Related Experiment Video
Updated: Feb 10, 2026

Author Spotlight: Implementing the Enhanced Recovery After Surgery Concept in Rehabilitation Following Anterior Cruciate Ligament Reconstruction
Published on: March 1, 2024
Sectioning of the Anterior Intermeniscal Ligament Changes Knee Loading Mechanics
Matthieu Ollivier1, Julie Falguières1, Martine Pithioux2
1Aix-Marseille University, France; Institut du mouvement et de l'appareil locomoteur, Hopital sainte-marguerite, France.
Purpose:
The purpose of this cadaver research project was to describe the biomechanical consequences of anterior intermeniscal ligament (AIML) resection on menisci function under load conditions in full extension and 60° of flexion.
Methods:
Ten unpaired fresh frozen cadaveric knees were dissected leaving the knee joint intact with its capsular and ligamentous attachments. The femur and tibia were sectioned 15 cm from the joint line and mounted onto the loading platform. A linear motion x-y table allows the tibial part of the joint to freely translate in the anterior-posterior direction. K-scan sensors were used to define contact area, contact pressure, and position of pressure center of application (PCOA). Two series of analysis were planned: before and after AIML resection, mechanical testing was performed with specimens in full extension (1,400 N load) and in 60° of flexion (700 N load) to approximate heel strike and foot impulsion during the gait.
Results:
Sectioning of the AIML produced mechanical variations below the 2 menisci when specimens were at full extension and loaded to 1,400 N: increasing the mean contact pressure (delta 0.4 ± 0.2 MPa, +15% variation P = .008) and maximum contact pressure (delta 1.50 ± 0.8 MPa, 15% variation P < .0001) and decreasing of tibiofemoral contact area (delta 71 ± 51 mm2, -15% variation P < .0001) and PCOA (delta 2.1 ± 0.8 mm). At 60° flexion, significant differences regarding lateral meniscus mechanical parameters were observed before and after AIML resection: mean contact pressure increasing (delta 0.06 ± 0.1 MPa, +21% variation P = .001), maximal contact-pressure increasing (delta 0.17 ± 0.9 MPa, +28% variation P = .001), mean contact area decreasing (delta 1.84 ± 8 mm2, 4% variation P = .3), and PCOA displacement to the joint center (mean displacement 0.6 ± 0.5 mm).
Conclusions:
The section of the intermeniscal ligament leads to substantial changes in knee biomechanics, increasing femorotibial contact pressures, decreasing contact areas, and finally moving force center of application, which becomes more central inside the joint.
Clinical Relevance:
AIML resection performed ex vivo in this study, might potentially be deleterious in vivo. Clinical studies focusing on preserving or even repairing the AIML are needed to evaluate those ex vivo elements.
More Related Videos
10:32Athymic Rat Model for Evaluation of Engineered Anterior Cruciate Ligament Grafts
Published on: March 26, 2015
06:28Anterior Cruciate Ligament Transection and Synovial Fluid Lavage in a Rodent Model to Study Joint Inflammation and Posttraumatic Osteoarthritis
Published on: September 2, 2025
Related Concept Videos
Knee Joint
A total of seven ligaments support the knee joint. The patellar ligament, which is also attached to the quadriceps femoris...
Cross-Sectional Research
Muscles of the Anterior Neck
Impact Loading
In cases of elastic deformation,...
Distributed Loads
For example, consider a bookshelf filled with books stacked vertically adjacent to each other. The weight of the books is evenly distributed over the length of the shelf. As a result, the pressure at different locations on the surface of the...
Method of Sections