Mandible or facial bone reconstruction is a serious challenge in craniomaxillofacial surgery. Careful presurgical planning or availability of objective methods to evaluate the three-dimensional (3-D) shape of the patient mandible is necessary to achieve predictable outcomes. The aim of this paper is to apply 3-D techniques of volumetric reconstruction and image processing for planning distraction osteogenesis of the mandible, involving the use of 3-D modeling. To accomplish this task, suitable two-dimensional (2-D)-to-3-D image processing is used in order to obtain a 3-D model of the mandible from standard 2-D computed tomography images. The goal of this paper is to provide the surgeon with a 3-D model of the patient mandible, where it would be possible to find, in the presurgical phase, the exact point of implant with respect to the patient's anatomy and to build a custom-made prosthesis that properly fits the bone surface of the patient for correct control of the vector during the progressive traction of the bone segments.

Three-Dimensional Reconstruction and Image Processing in Mandibular Distraction Planning

Tognola G;Parazzini M;Ravazzani P;Grandori F
2006

Abstract

Mandible or facial bone reconstruction is a serious challenge in craniomaxillofacial surgery. Careful presurgical planning or availability of objective methods to evaluate the three-dimensional (3-D) shape of the patient mandible is necessary to achieve predictable outcomes. The aim of this paper is to apply 3-D techniques of volumetric reconstruction and image processing for planning distraction osteogenesis of the mandible, involving the use of 3-D modeling. To accomplish this task, suitable two-dimensional (2-D)-to-3-D image processing is used in order to obtain a 3-D model of the mandible from standard 2-D computed tomography images. The goal of this paper is to provide the surgeon with a 3-D model of the patient mandible, where it would be possible to find, in the presurgical phase, the exact point of implant with respect to the patient's anatomy and to build a custom-made prosthesis that properly fits the bone surface of the patient for correct control of the vector during the progressive traction of the bone segments.
2006
INGEGNERIA BIOMEDICA
biomedical image processing
image edge analysis
image enhancement
image reconstruction and segmentation
tomography
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/47332
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