A pilot study of essential tremor: cerebellar GABA+/Glx ratio is correlated with tremor severity.

Cerebellum Ataxias

Department of Neurosurgery and Department of Biomedical and Clinical Sciences, Linköping University, Linköping, Sweden.

Published: June 2020

AI Article Synopsis

  • Essential tremor, a common movement disorder, involves the cerebellum and thalamus, and this study examines the balance of inhibitory (GABA+) and excitatory (Glx) neurotransmitters in patients with severe tremors.
  • Using a 3 T MR system, they measured GABA+ and Glx concentrations in 10 patients and 6 healthy controls, finding a positive correlation between cerebellar GABA+/Glx ratios and tremor severity.
  • The results suggest that while GABA+ levels remained constant, a decrease in Glx may contribute to increased tremor disability, pointing to an imbalance between excitatory and inhibitory neurotransmitters in essential tremor patients.

Article Abstract

Objective: Essential tremor is a common movement disorder with an unclear origin. Emerging evidence suggests the role of the cerebellum and the thalamus in tremor pathophysiology. We examined the two main neurotransmitters acting inhibitory (GABA+) and excitatory (Glx) respectively, in the thalamus and cerebellum, in patients diagnosed with severe essential tremor. Furthermore, we also investigated the relationship between determined neurotransmitter concentrations and tremor severity in the essential tremor patients.

Methods: Ten essential tremor patients (prior to deep brain stimulation surgery) and six healthy controls, were scanned using a 3 T MR system. GABA+ and Glx concentrations were measured using magnetic resonance spectroscopy (MRS) performed using single voxel MEGA-PRESS. For the purpose of assessing the tremor severity, the essential tremor rating scale (ETRS) was used in accordance with Fahn, Tolosa, and Marin.

Results: We demonstrated that the cerebellar GABA+/Glx ratio was positively correlated to the ETRS (r = 0.70, p = 0.03) in essential tremor. Cerebellar and thalamic GABA+ and Glx concentrations did not show any significant difference when comparing essential tremor patients with healthy controls, at the group level.

Conclusion: We demonstrated a positive correlation between increasing tremor disability and the ratio of GABA+/ Glx in the cerebellum of essential tremor patients. This highlights the impact of an altered balance of the excitatory and inhibitory neurotransmitters in tremor severity. Rather than a change in GABA+, which was constant, we attribute this finding to an overall decrease of Glx.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7318770PMC
http://dx.doi.org/10.1186/s40673-020-00116-yDOI Listing

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