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Updated: Aug 28, 2026

Three-Dimensional Preoperative Virtual Planning in Derotational Proximal Femoral Osteotomy
Published on: February 17, 2023
Computational biomechanical analysis of medial displacement calcaneal osteotomy placement and orientation
Cecily James Marden1,2,3, Bo Aletha Pilarczyk1,2,3, Aaron Bhattachan3,4
1Foot & Ankle Research and Innovation Laboratory, Department of Orthopaedic Surgery, Mass General Brigham, Harvard Medical School, Boston, MA, USA.
Abstract:
Medial displacement calcaneal osteotomy (MDCO) is commonly used to correct valgus hindfoot alignment in progressive collapsing foot deformity, but the biomechanical effects of osteotomy placement and Chevron apex geometry within the surgical safe zone remain unclear. This study evaluated how oblique cut position and Chevron apex orientation affect construct stiffness and stress distribution using patient-specific finite element models. Weight-bearing CT-derived models of the distal tibia, talus, and calcaneus were generated for seven patients. Nine MDCO configurations were simulated per patient: three oblique cut positions (anterior, middle, posterior) and six Chevron configurations varying by apex angle (130°, 150°, 170°) and apex position (anterior, posterior), yielding 63 simulations. Models incorporated cortical-cancellous bone separation, frictional osteotomy contact, patient-specific body-weight loading, and simplified Achilles tendon and plantar fascia forces. Axial stiffness, screw top 5% average von Mises stress, and osteotomy top 5% average von Mises stress were compared using within-subject analyses. Oblique cut position did not significantly affect stiffness (p = 0.149) or screw stress (p = 0.349), but significantly affected osteotomy stress (p < 0.001). Anterior oblique placement produced higher osteotomy stress (5.23 ± 1.25 MPa) than middle (4.18 ± 0.84 MPa, p = 0.005) and posterior placement (3.70 ± 0.98 MPa, p = 0.002). Chevron apex angle did not significantly affect any outcome. However, posterior Chevron apex placement produced higher osteotomy stress than anterior placement (4.79 ± 0.69 vs 4.07 ± 0.53 MPa, p = 0.011). These findings suggest that local osteotomy-surface stress is more sensitive to MDCO geometry than global stiffness or screw stress.
