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https://digitallibrary.bldedu.ac.in/xmlui/handle/123456789/6468| Title: | Study of proximal tibia intraarticular fracures schatzker type 5 and 6 treated with or without 3d printing model” – a comparative study |
| Authors: | Rahul Shenoy A |
| Keywords: | Proximal tibia fracture; Schatzker classification; 3D printing; Preoperative planning; Surgical outcomes; Intra-articular fractures; Orthopaedic trauma |
| Issue Date: | 2022 |
| Publisher: | BLDE (Deemed to be University) |
| Abstract: | Introduction: Complex intra-articular fractures of the proximal tibia (Schatzker types V and VI) present significant challenges in orthopaedic trauma management. Three-dimensional (3D) printing technology has emerged as a potential tool to enhance preoperative planning and surgical execution for these complex fractures. This study aimed to compare the surgical outcomes of proximal tibial Schatzker type V and VI fractures treated with or without the aid of 3D-printed models. Methods: A prospective comparative study was conducted with 40 patients presenting with Schatzker type V and VI proximal tibial fractures, divided equally into a 3D print group (n=20) and a conventional treatment control group (n=20). Patient demographics, fracture characteristics, and surgical parameters including operating time, blood loss, fluoroscopy exposure, and number of implant trials were recorded and analysed. Results: Both groups had comparable demographic and fracture characteristics. The 3D print group demonstrated significantly shorter mean surgical time (110.2±19.3 vs. 142.5±34.04 minutes; p=0.001), reduced intraoperative blood loss (275±109.4 vs. 370±155.1 ml; p=0.03), and decreased fluoroscopy exposure (0.22±0.15 vs. 0.34±0.06 mSv; p=0.002) compared to the control group. Most notably, 70% of cases in the 3D print group required zero implant trials compared to only 10% in the control group (p<0.001). Conclusion: The use of 3D-printed models for preoperative planning in Schatzker type V and VI proximal tibial fractures significantly improves surgical efficiency by reducing operating time, blood loss, radiation exposure, and implant trials. These findings suggest that 3D printing technology represents a valuable adjunct in the management of complex proximal tibial fractures, potentially improving both the process and outcomes of surgical management for these challenging injuries. |
| URI: | https://doi.org/10.5281/zenodo.21277919 https://digitallibrary.bldedu.ac.in/xmlui/handle/123456789/6468 |
| Appears in Collections: | Department of Orthopedics |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| 22BMORT08.pdf | 10.48 MB | Adobe PDF | View/Open |
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