Differential dopaminergic modulation of spontaneous cortico-subthalamic activity in Parkinson's disease.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34085932.
- Also identified by DOI 10.7554/eLife.66057 and PMC identifier 8177893.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Pathological oscillations including elevated beta activity in the subthalamic nucleus (STN) and between STN and cortical areas are a hallmark of neural activity in Parkinson's disease (PD). Oscillations also play an important role in normal physiological processes and serve distinct functional roles at different points in time. We characterised the effect of dopaminergic medication on oscillatory whole-brain networks in PD in a time-resolved manner by employing a hidden Markov model on combined STN local field potentials and magnetoencephalography (MEG) recordings from 17 PD patients. Dopaminergic medication led to coherence within the medial and orbitofrontal cortex in the delta/theta frequency range. This is in line with known side effects of dopamine treatment such as deteriorated executive functions in PD. In addition, dopamine caused the beta band activity to switch from an STN-mediated motor network to a frontoparietal-mediated one. In contrast, dopamine did not modify local STN-STN coherence in PD. STN-STN synchrony emerged both on and off medication. By providing electrophysiological evidence for the differential effects of dopaminergic medication on the discovered networks, our findings open further avenues for electrical and pharmacological interventions in PD.
Medical subject headings
- Aged
- Antiparkinson Agents
- Antiparkinson Agents/therapeutic use
- Brain Waves
- Brain Waves/drug effects
- Dopamine Agents
- Dopamine Agents/therapeutic use
- Dopaminergic Neurons
- Dopaminergic Neurons/drug effects
- Dopaminergic Neurons/metabolism
- Evoked Potentials, Motor
- Evoked Potentials, Motor/drug effects
- Female
- Humans
- Levodopa
- Levodopa/therapeutic use
- Machine Learning
- Magnetoencephalography
- Male
- Markov Chains
- Middle Aged
- Motor Cortex
- Motor Cortex/drug effects
- Motor Cortex/metabolism
- Motor Cortex/physiopathology
- Parkinson Disease
- Parkinson Disease/diagnosis
- Parkinson Disease/drug therapy
- Parkinson Disease/metabolism
- Parkinson Disease/physiopathology
- Signal Processing, Computer-Assisted
- Subthalamic Nucleus
- Subthalamic Nucleus/drug effects
- Subthalamic Nucleus/metabolism
- Subthalamic Nucleus/physiopathology
- Time Factors
- Treatment Outcome