Document Type
Article
Publication Date
2025
DOI
10.14440/jbm.0019
Publication Title
Journal of Biological Materials
Volume
13
Issue
3
Pages
e99010070
Abstract
Background: Large bifrontal defects pose unique reconstruction challenges due to their complex curvature and mechanical requirements. This case demonstrated how computer-aided design/manufacturing (CAD/CAM) enabled precise single-piece polymethyl methacrylate (PMMA) implant fabrication, thereby overcoming traditional limitations. Case presentation: A 25-year-old male who had undergone bifrontal decompressive craniectomy suffered a severe traumatic brain injury. The autologous bone flap had been temporarily stored in a subcutaneous fat area of the abdomen for 3 months to preserve its viability. A secondary cranioplasty was then performed using titanium miniplates and self-tapping screws for final fixation. After 2 years, the patient developed empyema and a brain abscess; the infected bone flap was removed. A skull computed tomography (CT) scan was conducted, and a prosthesis was created from PMMA by employing CAD. In the sagittal plane, the defect extended from the frontal bone and surpassed the coronal suture, while in the coronal plane, it reached the temporal region on both sides. The prosthesis was fabricated through rapid prototyping based on CT scan images. Surgery was performed using a patient-specific prosthesis that adequately covered the defect area. Facial aesthetics were restored, and no complications occurred. The patient was followed clinically and radiologically for 1 year, during which no postoperative complications or signs of implant-related issues were observed. Conclusion: This CAD/CAM single-piece PMMA implant successfully restored large bifrontal defects, suggesting that it may find broader applications in complex cranioplasties and could achieve improved outcomes.
Rights
© 2025 by the authors.
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution 4.0 International (CC BY 4.0) License.
Data Availability
Article states: "The datasets used and analyzed in this study are available from the corresponding author upon reasonable request. Data sharing complies with institutional ethical guidelines."
Original Publication Citation
Ghaderzadeh, O., Amirbeyk, E., Ghodsi, S. R., Namazi, Z., & Tayebi, L. (2025). A customized large single-piece bifrontal implant for post-craniectomy defect reconstruction: A case study. Journal of Biological Methods, 13(3), Article e99010070. https://doi.org/10.14440/jbm.0019
Repository Citation
Ghaderzadeh, Omid; Amirbeyk, Ehsan; Ghodsi, Seyed Roholah; Namazi, Zahra; and Tayebi, Lobat, "A Customized Large Single-Piece Bifrontal Implant for Post-Craniectomy Defect Reconstruction: A Case Study" (2025). Electrical & Computer Engineering Faculty Publications. 559.
https://digitalcommons.odu.edu/ece_fac_pubs/559
ORCID
0000-0003-1947-5658 (Tayebi)
Included in
Bioelectrical and Neuroengineering Commons, Neurology Commons, Neurosurgery Commons, Plastic Surgery Commons, Surgical Procedures, Operative Commons