Related Experiment Video
Updated: May 22, 2026

3D Planning and Printing of Patient Specific Implants for Reconstruction of Bony Defects
Published on: August 4, 2020
Why detailed modeling matters in the FE-based pre-clinical evaluation of temporomandibular joint implants
Girish Chandra1, Rajdeep Ghosh2, Vivek Verma3
1Department of Mechanical Engineering, Indian Institute of Technology Delhi, New Delhi, Delhi, India.
Abstract:
End-stage temporomandibular joint (TMJ) disorders often necessitate joint replacement to restore bilateral mastication. Patient-specific TMJ implants typically rely on detailed in silico modeling derived from subject-specific computed tomography (CT) scans of the mandible. However, generating highly detailed finite element (FE) models is computationally expensive. Although structural simplifications of the mandible are known to influence mechanical behavior, their quantitative impact on TMJ implant evaluation has not been systematically investigated. Our study examined the influence of three modeling simplifications on stress-strain predictions in intact and implanted mandibles: (i) a detailed segmented mandible with tissue-specific material properties (Model 1); (ii) a simplified mandible comprising cortical bone only (Model 2); and (iii) a further simplified mandible excluding dental crowns (Model 3). Both narrow and standard TMJ implants were analyzed under osseointegrated and non-osseointegrated conditions, resulting in 15 FE models. Physiological clenching activities were simulated. Compared with the detailed model, simplified models showed reductions of up to 50% in maximum principal strain in bone and up to 44% in von Mises stress in TMJ implants, while preserving spatial stress-strain trends. These findings indicate that simplified models may be suitable for preliminary implant design, whereas detailed FE modeling remains essential for final preclinical evaluation.
