Mechanism of Anterior Cruciate Ligament Loading during Dynamic Motor Tasks.

Supplemental digital content is available in the text. Introduction: This study determined anterior cruciate ligament (ACL) force and its contributors during a standardized drop-land-lateral jump task using a validated computational model. Methods: Three-dimensional whole-body kinematics, ground rea...

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Detalles Bibliográficos
Publicado en:Medicine & Science in Sports & Exercise Vol. 53; no. 6; pp. 1235 - 1245
Autores principales: NASSERI, AZADEH, LLOYD, DAVID G., BRYANT, ADAM L., HEADRICK, JONATHON, SAYER, TIMOTHY A., SAXBY, DAVID J.
Formato: equations & formulas research tables/charts Journal Article
Publicado: Lippincott Williams & Wilkins Jun2021
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Supplemental digital content is available in the text. Introduction: This study determined anterior cruciate ligament (ACL) force and its contributors during a standardized drop-land-lateral jump task using a validated computational model. Methods: Three-dimensional whole-body kinematics, ground reaction forces, and muscle activation patterns from eight knee-spanning muscles were collected during dynamic tasks performed by healthy recreationally active females (n = 24). These data were used in a combined neuromusculoskeletal and ACL force model to determine lower limb muscle and ACL forces. Results: Peak ACL force (2.3 ± 0.5 bodyweight) was observed at ~14% of stance during the drop-land-lateral jump. The ACL force was primarily generated through the sagittal plane, and muscle was the dominant source of ACL loading. The main ACL antagonists (i.e., loaders) were the gastrocnemii and quadriceps, whereas the hamstrings were the main ACL agonists (i.e., supporters). Conclusion: Combining neuromusculoskeletal and ACL force models, the roles of muscle in ACL loading and support were determined during a challenging motor task. Results highlighted the importance of the gastrocnemius in ACL loading, which could be considered more prominently in ACL injury prevention and rehabilitation programs.