Intracranial depth electrodes implantation in the era of image-guided surgery

The advent of modern image-guided surgery has revolutionized depth electrode implantation techniques. Stereoelectroencephalography (SEEG), introduced by Talairach in the 1950s, is an invasive method for three-dimensional analysis on the epileptogenic zone based on the technique of intracranial implantation of depth electrodes. The aim of this article is to discuss the principles of SEEG and their evolution from the Talairach era to the image-guided surgery of today, along with future prospects. Although the general principles of SEEG have remained intact over the years, the implantation of depth electrodes, i.e. the surgical technique that enables this method, has undergone tremendous evolution over the last three decades, due the advent of modern imaging techniques, computer systems and new stereotactic techniques. The use of robotic systems, the constant evolution of imaging and computing techniques and the use of depth electrodes together with microdialysis probes will open up enormous prospects for applying depth electrodes and SEEG both for investigative use and for therapeutic use. Brain stimulation of deep targets and the construction of "smart" electrodes may, in the near future, increase the need to use this method.

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Main Authors: Centeno,Ricardo Silva, Yacubian,Elza Márcia Targas, Caboclo,Luis Otávio Sales Ferreira, Carrete Júnior,Henrique, Cavalheiro,Sérgio
Format: Digital revista
Language:English
Published: Academia Brasileira de Neurologia - ABNEURO 2011
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0004-282X2011000500022
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spelling oai:scielo:S0004-282X20110005000222011-09-01Intracranial depth electrodes implantation in the era of image-guided surgeryCenteno,Ricardo SilvaYacubian,Elza Márcia TargasCaboclo,Luis Otávio Sales FerreiraCarrete Júnior,HenriqueCavalheiro,Sérgio epilepsy stereoelectroencephalography depth electrode image-guided surgery The advent of modern image-guided surgery has revolutionized depth electrode implantation techniques. Stereoelectroencephalography (SEEG), introduced by Talairach in the 1950s, is an invasive method for three-dimensional analysis on the epileptogenic zone based on the technique of intracranial implantation of depth electrodes. The aim of this article is to discuss the principles of SEEG and their evolution from the Talairach era to the image-guided surgery of today, along with future prospects. Although the general principles of SEEG have remained intact over the years, the implantation of depth electrodes, i.e. the surgical technique that enables this method, has undergone tremendous evolution over the last three decades, due the advent of modern imaging techniques, computer systems and new stereotactic techniques. The use of robotic systems, the constant evolution of imaging and computing techniques and the use of depth electrodes together with microdialysis probes will open up enormous prospects for applying depth electrodes and SEEG both for investigative use and for therapeutic use. Brain stimulation of deep targets and the construction of "smart" electrodes may, in the near future, increase the need to use this method.info:eu-repo/semantics/openAccessAcademia Brasileira de Neurologia - ABNEUROArquivos de Neuro-Psiquiatria v.69 n.4 20112011-08-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S0004-282X2011000500022en10.1590/S0004-282X2011000500022
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country Brasil
countrycode BR
component Revista
access En linea
databasecode rev-scielo-br
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region America del Sur
libraryname SciELO
language English
format Digital
author Centeno,Ricardo Silva
Yacubian,Elza Márcia Targas
Caboclo,Luis Otávio Sales Ferreira
Carrete Júnior,Henrique
Cavalheiro,Sérgio
spellingShingle Centeno,Ricardo Silva
Yacubian,Elza Márcia Targas
Caboclo,Luis Otávio Sales Ferreira
Carrete Júnior,Henrique
Cavalheiro,Sérgio
Intracranial depth electrodes implantation in the era of image-guided surgery
author_facet Centeno,Ricardo Silva
Yacubian,Elza Márcia Targas
Caboclo,Luis Otávio Sales Ferreira
Carrete Júnior,Henrique
Cavalheiro,Sérgio
author_sort Centeno,Ricardo Silva
title Intracranial depth electrodes implantation in the era of image-guided surgery
title_short Intracranial depth electrodes implantation in the era of image-guided surgery
title_full Intracranial depth electrodes implantation in the era of image-guided surgery
title_fullStr Intracranial depth electrodes implantation in the era of image-guided surgery
title_full_unstemmed Intracranial depth electrodes implantation in the era of image-guided surgery
title_sort intracranial depth electrodes implantation in the era of image-guided surgery
description The advent of modern image-guided surgery has revolutionized depth electrode implantation techniques. Stereoelectroencephalography (SEEG), introduced by Talairach in the 1950s, is an invasive method for three-dimensional analysis on the epileptogenic zone based on the technique of intracranial implantation of depth electrodes. The aim of this article is to discuss the principles of SEEG and their evolution from the Talairach era to the image-guided surgery of today, along with future prospects. Although the general principles of SEEG have remained intact over the years, the implantation of depth electrodes, i.e. the surgical technique that enables this method, has undergone tremendous evolution over the last three decades, due the advent of modern imaging techniques, computer systems and new stereotactic techniques. The use of robotic systems, the constant evolution of imaging and computing techniques and the use of depth electrodes together with microdialysis probes will open up enormous prospects for applying depth electrodes and SEEG both for investigative use and for therapeutic use. Brain stimulation of deep targets and the construction of "smart" electrodes may, in the near future, increase the need to use this method.
publisher Academia Brasileira de Neurologia - ABNEURO
publishDate 2011
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0004-282X2011000500022
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