Brain Stimulation for Neurological and Psychiatric Disorders, Current Status and Future Direction
- 1 April 2004
- journal article
- Published by Elsevier in The Journal of Pharmacology and Experimental Therapeutics
- Vol. 309 (1) , 1-7
- https://doi.org/10.1124/jpet.103.049718
Abstract
Interest in brain stimulation therapies has been rejuvenated over the last decade and brain stimulation therapy has become an alternative treatment for many neurological and psychiatric disorders, including Parkinson9s disease (PD), dystonia, pain, epilepsy, depression, and schizophrenia. The effects of brain stimulation on PD are well described, and this treatment has been widely used for such conditions worldwide. Treatments for other conditions are still in experimental stages and large-scale, well controlled studies are needed to refine the treatment procedures. In the treatment of intractable brain disorders, brain stimulation, especially transcranial magnetic stimulation (TMS), is an attractive alternative to surgical lesioning as it is relatively safe, reversible, and flexible. Brain stimulation, delivered either via deeply implanted electrodes or from a surface-mounted transcranial magnetic device, can alter abnormal neural circuits underlying brain disorders. The neural mechanisms mediating the beneficial effects of brain stimulation, however, are poorly understood. Conflicting theories and experimental data have been presented. It seems that the action of stimulation on brain circuitry is not limited to simple excitation or inhibition. Alterations of neural firing patterns and long-term effects on neurotransmitter and receptor systems may also play important roles in the therapeutic effects of brain stimulation. Future research on both the basic and clinical fronts will deepen our understanding of how brain stimulation works. Real-time computation of neural activity allows for integration of brain stimulation signals into ongoing neural processing. In this way abnormal circuit activity can be adjusted by optimal therapeutic brain stimulation paradigms.This publication has 65 references indexed in Scilit:
- Effects of High-Frequency Stimulation in the Internal Globus Pallidus on the Activity of Thalamic Neurons in the Awake MonkeyJournal of Neurophysiology, 2003
- Activation of the anterior cingulate cortex by thalamic stimulation in patients with chronic pain: a positron emission tomography studyJournal of Neurosurgery, 2000
- Transcranial magnetic stimulation induces alterations in brain monoaminesJournal Of Neural Transmission-Parkinsons Disease and Dementia Section, 1997
- Cerebellar Stimulation for Seizure Control: 17-Year StudyStereotactic and Functional Neurosurgery, 1992
- Microinjections of the γ-aminobutyrate antagonist, bicuculline methiodide, into the caudate-putamen prevent amygdala-kindled seizures in ratsBrain Research, 1987
- Therapeutic implications of modulation of metabolism and functional activity of cerebral cortex by chronic stimulation of cerebellum and thalamusBiological Psychiatry, 1985
- Evidence for opioid and non-opioid forms of stimulation-produced analgesia in the ratBrain Research, 1982
- Opiate and stimulus-produced analgesia: functional anatomy of a medullospinal pathway.Proceedings of the National Academy of Sciences, 1976
- Antagonism of Stimulation-Produced Analgesia by Naloxone, a Narcotic AntagonistScience, 1976
- Stimulation of internal capsule for relief of chronic painJournal of Neurosurgery, 1974