Literature DB >> 33313788

Deep brain stimulation of the brainstem.

Gavin J B Elias1, Aaron Loh1, Dave Gwun1, Aditya Pancholi1, Alexandre Boutet1,2, Clemens Neudorfer1, Jürgen Germann1, Andrew Namasivayam1, Robert Gramer1, Michelle Paff1, Andres M Lozano1.   

Abstract

Deep brain stimulation (DBS) of the subthalamic nucleus, pallidum, and thalamus is an established therapy for various movement disorders. Limbic targets have also been increasingly explored for their application to neuropsychiatric and cognitive disorders. The brainstem constitutes another DBS substrate, although the existing literature on the indications for and the effects of brainstem stimulation remains comparatively sparse. The objective of this review was to provide a comprehensive overview of the pertinent anatomy, indications, and reported stimulation-induced acute and long-term effects of existing white and grey matter brainstem DBS targets. We systematically searched the published literature, reviewing clinical trial articles pertaining to DBS brainstem targets. Overall, 164 studies describing brainstem DBS were identified. These studies encompassed 10 discrete structures: periaqueductal/periventricular grey (n = 63), pedunculopontine nucleus (n = 48), ventral tegmental area (n = 22), substantia nigra (n = 9), mesencephalic reticular formation (n = 7), medial forebrain bundle (n = 8), superior cerebellar peduncles (n = 3), red nucleus (n = 3), parabrachial complex (n = 2), and locus coeruleus (n = 1). Indications for brainstem DBS varied widely and included central neuropathic pain, axial symptoms of movement disorders, headache, depression, and vegetative state. The most promising results for brainstem DBS have come from targeting the pedunculopontine nucleus for relief of axial motor deficits, periaqueductal/periventricular grey for the management of central neuropathic pain, and ventral tegmental area for treatment of cluster headaches. Brainstem DBS has also acutely elicited numerous motor, limbic, and autonomic effects. Further work involving larger, controlled trials is necessary to better establish the therapeutic potential of DBS in this complex area.
© The Author(s) (2020). Published by Oxford University Press on behalf of the Guarantors of Brain. All rights reserved. For permissions, please email: journals.permissions@oup.com.

Entities:  

Keywords:  brainstem; clinical neurophysiology; deep brain stimulation; neuroanatomy

Mesh:

Year:  2021        PMID: 33313788      PMCID: PMC8041326          DOI: 10.1093/brain/awaa374

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  99 in total

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Journal:  Am J Psychiatry       Date:  2011-02-01       Impact factor: 18.112

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Journal:  Neuroscience       Date:  1990       Impact factor: 3.590

5.  Seizure suppression in kindling epilepsy by grafts of fetal GABAergic neurons in rat substantia nigra.

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6.  A phase I trial of deep brain stimulation of memory circuits in Alzheimer's disease.

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Journal:  Ann Neurol       Date:  2010-10       Impact factor: 10.422

7.  Pathological laughter and crying: a link to the cerebellum.

Authors:  J Parvizi; S W Anderson; C O Martin; H Damasio; A R Damasio
Journal:  Brain       Date:  2001-09       Impact factor: 13.501

8.  Clinical evaluation of deep cerebellar stimulation for spasticity in patients with cerebral palsy.

Authors:  Marek Harat; Krzysztof Radziszewski; Marcin Rudaś; Małgorzata Okoń; Miroslav Galanda
Journal:  Neurol Neurochir Pol       Date:  2009 Jan-Feb       Impact factor: 1.621

9.  Stimulation of the posterior hypothalamus for treatment of chronic intractable cluster headaches: first reported series.

Authors:  Angelo Franzini; Paolo Ferroli; Massimo Leone; Giovanni Broggi
Journal:  Neurosurgery       Date:  2003-05       Impact factor: 4.654

Review 10.  The Cellular Diversity of the Pedunculopontine Nucleus: Relevance to Behavior in Health and Aspects of Parkinson's Disease.

Authors:  Ilse S Pienaar; Anthony Vernon; Philip Winn
Journal:  Neuroscientist       Date:  2016-12-07       Impact factor: 7.519

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Journal:  J Neurotrauma       Date:  2022-07       Impact factor: 4.869

2.  Quantitative susceptibility mapping of the head-and-neck using SMURF fat-water imaging with chemical shift and relaxation rate corrections.

Authors:  Beata Bachrata; Siegfried Trattnig; Simon Daniel Robinson
Journal:  Magn Reson Med       Date:  2021-11-30       Impact factor: 4.668

3.  Diverging prefrontal cortex fiber connection routes to the subthalamic nucleus and the mesencephalic ventral tegmentum investigated with long range (normative) and short range (ex-vivo high resolution) 7T DTI.

Authors:  Volker A Coenen; Máté D Döbrössy; Shi Jia Teo; Johanna Wessolleck; Bastian E A Sajonz; Peter C Reinacher; Annette Thierauf-Emberger; Björn Spittau; Jochen Leupold; Dominik von Elverfeldt; Thomas E Schlaepfer; Marco Reisert
Journal:  Brain Struct Funct       Date:  2021-09-05       Impact factor: 3.270

4.  Mapping the subcortical connectivity of the human default mode network.

Authors:  Jian Li; William H Curley; Bastien Guerin; Darin D Dougherty; Adrian V Dalca; Bruce Fischl; Andreas Horn; Brian L Edlow
Journal:  Neuroimage       Date:  2021-11-25       Impact factor: 6.556

5.  The Optimal Target and Connectivity for Deep Brain Stimulation in Lennox-Gastaut Syndrome.

Authors:  Aaron E L Warren; Linda J Dalic; Kristian J Bulluss; Annie Roten BAppSci; Wesley Thevathasan; John S Archer
Journal:  Ann Neurol       Date:  2022-04-28       Impact factor: 11.274

  5 in total

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