Abolition of spindle oscillations and 3-Hz absence seizurelike activity in the thalamus by using high-frequency stimulation: potential mechanism of action
- 1 September 2005
- journal article
- Published by Journal of Neurosurgery Publishing Group (JNSPG) in Journal of Neurosurgery
- Vol. 103 (3) , 538-545
- https://doi.org/10.3171/jns.2005.103.3.0538
Abstract
The mechanism of action whereby high-frequency stimulation (HFS) in the thalamus ameliorates tremor and epilepsy is unknown. The authors studied the effects of HFS on thalamocortical relay neurons in a ferret in vitro slice preparation to test the hypothesis that HFS abolishes synchronized oscillations by neurotransmitter release. Intracellular and extracellular electrophysiological recordings were made in thalamic slices. The neurons in the thalamic slice spontaneously generated spindle oscillations, and treatment with picrotoxin, a gamma-aminobutyric acid A receptor antagonist, resulted in 3- to 4-Hz absence seizurelike activity. High-frequency stimulation (stimulation parameters: 10-1000-microA amplitude; l00-microsec pulse width; 100-Hz frequency; 1-60 seconds) was applied using a concentric bipolar stimulating electrode placed adjacent to the recording electrodes. High-frequency stimulation within the thalamus generated inhibitory and excitatory postsynaptic potentials, membrane depolarization, an increase in action potential firing during the stimulation period, and abolished the spindle oscillations in the thalamocortical relay neurons. High-frequency stimulation applied to 20-microM picrotoxin-treated slices eliminated the 3- to 4-Hz absence seizurelike activity. High-frequency stimulation eliminates spontaneous spindle oscillations and picrotoxin-induced absence seizurelike activity in thalamic slices by synaptic neurotransmitter release; thus, HFS may abolish synchronous oscillatory activities such as those that generate tremor and seizures. Paradoxically, HFS, which is excitatory, and surgical lesions of the ventrointermedius thalamus, which are presumably inhibitory, both suppress tremors. This paradox is resolved by recognizing that HFS-mediated neurotransmitter release and thalamic surgery both disrupt the circuit generating tremor or seizure, albeit by different mechanisms.Keywords
This publication has 37 references indexed in Scilit:
- Neurotransmitter release from high-frequency stimulation of the subthalamic nucleusJournal of Neurosurgery, 2004
- On The Cellular and Network Bases of Epileptic SeizuresAnnual Review of Physiology, 2001
- A Comparison of Continuous Thalamic Stimulation and Thalamotomy for Suppression of Severe TremorNew England Journal of Medicine, 2000
- Abolition of Spindle Oscillations by Serotonin and Norepinephrine in the Ferret Lateral Geniculate and Perigeniculate Nuclei In VitroNeuron, 1996
- Chronic electrical stimulation of the ventralis intermedius nucleus of the thalamus as a treatment of movement disordersJournal of Neurosurgery, 1996
- Statistical prediction of the optimal site for thalamotomy in parkinsonian tremorMovement Disorders, 1995
- Cellular Mechanisms of a Synchronized Oscillation in the ThalamusScience, 1993
- Neurotransmitter actions in the thalamus and cerebral cortex and their role in neuromodulation of thalamocortical activityProgress in Neurobiology, 1992
- Electrophysiology and Pharmacology of the Corticothalamic Input to Lateral Thalamic Nuclei: an Intracellular Study in the CatEuropean Journal of Neuroscience, 1990
- Intracellular studies in the facial nucleus illustrating a simple new method for obtaining viable motoneurons in adult rat brain slicesSynapse, 1989