Serotonergic loss in motor circuitries correlates with severity of action-postural tremor in PD.
cross_sectional · Level IV
Where this comes from
- Record sourced from PubMed, PMID 23596065.
- Also identified by DOI 10.1212/WNL.0b013e318292a31d and PMC identifier 3908354.
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Abstract
The underlying pathophysiology of tremor in Parkinson disease (PD) is unclear; however, it is known that tremor does not appear to be as responsive to dopaminergic medication as bradykinesia or rigidity. It is suggested that serotonergic dysfunction could have a role in tremor development. Using (11)C-DASB PET, a marker of serotonin transporter binding, and clinical observations, we have investigated function of serotonergic terminals in 12 patients with tremor-predominant and 12 with akinetic-rigid PD. Findings were compared with those of 12 healthy controls. Reductions of (11)C-DASB in caudate, putamen, and raphe nuclei significantly correlated with tremor severity on posture and action, but not with resting tremor. The tremor-predominant group also showed reductions of (11)C-DASB in other regions involved in motor circuitry, including the thalamus and Brodmann areas 4 and 10. Our findings support a role for serotonergic dysfunction in motor circuitries in the generation of postural tremor in PD.
Medical subject headings
- Motor Cortex
- Nerve Net
- Parkinson Disease
- Serotonin Plasma Membrane Transport Proteins
- Severity of Illness Index
- Tremor