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Knee kinematic parameters during a drop vertical jump (DVJ) have been demonstrated to be associated with an increased risk of noncontact anterior cruciate ligament (ACL) injury. However, standard motion analysis systems are not practical for routine screening. Affordable and practical motion sensor alternatives exist but require further validation in the context of ACL injury risk assessment. The study aimed to use an affordable motion capture system to predict noncontact ACL injuries in collegiate athletes by analyzing the initial and peak contact coronal abduction angles and peak flexion angles during a DVJ. 101 of 102 athletes were followed for an entire season for noncontact ACL injury. Results showed that increased peak coronal angle and decreased peak sagittal angle during a DVJ were significantly associated with increased risk for noncontact ACL injury. Affordable motion capture systems are a cost-effective and practical option for large-scale ACL injury risk screening.
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