Related Experiment Video
Updated: Feb 28, 2026

3D Planning and Printing of Patient Specific Implants for Reconstruction of Bony Defects
Published on: August 4, 2020
Application of a Cutting Guide to Optimize Fit of 3D-Printed Patient-Specific Implants in Reconstruction Following
Srujana Venkata Vedicherla1, Zakir Chew1, Ming Li Chia1
1Neurosurgery, National University Hospital, Singapore, SGP.
Abstract:
In managing osseo-invasive tumors, such as meningiomas, the treatment of choice is complete resection, including the dural origin and any involved bone. Virtual preoperative surgical planning, combined with tailored intraoperative reconstruction, can optimize outcomes. Repairing bony defects with patient-specific implants (PSIs) in a single-stage procedure has been shown to reduce operative time and morbidity. Here, we present the use of a resection template to further optimize reconstruction outcomes. We analyzed five patients with cranial tumors exhibiting significant bony invasion who underwent surgery at our institution between June 2023 and January 2025. Tumor resection was virtually planned in collaboration with PSI manufacturers (Synthes®, West Chester, PA, USA, and Protomed®, Westminster, CO, USA), who produced the PSI and corresponding cutting guide for intraoperative use. Among five patients (four men and one woman; mean age: 60 ± 13 years), the mean tumor size was 54.3 ± 12.2 mm × 55 ± 16.4 mm, and the mean operative time was 3.6 ± 1.6 hours. In all cases, resection proceeded as planned, with accurate PSI placement and satisfactory postoperative fit confirmed via magnetic resonance imaging. This retrospective five-case institutional series demonstrates the feasibility of single-stage resection and reconstruction of osseo-invasive cranial tumors using PSI and a resection template to improve fit and reduce intraoperative handling and lower infection risk. This may offer excellent oncological, functional, and cosmetic outcomes by enhancing implant fit and provides simple, accurate, and efficient surgical solution.

