DocumentCode :
1760478
Title :
Volumetric Fibular Transfer Planning With Shape-Based Indicators in Mandibular Reconstruction
Author :
Nakao, Megumi ; Hosokawa, Mamoru ; Imai, Yuichiro ; Ueda, Nobuhiro ; Hatanaka, Toshihide ; Kirita, Tadaaki ; Matsuda, Tetsuya
Author_Institution :
Kyoto Univ., Kyoto, Japan
Volume :
19
Issue :
2
fYear :
2015
fDate :
42064
Firstpage :
581
Lastpage :
589
Abstract :
In preoperative planning for mandibular reconstructive surgery, it is necessary to determine the osteotomy lines for fibular shaping and the proper placement of fibular segments in the mandible. Although virtual surgical planning has been utilized in preoperative decision making, current software designs require manual operation and a trial-and-error process to refine the reconstruction plan. We have developed volumetric fibular transfer simulation software that can quickly design a preoperative plan based on direct volume manipulation and quantitative comparison with the patient´s original mandible. We propose three quantitative shape indicators-volume ratio, contour error, and maximum projection-for symmetrical lesions of the mandible, and have implemented a parallel computation algorithm for the semiautomatic placement of fibular segments. Using this virtual planning software, we conducted a retrospective study of the computed tomography data from nine patients. We found that combining direct volume manipulation with real-time local search of placement improved the applicability of the planning system to optimize mandibular reconstruction.
Keywords :
computerised tomography; decision making; image reconstruction; medical image processing; parallel algorithms; surgery; computed tomography data; contour error; direct volume manipulation; fibular segment placement; fibular shaping; mandible symmetrical lesions; mandibular reconstruction; mandibular reconstructive surgery; manual operation; maximum projection; osteotomy line; parallel computation algorithm; patient original mandible; preoperative decision making; preoperative planning; quantitative comparison; quantitative shape indicator; real-time local search; reconstruction plan; semiautomatic placement; shape-based indicator; software designs; trial-and-error process; virtual planning software; virtual surgical planning; volume ratio; volumetric fibular transfer planning; volumetric fibular transfer simulation software; Bones; Image reconstruction; Image segmentation; Planning; Shape; Surgery; Three-dimensional displays; Fibular transfer; mandibular reconstruction; shape indicator and volume manipulation; surgical planning;
fLanguage :
English
Journal_Title :
Biomedical and Health Informatics, IEEE Journal of
Publisher :
ieee
ISSN :
2168-2194
Type :
jour
DOI :
10.1109/JBHI.2014.2320720
Filename :
6807634
Link To Document :
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