Stress and strain changes of the anterior cruciate ligament at different knee flexion angles: A three-dimensional finite element study
Author:
Funder
Southern Medical University
Publisher
Elsevier BV
Subject
Orthopedics and Sports Medicine,Surgery
Reference20 articles.
1. et al. Systematic video analysis of anterior cruciate ligament injuries in professional female soccer players;Lucarno;Am J Sports Med,2021
2. Determination of the position of the knee at the time of an anterior cruciate ligament rupture for male versus female patients by an analysis of bone bruises;Owusu-Akyaw;Am J Sports Med,2018
3. Kinematic analysis of pressing situations in female collegiate football games: new insight into anterior cruciate ligament injury causation;Sasaki;Scand J Med Sci Sports,2018
4. Tension changes within the bundles of anatomic double-bundle anterior cruciate ligament reconstruction at different knee flexion angles: a study using a 3-dimensional finite element model;Kim;Arthroscopy,2011
5. A patient-specific finite element analysis of the anterior cruciate ligament under different flexion angles;Safari;J Back Musculoskelet Rehabil,2020
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1. Surgical parameters influence paediatric knee kinematics and cartilage stresses in anterior cruciate ligament reconstruction: Navigating subject‐specific variability using neuromusculoskeletal‐finite element modelling analysis;Knee Surgery, Sports Traumatology, Arthroscopy;2024-08-06
2. Exploratory Anterior Cruciate Ligament Graft Stress during Medial Knee Rotation with and without Iliotibial Band–Intermuscular Septum Lateral Extra-Articular Tenodesis for Transtibial and Anteromedial Femoral Tunnels;Applied Sciences;2024-06-13
3. Computational study of extrinsic factors affecting ACL strain during single-leg jump landing;BMC Musculoskeletal Disorders;2024-04-23
4. Bilateral movement asymmetries exist in recreational athletes during a 45° sidestep cut post-anterior cruciate ligament reconstruction;PeerJ;2024-02-28
5. Evaluation of Rotational Stability and Stress Shielding of a Stem Optimized for Hip Replacements—A Finite Element Study;Prosthesis;2023-07-26
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