Predictive simulation of single-leg landing scenarios for ACL injury risk factors evaluation
Evgenia Moustridi

TL;DR
This study develops a predictive simulation pipeline to analyze ACL injury risk factors during single-leg landings, demonstrating its potential to evaluate complex biomechanical phenomena despite modeling limitations.
Contribution
The paper introduces a novel predictive simulation pipeline specifically designed to identify key ACL injury risk factors during single-leg landings.
Findings
Simulation results align with existing research on ACL risk factors.
Multiple biomechanical parameters influence ACL injury risk.
Predictive modeling shows promise despite some modeling assumptions.
Abstract
The Anterior Cruciate Ligament rupture is a very common knee injury during sport activities. Landing after a jump is one of the most prominent human body movement scenarios that can lead to such an injury. The landing - related Anterior Cruciate Ligament (ACL) injury risk factors have been in the spotlight of research interest. Computational modeling and simulation allows for studying musculoskeletal systems. Specifically, predictive simulation approaches offer researchers the opportunity to predict and study new biological motions without the demands of acquiring experimental data. In this thesis, we present a pipeline that aims to predict and identify key parameters of interest that are related to ACL injury during single - leg landings. We examined the following conditions of single - leg landing: a) initial landing height, b) hip internal and external rotation, c) lumbar forward -…
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Taxonomy
TopicsKnee injuries and reconstruction techniques · Shoulder Injury and Treatment · Sports Performance and Training
