Cerebellar lobules and dentate nuclei mirror cortical force‐related‐BOLD responses: Beyond all (linear) expectations
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Summary
It is confirmed that there is cerebellar organization involving all grey matter structures that reflect functional segregation in the cortex, where Cerebellar lobules and dentate nuclei contribute to complex motor tasks with different BOLD response profiles in relation to the forces.
- Type
- article
- Published
- 2017-02-27
- Cited by
- 20
- References
- 92
- Access
- Open access
- OpenAlex
- https://openalex.org/W2592429767
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3352325
Keywords
Dentate nucleus, Cerebellum, Neuroscience, Cerebellar cortex, Psychology
References
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Cited by
- Physiology of the cerebellum.
- I See Your Effort: Force-Related BOLD Effects in an Extended Action Execution–Observation Network Involving the Cerebellum
- Learning to play badminton altered resting-state activity and functional connectivity of the cerebellar sub-regions in adults
- Intrinsic Functional Connectivity of Dentate Nuclei in Autism Spectrum Disorder
- Activation of cerebellum and basal ganglia during the observation and execution of manipulative actions
- BOLD response to multiple grip forces in MS: going beyond the main effect of movement in BA 4a and BA 4p
- Investigating the sub-regions of the superior parietal cortex using functional magnetic resonance imaging connectivity
- Blood Oxygenation Level-Dependent Response to Multiple Grip Forces in Multiple Sclerosis: Going Beyond the Main Effect of Movement in Brodmann Area 4a and 4p
- Motor and higher‐order functions topography of the human dentate nuclei identified with tractography and clustering methods
- Voxel-Wise Linearity Analysis of Increments and Decrements in BOLD Responses in Human Visual Cortex Using a Contrast Adaptation Paradigm
- Non-Linear Frequency Dependence of Neurovascular Coupling in the Cerebellar Cortex Implies Vasodilation–Vasoconstriction Competition
- How We Get a Grip: Microstructural Neural Correlates of Manual Grip Strength in Children
- Tractography-Based Parcellation of Cerebellar Dentate Nuclei via a Deep Nonnegative Matrix Factorization Clustering Method
- Long-term table tennis training alters dynamic functional connectivity and white matter microstructure in large scale brain regions.
- Microstructural neural correlates of maximal grip strength in autistic children: the role of the cortico-cerebellar network and attention-deficit/hyperactivity disorder features
- What Is the Role of the Dentate Nucleus in Normal and Abnormal Cerebellar Function?
- Progressive alterations of resting-state hypothalamic dysconnectivity in schizophrenia.
- Cerebellar control over inter-regional excitatory/inhibitory dynamics discriminates execution from observation of an action
- Immediate and sustained effects of acupuncture on the default mode network
- Non-linear frequency-dependence of neurovascular coupling in the cerebellar cortex implies vasodilation-vasoconstriction competition
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