• Title of article

    Neural dynamics of short and medium-term motor control effects of levodopa therapy in Parkinsonʹs disease

  • Author/Authors

    Contreras-Vidal، نويسنده , , José L and Poluha، نويسنده , , Patricia and Teulings، نويسنده , , Hans-Leo and Stelmach، نويسنده , , George E، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1998
  • Pages
    23
  • From page
    57
  • To page
    79
  • Abstract
    A neural network model of movement control in normal and Parkinsonʹs disease (PD) conditions is proposed to simulate the time-varying dose-response relationship underlying the effects of levodopa on movement amplitude and movement duration in PD patients. Short and long-term dynamics of cell activations and neurotransmitter mechanisms underlying the differential expression of neuropeptide messenger RNA within the basal ganglia striatum are modeled to provide a mechanistic account for the effects of levodopa medication on motor performance (e.g. the pharmacodynamics). Experimental and neural network simulation data suggest that levodopa therapy in Parkinsonʹs disease has differential effects on cell activities, striatal neuropeptides, and motor behavior. In particular, it is shown how dopamine depletion in the striatum may modulate differentially the level of substance P and enkephalin messenger RNA in the direct and indirect basal ganglia pathways. This dissociation in the magnitude and timing of peptide expression causes an imbalance in the opponently organized basal ganglia pathways which results in Parkinsonian motor deficits. The model is validated with experimental data obtained from handwriting movements performed by PD subjects before and after medication intake. The results suggest that fine motor control analysis and network modeling of the effects of dopamine in motor control are useful tools in drug development and in the optimization of pharmacological therapy in PD patients.
  • Keywords
    Levodopa , Micrographia , Handwriting , Neurotransmitters , bradykinesia , Basal ganglia , Dopamine , neural network
  • Journal title
    Artificial Intelligence In Medicine
  • Serial Year
    1998
  • Journal title
    Artificial Intelligence In Medicine
  • Record number

    1834891