Xuan Zhao, Danni Wu, Shaobai Wang, Peter Theobald
ACL rupture was associated with gait alterations involving both lower extremities, with bilateral hip and ankle kinematic changes and reduced maximum knee flexion mainly on the affected side.
BACKGROUND: Anterior cruciate ligament (ACL) rupture is associated with knee instability and compensatory gait adaptations, which are relevant to rehabilitation planning.
HYPOTHESIS: Patients with ACL rupture would show altered bilateral hip, knee, and ankle gait kinematics.
STUDY DESIGN: Cross-sectional study.
LEVEL OF EVIDENCE: Level 3.
METHODS: A total of 40 participants were enrolled, including 22 patients with recent ACL ruptures and 18 healthy subjects. Participants walked on a treadmill at 4 km/h while wearing 17 inertial sensors. Ten normalized gait cycles were used to compare bilateral hip, knee, and ankle kinematics.
RESULTS: Patients with ACL rupture demonstrated altered lower-extremity kinematics compared with healthy subjects. Hip external rotation was reduced bilaterally (P < 0.01), and hip adduction was reduced on both the affected (P < 0.05) and nonaffected (P < 0.01) sides. Maximum knee flexion was lower on the affected side than in healthy subjects (P < 0.01) and the nonaffected side (P < 0.05). Maximum ankle internal rotation was reduced bilaterally (affected side P < 0.05; nonaffected side P < 0.01), suggesting bilateral gait adaptations after ACL rupture.
CONCLUSION: ACL rupture was associated with gait alterations involving both lower extremities, with bilateral hip and ankle kinematic changes and reduced maximum knee flexion mainly on the affected side.
CLINICAL RELEVANCE: Recognition of bilateral kinematic changes after ACL rupture may help clinicians assess both limbs and guide rehabilitation focused on restoring functional gait patterns.