Is the fracture morphology in the sagittal plane important in determining the ideal placement of the lag screw in intertrochanteric femoral fractures?
Author:
Publisher
Elsevier BV
Subject
Orthopedics and Sports Medicine,Emergency Medicine
Reference19 articles.
1. Is helical blade superior to screw design in terms of cut-out rate for elderly trochanteric fractures? A meta-analysis of randomized controlled trials;Huang;Eur J Orthop Surg Traumatol,2014
2. Unstable intertrochanteric hip repair with short cephalomedullary nail;Egol;J Orthop Trauma,2019
3. Comparative finite element analysis of three implants fixing stable and unstable subtrochanteric femoral fractures: proximal Femoral Nail Antirotation (PFNA), Proximal Femoral Locking Plate (PFLP), and Reverse Less Invasive Stabilization System (LISS);Wang;Orthop Traumatol Surg Res,2020
4. Tip apex distance, hip screw placement, and neck shaft angle as potential risk factors for cut-out failure of hip screws after surgical treatment of intertrochanteric fractures;Andruszkow;Int Orthop,2012
5. A six-year retrospective analysis of cut-out risk predictors in cephalomedullary nailing for pertrochanteric fractures: can the tip-apex distance (TAD) still be considered the best parameter?;Caruso;Bone Jt Res,2017
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1. The biomechanical analysis of first metatarsocuneiform arthrodesis using the finite element method: A comparison of plate osteosynthesis in different positions;Annals of Clinical and Analytical Medicine;2024
2. Computational mechanical analysis of AO 44 A1, B1 and C1 fracture with Finite Element: Evaluation of screw, plate and k-wire fixation;Journal of the American Podiatric Medical Association;2023-08-18
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