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Effects of Initial Graft Tension on the Tibiofemoral Compressive Forces and Joint Position After Anterior Cruciate Ligament Reconstruction
Background: The initial tension applied to an anterior cruciate ligament graft at the time of fixation modulates knee motion and the tibiofemoral compressive loads. Purpose: To establish the relationships between initial graft tension, tibiofemoral compressive force, and the neutral tibiofemoral pos...
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Published in: | American journal of sports medicine 2007-03, Vol.35 (3), p.395-403 |
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Main Authors: | , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Background: The initial tension applied to an anterior cruciate ligament graft at the time of fixation modulates knee motion and the
tibiofemoral compressive loads.
Purpose: To establish the relationships between initial graft tension, tibiofemoral compressive force, and the neutral tibiofemoral
position in the cadaveric knee.
Study Design: Controlled laboratory study.
Methods: The tibiofemoral compressive forces and joint positions were determined in the anterior cruciate ligamentâintact knee at
0°, 20°, and 90° of knee flexion. The anterior cruciate ligament was excised and reconstructed with a patellar tendon graft
using graft tensions of 1, 15, 30, 60, and 90 N applied at 0°, 20°, and 90° of knee flexion. The compressive forces and neutral
positions were compared between initial tension conditions and the anterior cruciate ligamentâintact knee.
Results: Increasing initial graft tension increased the tibiofemoral compressive forces. The forces in the medial compartment were
1.8 times those in the lateral compartment. The compressive forces were dependent on the knee angle at which the tension was
applied. The greatest compressive forces occurred when the graft was tensioned with the knee in extension. An increase in
initial graft tension caused the tibia to rotate externally compared with the anterior cruciate ligamentâintact knee (1.5°
and 7.7° of external rotation when tensioned to 90 N at 0° and 90° of knee flexion, respectively). Increases in initial graft
tension also caused a significant posterior translation of the tibia relative to the femur (0.9 and 5.3 mm of posterior translation
when tensioned to 90 N at 0° and 90° of knee flexion, respectively).
Conclusion: Different initial graft tension protocols produced predictable changes in the tibiofemoral compressive forces and joint positions.
Clinical Relevance: The tibiofemoral compressive force and neutral joint position were best replicated with a low graft tension (1â15 N) when
using a patellar tendon graft.
Keywords:
anterior cruciate ligament (ACL)
reconstruction
tension
biomechanics |
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ISSN: | 0363-5465 1552-3365 |
DOI: | 10.1177/0363546506294363 |