Literature DB >> 19556832

Automated 3-dimensional brain atlas fitting to microelectrode recordings from deep brain stimulation surgeries.

J Luis Luján1, Angela M Noecker, Christopher R Butson, Scott E Cooper, Benjamin L Walter, Jerrold L Vitek, Cameron C McIntyre.   

Abstract

OBJECTIVE: Deep brain stimulation (DBS) surgeries commonly rely on brain atlases and microelectrode recordings (MER) to help identify the target location for electrode implantation. We present an automated method for optimally fitting a 3-dimensional brain atlas to intraoperative MER and predicting a target DBS electrode location in stereotactic coordinates for the patient.
METHODS: We retrospectively fit a 3-dimensional brain atlas to MER points from 10 DBS surgeries targeting the subthalamic nucleus (STN). We used a constrained optimization algorithm to maximize the MER points correctly fitted (i.e., contained) within the appropriate atlas nuclei. We compared our optimization approach to conventional anterior commissure-posterior commissure (AC/PC) scaling, and to manual fits performed by four experts. A theoretical DBS electrode target location in the dorsal STN was customized to each patient as part of the fitting process and compared to the location of the clinically defined therapeutic stimulation contact.
RESULTS: The human expert and computer optimization fits achieved significantly better fits than the AC/PC scaling (80, 81, and 41% of correctly fitted MER, respectively). However, the optimization fits were performed in less time than the expert fits and converged to a single solution for each patient, eliminating interexpert variance. CONCLUSIONS AND SIGNIFICANCE: DBS therapeutic outcomes are directly related to electrode implantation accuracy. Our automated fitting techniques may aid in the surgical decision-making process by optimally integrating brain atlas and intraoperative neurophysiological data to provide a visual guide for target identification. Copyright 2009 S. Karger AG, Basel.

Entities:  

Mesh:

Year:  2009        PMID: 19556832      PMCID: PMC2836941          DOI: 10.1159/000225976

Source DB:  PubMed          Journal:  Stereotact Funct Neurosurg        ISSN: 1011-6125            Impact factor:   1.875


  31 in total

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2.  Surgical targeting accuracy analysis of six methods for subthalamic nucleus deep brain stimulation.

Authors:  Ting Guo; Andrew G Parrent; Terry M Peters
Journal:  Comput Aided Surg       Date:  2007-11

3.  Assessment of brain shift related to deep brain stimulation surgery.

Authors:  Muhammad Faisal Khan; Klaus Mewes; Robert E Gross; Oskar Skrinjar
Journal:  Stereotact Funct Neurosurg       Date:  2007-09-18       Impact factor: 1.875

4.  Deep brain stimulation activation volumes and their association with neurophysiological mapping and therapeutic outcomes.

Authors:  C B Maks; C R Butson; B L Walter; J L Vitek; C C McIntyre
Journal:  J Neurol Neurosurg Psychiatry       Date:  2008-04-10       Impact factor: 10.154

5.  Three-dimensional database of subcortical electrophysiology for image-guided stereotactic functional neurosurgery.

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6.  Localization of clinically effective stimulating electrodes in the human subthalamic nucleus on magnetic resonance imaging.

Authors:  Jean A Saint-Cyr; Tasnuva Hoque; Luiz C M Pereira; Jonathan O Dostrovsky; William D Hutchison; David J Mikulis; Aviva Abosch; Elspeth Sime; Anthony E Lang; Andres M Lozano
Journal:  J Neurosurg       Date:  2002-11       Impact factor: 5.115

7.  Localization of stimulating electrodes in patients with Parkinson disease by using a three-dimensional atlas-magnetic resonance imaging coregistration method.

Authors:  Jérôme Yelnik; Philippe Damier; Sophie Demeret; David Gervais; Eric Bardinet; Boulos-Paul Bejjani; Chantal François; Jean-Luc Houeto; Isabelle Arnule; Didier Dormont; Damien Galanaud; Bernard Pidoux; Philippe Cornu; Yves Agid
Journal:  J Neurosurg       Date:  2003-07       Impact factor: 5.115

8.  Improvement in Parkinson disease by subthalamic nucleus stimulation based on electrode placement: effects of reimplantation.

Authors:  Mathieu Anheim; Alina Batir; Valérie Fraix; Madjid Silem; Stéphan Chabardès; Eric Seigneuret; Paul Krack; Alim-Louis Benabid; Pierre Pollak
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9.  Brain shift during deep brain stimulation surgery for Parkinson's disease.

Authors:  Casey H Halpern; Shabbar F Danish; Gordon H Baltuch; Jurg L Jaggi
Journal:  Stereotact Funct Neurosurg       Date:  2007-09-18       Impact factor: 1.875

10.  Implantation of deep brain stimulators into the subthalamic nucleus: technical approach and magnetic resonance imaging-verified lead locations.

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  11 in total

1.  Determination of electrode to nerve fiber distance and nerve conduction velocity through spectral analysis of the extracellular action potentials recorded from earthworm giant fibers.

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2.  CranialVault and its CRAVE tools: a clinical computer assistance system for deep brain stimulation (DBS) therapy.

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4.  Patient-specific models of deep brain stimulation: influence of field model complexity on neural activation predictions.

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5.  Fully automated targeting using nonrigid image registration matches accuracy and exceeds precision of best manual approaches to subthalamic deep brain stimulation targeting in Parkinson disease.

Authors:  Srivatsan Pallavaram; Pierre-François DʼHaese; Wendell Lake; Peter E Konrad; Benoit M Dawant; Joseph S Neimat
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6.  Axonal pathways linked to therapeutic and nontherapeutic outcomes during psychiatric deep brain stimulation.

Authors:  J Luis Lujan; Ashutosh Chaturvedi; Donald A Malone; Ali R Rezai; Andre G Machado; Cameron C McIntyre
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Review 7.  Engineering the next generation of clinical deep brain stimulation technology.

Authors:  Cameron C McIntyre; Ashutosh Chaturvedi; Reuben R Shamir; Scott F Lempka
Journal:  Brain Stimul       Date:  2014-07-30       Impact factor: 8.955

8.  Reversing cognitive-motor impairments in Parkinson's disease patients using a computational modelling approach to deep brain stimulation programming.

Authors:  Anneke M M Frankemolle; Jennifer Wu; Angela M Noecker; Claudia Voelcker-Rehage; Jason C Ho; Jerrold L Vitek; Cameron C McIntyre; Jay L Alberts
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9.  Use of efficacy probability maps for the post-operative programming of deep brain stimulation in essential tremor.

Authors:  Fenna T Phibbs; Srivatsan Pallavaram; Christopher Tolleson; Pierre-François D'Haese; Benoit M Dawant
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10.  Closed-loop stimulation of a delayed neural fields model of parkinsonian STN-GPe network: a theoretical and computational study.

Authors:  Georgios Is Detorakis; Antoine Chaillet; Stéphane Palfi; Suhan Senova
Journal:  Front Neurosci       Date:  2015-07-10       Impact factor: 4.677

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