Bilateral adaptive deep brain stimulation is effective in Parkinson's disease
Published 2015 View Full Article
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Title
Bilateral adaptive deep brain stimulation is effective in Parkinson's disease
Authors
Keywords
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Journal
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY
Volume 87, Issue 7, Pages 717-721
Publisher
BMJ
Online
2015-10-01
DOI
10.1136/jnnp-2015-310972
References
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Related references
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- Subthalamic local field potentials after seven-year deep brain stimulation in Parkinson's disease
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- Long-term Recordings of Local Field Potentials From Implanted Deep Brain Stimulation Electrodes
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- Return of bradykinesia after subthalamic stimulation ceases: Relationship to electrode location
- (2011) Scott Evan Cooper et al. EXPERIMENTAL NEUROLOGY
- Closed-Loop Deep Brain Stimulation Is Superior in Ameliorating Parkinsonism
- (2011) Boris Rosin et al. NEURON
- Surgical management of Parkinson’s disease
- (2010) Thomas Foltynie et al. Expert Review of Neurotherapeutics
- Bilateral symmetry and coherence of subthalamic nuclei beta band activity in Parkinson's disease
- (2009) Camille de Solages et al. EXPERIMENTAL NEUROLOGY
- Time dependent subthalamic local field potential changes after DBS surgery in Parkinson's disease
- (2009) Manuela Rosa et al. EXPERIMENTAL NEUROLOGY
- In vivoimpedance spectroscopy of deep brain stimulation electrodes
- (2009) Scott F Lempka et al. Journal of Neural Engineering
- Local field potential beta activity in the subthalamic nucleus of patients with Parkinson's disease is associated with improvements in bradykinesia after dopamine and deep brain stimulation
- (2008) N.J. Ray et al. EXPERIMENTAL NEUROLOGY
- Pathological synchronisation in the subthalamic nucleus of patients with Parkinson's disease relates to both bradykinesia and rigidity
- (2008) Andrea A. Kühn et al. EXPERIMENTAL NEUROLOGY
- Movement Disorder Society-sponsored revision of the Unified Parkinson's Disease Rating Scale (MDS-UPDRS): Scale presentation and clinimetric testing results
- (2008) Christopher G. Goetz et al. MOVEMENT DISORDERS
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