Exploring the role of cognitive-motor function in biomechanical risk factors for primary and secondary anterior cruciate ligament injuries

dc.contributor.advisorChairperson, Graduate Committee: Scott M. Monforten
dc.contributor.authorAflatounian, Fatemeh (Asal)en
dc.contributor.otherThis is a manuscript style paper that includes co-authored chapters.en
dc.date.accessioned2026-02-12T13:19:48Z
dc.date.available2026-02-12T13:19:48Z
dc.date.issued2025en
dc.description.abstractNon-contact anterior cruciate ligament (ACL) injuries continue to present major challenges in sports medicine, with long-term consequences for physical function and quality of life. A growing body of evidence indicates that these injuries frequently occur in dynamic environments where athletes must rapidly interpret visual cues and make decisions under pressure. Such cognitive demands may impair neuromuscular control and elevate injury risk, yet current screening and rehabilitation practices often fail to address the cognitive-motor processes that influence movement performance. This dissertation investigates how cognitive load alters biomechanical and neural mechanisms related to ACL injury risk in both healthy and ACL-reconstructed (ACLR) athletes. Dual-task paradigms integrating visual decision-making with jump-landing tasks were used to evaluate knee mechanics and cortical activation under increasingly complex conditions. Additionally, this work uniquely incorporates trials with unbalanced landings and incorrect responses, performance outcomes typically discarded in prior research, to better reflect real-world scenarios in which athletes fail to react appropriately. Through combined analysis of neuromuscular control, decision-making performance, and cortical activation, this research characterizes the interplay between cognitive demands and movement adaptation. Findings from this work advance a more comprehensive framework for ACL injury risk assessment and post-ACLR rehabilitation by highlighting the importance of cognitive-motor function in restoring safe and effective movement during challenging movements. Ultimately, this dissertation contributes evidence to support injury-prevention strategies and return-to-sport criteria that reflect the cognitive complexity of athletic environments.en
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/19581en
dc.language.isoenen
dc.publisherMontana State University - Bozeman, College of Engineeringen
dc.rights.holderCopyright 2025 by Fatemeh (Asal) Aflatounianen
dc.subject.lcshLigamentsen
dc.subject.lcshWounds and injuriesen
dc.subject.lcshRisken
dc.subject.lcshMotor abilityen
dc.subject.lcshBiomechanicsen
dc.titleExploring the role of cognitive-motor function in biomechanical risk factors for primary and secondary anterior cruciate ligament injuriesen
dc.typeDissertationen
mus.data.thumbpage14en
thesis.degree.committeemembersMembers, Graduate Committee: Corey Pew; James N. Becker; Keith A. Hutchisonen
thesis.degree.departmentMechanical & Industrial Engineeringen
thesis.degree.genreDissertationen
thesis.degree.namePhDen
thesis.format.extentfirstpage1en
thesis.format.extentlastpage203en

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