DocumentCode :
632797
Title :
Guiding Deep Brain Stimulation interventions by fusing multimodal uncertainty regions
Author :
Bock, Alexander ; Lang, N. ; Evangelista, Guillermo ; Lehrke, Ralph ; Ropinski, Timo
Author_Institution :
Sci. Visualization Group, Linkoping Univ., Linkoping, Sweden
fYear :
2013
fDate :
Feb. 27 2013-March 1 2013
Firstpage :
97
Lastpage :
104
Abstract :
Deep Brain Stimulation (DBS) is a surgical intervention that is known to reduce or eliminate the symptoms of common movement disorders, such as Parkinson´s disease, dystonia, or tremor. During the intervention the surgeon places electrodes inside of the patient´s brain to stimulate specific regions. Since these regions span only a couple of millimeters, and electrode misplacement has severe consequences, reliable and accurate navigation is of great importance. Usually the surgeon relies on fused CT and MRI data sets, as well as direct feedback from the patient. More recently Microelectrode Recordings (MER), which support navigation by measuring the electric field of the patient´s brain, are also used. We propose a visualization system that fuses the different modalities: imaging data, MER and patient checks, as well as the related uncertainties, in an intuitive way to present placement-related information in a consistent view with the goal of supporting the surgeon in the final placement of the stimulating electrode. We will describe the design considerations for our system, the technical realization, present the outcome of the proposed system, and provide an evaluation.
Keywords :
biomedical MRI; biomedical electrodes; computerised tomography; data visualisation; microelectrodes; MER; MRI data sets; Parkinson disease; data visualization system; deep brain stimulation interventions; dystonia; electric field; electrode misplacement; fused CT data sets; imaging data; microelectrode recordings; multimodal uncertainty region fusion; patient brain; stimulating electrode; surgical intervention; tremor; Electrodes; Magnetic resonance imaging; Planning; Satellite broadcasting; Surgery; Trajectory; Uncertainty;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Visualization Symposium (PacificVis), 2013 IEEE Pacific
Conference_Location :
Sydney, NSW
ISSN :
2165-8765
Type :
conf
DOI :
10.1109/PacificVis.2013.6596133
Filename :
6596133
Link To Document :
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