Striato‐cortical connections in Parkinson's and Alzheimer's diseases: Relation to cognition

ABSTRACT Background: Functional connectivity is abnormal in PD and in early Alzheimer's disease. Objectives: The objective of this study was to evaluate resting‐state striato‐cortical connectivity in PD and Alzheimer's disease and assess their relation to cognitive outcomes. Groups with mi...

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Published inMovement disorders Vol. 32; no. 6; pp. 917 - 922
Main Authors Anderkova, Lubomira, Barton, Marek, Rektorova, Irena
Format Journal Article
LanguageEnglish
Published United States 01.06.2017
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Abstract ABSTRACT Background: Functional connectivity is abnormal in PD and in early Alzheimer's disease. Objectives: The objective of this study was to evaluate resting‐state striato‐cortical connectivity in PD and Alzheimer's disease and assess their relation to cognitive outcomes. Groups with mild cognitive impairment as a result of different pathologies (PD vs. Alzheimer's disease) were also compared. Methods: Seed‐based connectivity of the dorsal, middle, and ventral striatum was analyzed in 111 patients using functional MRI. The correlation between connectivity at regions of between‐group differences and clinical outcomes was assessed. Results: Patients showed lower striatal connectivity than controls. Connectivity between the middle (associative) striatum and precuneus negatively correlated with executive functions in PD and with memory performance in Alzheimer's disease. PD with cognitive impairment showed decreased connectivity of the dorsal (motor) striatum when compared with early Alzheimer's disease. Conclusions: Striatal connectivity was reduced in patients when compared with controls. Similar compensatory mechanisms were employed to overcome various cognitive deficits in PD and Alzheimer's disease. © 2017 International Parkinson and Movement Disorder Society
AbstractList Functional connectivity is abnormal in PD and in early Alzheimer's disease. The objective of this study was to evaluate resting-state striato-cortical connectivity in PD and Alzheimer's disease and assess their relation to cognitive outcomes. Groups with mild cognitive impairment as a result of different pathologies (PD vs. Alzheimer's disease) were also compared. Seed-based connectivity of the dorsal, middle, and ventral striatum was analyzed in 111 patients using functional MRI. The correlation between connectivity at regions of between-group differences and clinical outcomes was assessed. Patients showed lower striatal connectivity than controls. Connectivity between the middle (associative) striatum and precuneus negatively correlated with executive functions in PD and with memory performance in Alzheimer's disease. PD with cognitive impairment showed decreased connectivity of the dorsal (motor) striatum when compared with early Alzheimer's disease. Striatal connectivity was reduced in patients when compared with controls. Similar compensatory mechanisms were employed to overcome various cognitive deficits in PD and Alzheimer's disease. © 2017 International Parkinson and Movement Disorder Society.
ABSTRACT Background: Functional connectivity is abnormal in PD and in early Alzheimer's disease. Objectives: The objective of this study was to evaluate resting‐state striato‐cortical connectivity in PD and Alzheimer's disease and assess their relation to cognitive outcomes. Groups with mild cognitive impairment as a result of different pathologies (PD vs. Alzheimer's disease) were also compared. Methods: Seed‐based connectivity of the dorsal, middle, and ventral striatum was analyzed in 111 patients using functional MRI. The correlation between connectivity at regions of between‐group differences and clinical outcomes was assessed. Results: Patients showed lower striatal connectivity than controls. Connectivity between the middle (associative) striatum and precuneus negatively correlated with executive functions in PD and with memory performance in Alzheimer's disease. PD with cognitive impairment showed decreased connectivity of the dorsal (motor) striatum when compared with early Alzheimer's disease. Conclusions: Striatal connectivity was reduced in patients when compared with controls. Similar compensatory mechanisms were employed to overcome various cognitive deficits in PD and Alzheimer's disease. © 2017 International Parkinson and Movement Disorder Society
BACKGROUNDFunctional connectivity is abnormal in PD and in early Alzheimer's disease.OBJECTIVESThe objective of this study was to evaluate resting-state striato-cortical connectivity in PD and Alzheimer's disease and assess their relation to cognitive outcomes. Groups with mild cognitive impairment as a result of different pathologies (PD vs. Alzheimer's disease) were also compared.METHODSSeed-based connectivity of the dorsal, middle, and ventral striatum was analyzed in 111 patients using functional MRI. The correlation between connectivity at regions of between-group differences and clinical outcomes was assessed.RESULTSPatients showed lower striatal connectivity than controls. Connectivity between the middle (associative) striatum and precuneus negatively correlated with executive functions in PD and with memory performance in Alzheimer's disease. PD with cognitive impairment showed decreased connectivity of the dorsal (motor) striatum when compared with early Alzheimer's disease.CONCLUSIONSStriatal connectivity was reduced in patients when compared with controls. Similar compensatory mechanisms were employed to overcome various cognitive deficits in PD and Alzheimer's disease. © 2017 International Parkinson and Movement Disorder Society.
Author Anderkova, Lubomira
Rektorova, Irena
Barton, Marek
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  givenname: Lubomira
  surname: Anderkova
  fullname: Anderkova, Lubomira
  organization: St. Anne's University Hospital and School of Medicine, Masaryk University
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  givenname: Marek
  surname: Barton
  fullname: Barton, Marek
  organization: Central European Institute of Technology, Masaryk University
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  givenname: Irena
  surname: Rektorova
  fullname: Rektorova, Irena
  email: irena.rektorova@fnusa.cz
  organization: St. Anne's University Hospital and School of Medicine, Masaryk University
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2017 International Parkinson and Movement Disorder Society.
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Issue 6
Keywords resting state functional connectivity
Parkinson's disease
cognition
striatum
Alzheimer's disease
Language English
License 2017 International Parkinson and Movement Disorder Society.
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Notes Nothing to report.
Relevant conflicts of interests/financial disclosures
This work was supported by the project Central European Institute of Technology 2020 (LQ1601) by the Ministry of Education, Youth and Sports of the Czech Republic; the EU Joint Programme – Neurodegenerative Disease Research (JPND) grant Pre‐clinical genotype‐phenotype Predictors of Alzheimer's disease and other dementias (APGeM); and the 15‐33854A grant from the Czech Ministry of Health.
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Snippet ABSTRACT Background: Functional connectivity is abnormal in PD and in early Alzheimer's disease. Objectives: The objective of this study was to evaluate...
Functional connectivity is abnormal in PD and in early Alzheimer's disease. The objective of this study was to evaluate resting-state striato-cortical...
BACKGROUNDFunctional connectivity is abnormal in PD and in early Alzheimer's disease.OBJECTIVESThe objective of this study was to evaluate resting-state...
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SubjectTerms Aged
Aged, 80 and over
Alzheimer Disease - complications
Alzheimer Disease - diagnostic imaging
Alzheimer Disease - physiopathology
Alzheimer's disease
Cerebral Cortex - diagnostic imaging
Cerebral Cortex - physiopathology
cognition
Cognitive Dysfunction - diagnostic imaging
Cognitive Dysfunction - etiology
Cognitive Dysfunction - physiopathology
Connectome - methods
Corpus Striatum - diagnostic imaging
Corpus Striatum - physiopathology
Executive Function - physiology
Female
Humans
Magnetic Resonance Imaging
Male
Middle Aged
Parkinson Disease - complications
Parkinson Disease - diagnostic imaging
Parkinson Disease - physiopathology
Parkinson's disease
resting state functional connectivity
striatum
Title Striato‐cortical connections in Parkinson's and Alzheimer's diseases: Relation to cognition
URI https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fmds.26956
https://www.ncbi.nlm.nih.gov/pubmed/28256044
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