciculus (accuracy 0.81, specificity 0.96, sensitivity 0.43) were the best predictors of clinical diagnosis. The combination of cortical thickness and DT MRI measures was able to distinguish patients with EOAD and bvFTD with accuracy 0.82, specificity 0.76, and sensitivity 0.96. The diagnostic ability of MRI models was confirmed in a subsample of patients with biomarker-based clinical diagnosis. Multiparametric MRI is useful to identify brain alterations which are specific to EOAD and bvFTD. A severe cortical involvement is suggestive of EOAD, while a prominent WM damage is indicative of bvFTD. © 2017 The Authors - Some of the metrics are blocked by yourconsent settings
Publication Role of habenula and amygdala dysfunction in Parkinson disease patients with punding(2017) ;Markovic, Vladana (55324145700) ;Agosta, Federica (6701687853) ;Canu, Elisa (25225458900) ;Inuggi, Alberto (8325245600) ;Petrovic, Igor (7004083314) ;Stankovic, Iva (58775209600) ;Imperiale, Francesca (55632966200) ;Stojkovic, Tanja (57211211787) ;Kostic, Vladimir S. (57189017751)Filippi, Massimo (7202268530)Objective: To assess whether a functional dysregulation of the habenula and amygdala, as modulators of the reward brain circuit, contributes to Parkinson disease (PD) punding. Methods: Structural and resting-state functional MRI were obtained from 22 patients with PD punding, 30 patients with PD without any impulsive-compulsive behavior (ICB) matched for disease stage and duration, motor impairment, and cognitive status, and 30 healthy controls. Resting-state functional connectivity of the habenula and amygdala bilaterally was assessed using a seed-based approach. Habenula and amygdala volumes and cortical thickness measures were obtained. Results: Compared to both healthy controls and PD cases without any ICB (PD-no ICB), PD-punding patients showed higher functional connectivity of habenula and amygdala with thalamus and striatum bilaterally, and lower connectivity between bilateral habenula and left frontal and precentral cortices. In PD-punding relative to PD-no ICB patients, a lower functional connectivity between right amygdala and hippocampus was also observed. Habenula and amygdala volumes were not different among groups. PD-punding patients showed a cortical thinning of the left superior frontal and precentral gyri and right middle temporal gyrus and isthmus cingulate compared to healthy controls, and of the right inferior frontal gyrus compared to both controls and PD-no ICB patients. Conclusions: A breakdown of the connectivity among the crucial nodes of the reward circuit (i.e., habenula, amygdala, basal ganglia, frontal cortex) might be a contributory factor to punding in PD. This study provides potential instruments to detect and monitor punding in patients with PD. © 2017 American Academy of Neurology. - Some of the metrics are blocked by yourconsent settings
Publication Structural brain connectome and cognitive impairment in Parkinson disease(2017) ;Galantucci, Sebastiano (36466328000) ;Agosta, Federica (6701687853) ;Stefanova, Elka (7004567022) ;Basaia, Silvia (56830447300) ;Van Den Heuvel, Martijn P. (24333539900) ;Stojković, Tanja (57211211787) ;Canu, Elisa (25225458900) ;Stanković, Iva (58775209600) ;Spica, Vladana (55324145700) ;Copetti, Massimiliano (24474249000) ;Gagliardi, Delia (57200126382) ;Kostić, Vladimir S. (57189017751)Filippi, Massimo (7202268530)Purpose: To investigate the structural brain connectome in patients with Parkinson disease (PD) and mild cognitive impairment (MCI) and in patients with PD without MCI. Materials and Methods: This prospective study was approved by the local ethics committees, and written informed consent was obtained from all subjects prior to enrollment. The individual structural brain connectome of 170 patients with PD (54 with MCI, 116 without MCI) and 41 healthy control subjects was obtained by using deterministic diffusion-tensor tractography. A network-based statistic was used to assess structural connectivity differences among groups. Results: Patients with PD and MCI had global network alterations when compared with both control subjects and patients with PD without MCI (range, P = .004 to P = .048). Relative to control subjects, patients with PD and MCI had a large basal ganglia and frontoparietal network with decreased fractional anisotropy (FA) in the right hemisphere and a subnetwork with increased mean diffusivity (MD) involving similar regions bilaterally (P <.01). When compared with patients with PD without MCI, those with PD and MCI had a network with decreased FA, including basal ganglia and frontotemporoparietal regions bilaterally (P, .05). Similar findings were obtained by adjusting for motor disability (P <.05, permutation-corrected P = .06). At P <.01, patients with PD and MCI did not show network alterations relative to patients with PD without MCI. Network FA and MD values were used to differentiate patients with PD and MCI from healthy control subjects and patients with PD without MCI with fair to good accuracy (cross-validated area under the receiver operating characteristic curve [principal + secondary connected components] range, 0.75-0.85). Conclusion: A disruption of structural connections between brain areas forming a network contributes to determine an altered information integration and organization and thus cognitive deficits in patients with PD. These results provide novel information concerning the structural substrates of MCI in patients with PD and may offer markers that can be used to differentiate between patients with PD and MCI and patients with PD without MCI. © RSNA, 2016. - Some of the metrics are blocked by yourconsent settings
Publication The cumulative effect of genetic polymorphisms on depression and brain structural integrity(2016) ;Kostic, Milutin (56567649800) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Munjiza, Ana (55583599900) ;Novakovic, Ivana (6603235567) ;Dobricic, Valerija (22952783800) ;Maria Ferraro, Pilar (56567579800) ;Miler Jerkovic, Vera (55027360300) ;Pekmezovic, Tatjana (7003989932) ;Lecic Tosevski, Dusica (6602315043)Filippi, Massimo (7202268530)In major depressive disorder (MDD), the need to study multiple-gene effect on brain structure is emerging. Our aim was to assess the effect of accumulation of specific SERT, BDNF and COMT gene functional polymorphisms on brain structure in MDD patients. Seventy-seven MDD patients and 66 controls underwent a clinical assessment, genetic testing and MRI scan. Compared with controls, patients were more BDNF-Val homozygotes, COMT-Met carriers and SERT-L' carriers. Thus, subjects were split into three groups: 1. High-frequency susceptibility polymorphism group (hfSP, subjects with all three SPs); 2. Intermediate-frequency SP group (ifSP, two SPs); and 3. Low-frequency SP group (lfSP, one/none SP). Cortical thickness, volumetry of hippocampus, amygdala and subcortical structures, and white matter (WM) tract integrity were assessed. Compared to controls, hfSP patients showed thinning of the middle frontal cortex bilaterally, left frontal pole, and right lateral occipital cortex, and smaller hippocampal volume bilaterally; and both hfSP and lfSP patient groups showed thinning of the left inferior parietal cortex and reduced WM integrity of the corpus callosum. Compared to patients, hfSP controls showed greater integrity of the fronto-occipital cortices and corpus callosum. We showed that cortical prefrontal and occipital damage of MDD patients is modulated by the SP accumulation, while damage to the parietal cortex and corpus callosum seem to be independent of genetic accumulation. HfSP controls may experience protective mechanisms leading to a preserved integrity of critical cortical and WM regions. Investigating the effect of multiple genes is promising to understand the pathological mechanisms underlying MDD. Hum Brain Mapp 37:2173-2184, 2016. © 2016 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication The cumulative effect of genetic polymorphisms on depression and brain structural integrity(2016) ;Kostic, Milutin (56567649800) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Munjiza, Ana (55583599900) ;Novakovic, Ivana (6603235567) ;Dobricic, Valerija (22952783800) ;Maria Ferraro, Pilar (56567579800) ;Miler Jerkovic, Vera (55027360300) ;Pekmezovic, Tatjana (7003989932) ;Lecic Tosevski, Dusica (6602315043)Filippi, Massimo (7202268530)In major depressive disorder (MDD), the need to study multiple-gene effect on brain structure is emerging. Our aim was to assess the effect of accumulation of specific SERT, BDNF and COMT gene functional polymorphisms on brain structure in MDD patients. Seventy-seven MDD patients and 66 controls underwent a clinical assessment, genetic testing and MRI scan. Compared with controls, patients were more BDNF-Val homozygotes, COMT-Met carriers and SERT-L' carriers. Thus, subjects were split into three groups: 1. High-frequency susceptibility polymorphism group (hfSP, subjects with all three SPs); 2. Intermediate-frequency SP group (ifSP, two SPs); and 3. Low-frequency SP group (lfSP, one/none SP). Cortical thickness, volumetry of hippocampus, amygdala and subcortical structures, and white matter (WM) tract integrity were assessed. Compared to controls, hfSP patients showed thinning of the middle frontal cortex bilaterally, left frontal pole, and right lateral occipital cortex, and smaller hippocampal volume bilaterally; and both hfSP and lfSP patient groups showed thinning of the left inferior parietal cortex and reduced WM integrity of the corpus callosum. Compared to patients, hfSP controls showed greater integrity of the fronto-occipital cortices and corpus callosum. We showed that cortical prefrontal and occipital damage of MDD patients is modulated by the SP accumulation, while damage to the parietal cortex and corpus callosum seem to be independent of genetic accumulation. HfSP controls may experience protective mechanisms leading to a preserved integrity of critical cortical and WM regions. Investigating the effect of multiple genes is promising to understand the pathological mechanisms underlying MDD. Hum Brain Mapp 37:2173-2184, 2016. © 2016 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication The topography of brain damage at different stages of parkinson's disease(2013) ;Agosta, Federica (6701687853) ;Canu, Elisa (25225458900) ;Stojković, Tanja (57211211787) ;Pievani, Michela (24476859800) ;Tomić, Aleksandra (26654535200) ;Sarro, Lidia (38562146800) ;Dragašević, Nataša (59157743200) ;Copetti, Massimiliano (24474249000) ;Comi, Giancarlo (7201788288) ;Kostić, Vladimir S. (57189017751)Filippi, Massimo (7202268530)This study investigated gray matter (GM) and white matter (WM) damage in 89 patients at different clinical stages of Parkinson's disease (PD) (17 early, 46 mild, 14 moderate, and 12 severe) to differentiate the trajectories of tissue injury in this condition. PD patients had a very little GM atrophy even at the more advanced stages of the disease. Microstructural damage to the WM occurs with increasing PD severity and involves the brainstem, thalamocortical pathways, olfactory tracts, as well as the major interhemispheric, limbic, and extramotor association tracts. The most marked WM damage was found in moderate vs. mild cases. WM damage correlated with the degree of global cognitive deficits. WM abnormalities beyond the nigrostriatal system accumulate with increasing PD severity. WM damage is likely to contribute to the more severe motor and nonmotor dysfunctions occurring in patients at the later stages. © 2012 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication The topography of brain damage at different stages of parkinson's disease(2013) ;Agosta, Federica (6701687853) ;Canu, Elisa (25225458900) ;Stojković, Tanja (57211211787) ;Pievani, Michela (24476859800) ;Tomić, Aleksandra (26654535200) ;Sarro, Lidia (38562146800) ;Dragašević, Nataša (59157743200) ;Copetti, Massimiliano (24474249000) ;Comi, Giancarlo (7201788288) ;Kostić, Vladimir S. (57189017751)Filippi, Massimo (7202268530)This study investigated gray matter (GM) and white matter (WM) damage in 89 patients at different clinical stages of Parkinson's disease (PD) (17 early, 46 mild, 14 moderate, and 12 severe) to differentiate the trajectories of tissue injury in this condition. PD patients had a very little GM atrophy even at the more advanced stages of the disease. Microstructural damage to the WM occurs with increasing PD severity and involves the brainstem, thalamocortical pathways, olfactory tracts, as well as the major interhemispheric, limbic, and extramotor association tracts. The most marked WM damage was found in moderate vs. mild cases. WM damage correlated with the degree of global cognitive deficits. WM abnormalities beyond the nigrostriatal system accumulate with increasing PD severity. WM damage is likely to contribute to the more severe motor and nonmotor dysfunctions occurring in patients at the later stages. © 2012 Wiley Periodicals, Inc. - Some of the metrics are blocked by yourconsent settings
Publication White matter tract alterations in Parkinson's disease patients with punding(2017) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Markovic, Vladana (55324145700) ;Petrovic, Igor (7004083314) ;Stankovic, Iva (58775209600) ;Imperiale, Francesca (55632966200) ;Stojkovic, Tanja (57211211787) ;Copetti, Massimiliano (24474249000) ;Kostic, Vladimir S. (57189017751)Filippi, Massimo (7202268530)Objective To assess brain white matter tract alterations in patients with Parkinson's disease and punding (PD-punding) compared with controls and PD cases without any impulsive-compulsive behaviour. Methods Forty-nine PD patients (21 PD-punding and 28 PD with no impulsive-compulsive behaviours) and 28 controls were consecutively recruited. Clinical, cognitive and psychopathological evaluations were performed. Diffusion tensor MRI metrics of the main white matter tracts were assessed using a tractography approach. Results Compared with controls, both PD groups showed white matter microstructural alterations of the left pedunculopontine tract and splenium of the corpus callosum. PD-punding patients showed a further damage to the right pedunculopontine tract and uncinate fasciculus, genu of the corpus callosum, and left parahippocampal tract relative to controls. When adjusting for depression and/or apathy severity, a greater damage of the genu of the corpus callosum and the left pedunculopontine tract was found in PD-punding compared with patients with no impulsive-compulsive behaviours. Conclusions PD-punding is associated with a disconnection between midbrain, limbic and white matter tracts projecting to the frontal cortices. These alterations are at least partially independent of their psychopathological changes. Diffusion tensor MRI is a powerful tool for understanding the neural substrates underlying punding in PD. © 2017 Elsevier Ltd - Some of the metrics are blocked by yourconsent settings
Publication White matter tract alterations in Parkinson's disease patients with punding(2017) ;Canu, Elisa (25225458900) ;Agosta, Federica (6701687853) ;Markovic, Vladana (55324145700) ;Petrovic, Igor (7004083314) ;Stankovic, Iva (58775209600) ;Imperiale, Francesca (55632966200) ;Stojkovic, Tanja (57211211787) ;Copetti, Massimiliano (24474249000) ;Kostic, Vladimir S. (57189017751)Filippi, Massimo (7202268530)Objective To assess brain white matter tract alterations in patients with Parkinson's disease and punding (PD-punding) compared with controls and PD cases without any impulsive-compulsive behaviour. Methods Forty-nine PD patients (21 PD-punding and 28 PD with no impulsive-compulsive behaviours) and 28 controls were consecutively recruited. Clinical, cognitive and psychopathological evaluations were performed. Diffusion tensor MRI metrics of the main white matter tracts were assessed using a tractography approach. Results Compared with controls, both PD groups showed white matter microstructural alterations of the left pedunculopontine tract and splenium of the corpus callosum. PD-punding patients showed a further damage to the right pedunculopontine tract and uncinate fasciculus, genu of the corpus callosum, and left parahippocampal tract relative to controls. When adjusting for depression and/or apathy severity, a greater damage of the genu of the corpus callosum and the left pedunculopontine tract was found in PD-punding compared with patients with no impulsive-compulsive behaviours. Conclusions PD-punding is associated with a disconnection between midbrain, limbic and white matter tracts projecting to the frontal cortices. These alterations are at least partially independent of their psychopathological changes. Diffusion tensor MRI is a powerful tool for understanding the neural substrates underlying punding in PD. © 2017 Elsevier Ltd
