Basal ganglia physiology and deep brain stimulation
Identifieur interne : 001E33 ( Main/Exploration ); précédent : 001E32; suivant : 001E34Basal ganglia physiology and deep brain stimulation
Auteurs : Andres M. Lozano [Canada] ; Brian J. Snyder [Canada] ; Clement Hamani [Canada] ; William D. Hutchison [Canada] ; Jonathan O. Dostrovsky [Canada]Source :
- Movement Disorders [ 0885-3185 ] ; 2010.
Descripteurs français
- Pascal (Inist)
English descriptors
- KwdEn :
- Action Potentials (physiology), Animals, Basal Ganglia (pathology), Basal Ganglia (physiology), Basal ganglion, Deep Brain Stimulation (methods), Deep brain stimulation, Humans, Microelectrode, Nervous system diseases, Neurons (physiology), Parkinson Disease (pathology), Parkinson Disease (therapy), Parkinson disease, Parkinson's disease, Physiology, Subthalamic nucleus, deep brain stimulation, globus pallidus, microelectrode recording, subthalamic nucleus.
- MESH :
- methods : Deep Brain Stimulation.
- pathology : Basal Ganglia, Parkinson Disease.
- physiology : Action Potentials, Basal Ganglia, Neurons.
- therapy : Parkinson Disease.
- Animals, Humans.
Abstract
Despite improvements in anatomic imaging of the basal ganglia, microelectrode recording is still an invaluable tool in locating appropriate targets for neurosurgical intervention. These recording also provide an unparalleled opportunity to study the pathophysiological aspects of diseases. This article reviews the principles of microelectrode recording in functional neurosurgery and discusses the pathologic neurophysiologic findings commonly encountered. It also highlights some of the potential mechanisms of action of both dopaminergic drugs and deep brain stimulation. In addition we review the recent work on pedunculopontine nucleus neurophysiology and trials of deep brain stimulation in that region for gait disturbances in Parkinson's disease. © 2010 Movement Disorder Society
Url:
DOI: 10.1002/mds.22714
Affiliations:
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Le document en format XML
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<term>Basal ganglion</term>
<term>Deep Brain Stimulation (methods)</term>
<term>Deep brain stimulation</term>
<term>Humans</term>
<term>Microelectrode</term>
<term>Nervous system diseases</term>
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<term>Parkinson Disease (therapy)</term>
<term>Parkinson disease</term>
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<term>deep brain stimulation</term>
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<front><div type="abstract" xml:lang="en">Despite improvements in anatomic imaging of the basal ganglia, microelectrode recording is still an invaluable tool in locating appropriate targets for neurosurgical intervention. These recording also provide an unparalleled opportunity to study the pathophysiological aspects of diseases. This article reviews the principles of microelectrode recording in functional neurosurgery and discusses the pathologic neurophysiologic findings commonly encountered. It also highlights some of the potential mechanisms of action of both dopaminergic drugs and deep brain stimulation. In addition we review the recent work on pedunculopontine nucleus neurophysiology and trials of deep brain stimulation in that region for gait disturbances in Parkinson's disease. © 2010 Movement Disorder Society</div>
</front>
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