Title | ||
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Model-based segmentation of the facial nerve and chorda tympani in pediatric CT scans |
Abstract | ||
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In image-guided cochlear implant surgery an electrode array is implanted in the cochlea to treat hearing loss. Access to the cochlea is achieved by drilling from the outer skull to the cochlea through the facial recess, a region bounded by the facial nerve and the chorda tympani. To exploit existing methods for computing automatically safe drilling trajectories, the facial nerve and chorda tympani need to be segmented. The effectiveness of traditional segmentation approaches to achieve this is severely limited because the facial nerve and chorda are small structures (similar to 1 mm and similar to 0.3 mm in diameter, respectively) and exhibit poor image contrast. We have recently proposed a technique to achieve this task in adult patients, which relies on statistical models of the structures. These models contain intensity and shape information along the central axes of both structures. In this work we use the same method to segment pediatric scans. We show that substantial differences exist between the anatomy of children and the anatomy of adults, which lead to poor segmentation results when an adult model is used to segment a pediatric volume. We have built a new model for pediatric cases and we have applied it to ten scans. A leave-one-out validation experiment was conducted in which manually segmented structures were compared to automatically segmented structures. The maximum segmentation error was 1 mm. This result indicates that accurate segmentation of the facial nerve and chorda in pediatric scans is achievable, thus suggesting that safe drilling trajectories can also be computed automatically. |
Year | DOI | Venue |
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2011 | 10.1117/12.877599 | Proceedings of SPIE |
Keywords | Field | DocType |
Model generation,facial nerve,chorda tympani,pediatric CT,cochlear implant surgery | Computer vision,Anatomy,Chorda,Electrode array,Facial nerve,Segmentation,Image segmentation,Cochlear implant,Cochlea,Skull,Artificial intelligence,Physics | Conference |
Volume | ISSN | Citations |
7962 | 0277-786X | 1 |
PageRank | References | Authors |
0.35 | 0 | 5 |
Name | Order | Citations | PageRank |
---|---|---|---|
Fitsum A. Reda | 1 | 31 | 4.26 |
Jack H. Noble | 2 | 139 | 30.87 |
alejandro rivas | 3 | 1 | 1.03 |
Robert F. Labadie | 4 | 131 | 28.49 |
Benoit M. Dawant | 5 | 1388 | 223.11 |