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Surgical Planning for Mandibular Distraction Osteogenesis Using Low-Cost Three-Dimensional-Printed Anatomic Models
José E Telich-Tarriba1, Enrique Chávez-Serna1, Edna Rangel-Rangel2
1Plastic and Reconstructive Surgery Division, Hospital General "Dr. Manuel Gea Gonzalez," Postgraduate Division of the Medical School, National Autonomous University of Mexico.
The Journal of Craniofacial Surgery
|February 7, 2020
Summary
Low-cost 3D-printed models improve surgical planning for mandibular distraction osteogenesis (MDO). This technique aids in preventing complications like incorrect distractor placement during MDO procedures.
Area of Science:
- Craniofacial Surgery
- Biomedical Engineering
- Medical Imaging
Background:
- Mandibular distraction osteogenesis (MDO) is a standard surgical procedure for correcting severe mandibular hypoplasias by generating new bone and soft tissue expansion.
- A common complication of MDO is the misplacement of distractors or corticotomy, leading to inaccurate distraction vectors.
- Three-dimensional (3D) printing offers advanced preoperative planning but faces cost barriers, especially in public healthcare systems of developing nations.
Purpose of the Study:
- To present the experience of utilizing low-cost 3D-printed anatomic models for preoperative planning and surgical simulation in patients undergoing MDO.
- To evaluate the feasibility and impact of affordable 3D printing in improving MDO surgical outcomes.
Main Methods:
- Development and utilization of low-cost 3D-printed patient-specific anatomic models derived from medical imaging.
- Preoperative planning and surgical simulation using these 3D models for MDO procedures.
- Clinical application and assessment of the models' effectiveness in guiding surgical execution.
Main Results:
- Low-cost 3D-printed models facilitated detailed preoperative planning and surgical simulation for MDO.
- The use of these models aided in visualizing complex anatomy and anticipating potential challenges.
- The approach demonstrated potential for reducing complications associated with distractor and corticotomy placement.
Conclusions:
- Low-cost 3D-printed anatomic models are a valuable tool for preoperative planning and surgical simulation in MDO.
- This technology can enhance surgical precision and potentially reduce complications in MDO procedures, even in resource-limited settings.
- Further adoption of affordable 3D printing in craniofacial surgery can improve patient care and surgical training.

