Maxillofacial Virtual Surgery from 3-D CT Images

Alessandro Sarti, Roberto Gori, Alberto Bianchi, Claudio Marchetti, C. Lamberti · 2003

The history of scientific development is characterized by some key moments owing to the union of competences coming from far away research areas. Virtual surgery, a new discipline that recently appeared among the medical sciences, is an excellent example of contribution from medical and computational knowledges to health development and progress. Craniofacial surgery is a surgical branch regarding study and treatment of any kind of disease (malformations, trauma, and tumors) affecting the face. The anatomic and functional complexity of the face and skull, characterized by the presence of the eyes, ear, nose, mouth, facial nerves, and the proximity of important the brain and the respiratory system, make this area extremely hazardous for even skilled surgeons and a dangerous mine field for residents, fellows, and surgeons in training. For scientific and teaching reasons, we planned a research project for craniofacial surgery simulation from 3-D CT images. Generally, the goal of computer-based surgery simulation is to enable a surgeon to experiment with different surgical procedures in an artificial environment. We propose a simulation method that allows one to deal with extremely complex anatomical geometries. The computational grid is the natural Cartesian grid in which the acquired 3-D image is defined. The rest of the chapter discusses theoretical basis of the linear elastic problem with embedded Dirichlet boundary conditions, the numerical approximation scheme and the solution method, and the results obtained by the application of the method to a number of datasets. We show comparisons between virtual and real operations in real patients, and consider future work.

Read the paper · More papers on PaperTik