Synchronisation in the beta frequency-band--the bad boy of parkinsonism or an innocent bystander? - PubMed (original) (raw)
Comment
Synchronisation in the beta frequency-band--the bad boy of parkinsonism or an innocent bystander?
Alexandre Eusebio et al. Exp Neurol. 2009 May.
Abstract
Excessive synchronisation of basal ganglia neuronal activity in the beta frequency band has been implicated in Parkinson's disease. In a recent issue of Experimental Neurology, Bronte-Stewart, H., Barberini, C., Koop, M.M., Hill, B.C., Henderson, J.M., Wingeier, B., 2009. The STN beta-band profile in Parkinson's disease is stationary and shows prolonged attenuation after deep brain stimulation. Exp. Neurol. 215, 20-28. demonstrate that such activity is consistent over time and provide further evidence that deep brain stimulation is associated with its suppression. However, the extent to which beta synchrony has a mechanistic (rather than epiphenomenal) role in parkinsonism remains unclear, and the suppression of this activity by deep brain stimulation is contentious. This commentary discusses the evidence for and against a role for excessive beta synchrony in mediating the parkinsonian phenotype and in providing a possible mechanism to explain the therapeutic effects of deep brain stimulation in Parkinson's disease.
Comment on
- The STN beta-band profile in Parkinson's disease is stationary and shows prolonged attenuation after deep brain stimulation.
Bronte-Stewart H, Barberini C, Koop MM, Hill BC, Henderson JM, Wingeier B. Bronte-Stewart H, et al. Exp Neurol. 2009 Jan;215(1):20-8. doi: 10.1016/j.expneurol.2008.09.008. Epub 2008 Sep 27. Exp Neurol. 2009. PMID: 18929561 Clinical Trial.
References
- Bronte-Stewart H., Barberini C., Koop M.M., Hill B.C., Henderson J.M., Wingeier B. The STN beta-band profile in Parkinson's disease is stationary and shows prolonged attenuation after deep brain stimulation. Exp. Neurol. 2009;215:20–28. -PubMed
- Brown P. Oscillatory nature of human basal ganglia activity: relationship to the pathophysiology of Parkinson's disease. Mov. Disord. 2003;18:357–363. -PubMed
- Brown P., Eusebio A. Paradoxes of functional neurosurgery: clues from basal ganglia recordings. Mov. Disord. 2008;23:12–20. -PubMed
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