Finite element analysis of the human ACL subjected to passive anterior tibial loads

scientific article published on 01 February 2004

Finite element analysis of the human ACL subjected to passive anterior tibial loads is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1080/10255840410001658839
P698PubMed publication ID14965874

P50authorMark TaylorQ47770287
P2093author name stringGeorges Limbert
John Middleton
P2860cites workThe effect of medial meniscectomy on anterior-posterior motion of the kneeQ28275591
The anterior cruciate: a dilemma in sports medicineQ40336444
Direct measurement of strain in the posterolateral bundle of the anterior cruciate ligament.Q45994141
Direct in vitro measurement of forces in the cruciate ligaments. Part II: The effect of section of the posterolateral structures.Q46161136
A new device to measure the structural properties of the femur-anterior cruciate ligament-tibia complexQ46529986
Combined knee loading states that generate high anterior cruciate ligament forcesQ46936571
The effect of the point of application of anterior tibial loads on human knee kinematics.Q52077422
Three-dimensional deformation and stress distribution in an analytical/computational model of the anterior cruciate ligament.Q52077426
Viscoelastic constitutive law in large deformations: application to human knee ligaments and tendons.Q52232799
A composite micromechanical model for connective tissues: Part I--Theory.Q52426735
Objective assessment of the anterior tibial translation in Lachman test position. Comparison between three types of measurement.Q52906710
The Cruciate Ligaments of the Knee JointQ56340728
Intraoperative kinematic protocol for knee joint evaluationQ57010129
Location-dependent variations in the material properties of the anterior cruciate ligamentQ68135493
Determination of the in situ loads on the human anterior cruciate ligamentQ70506544
Direct in vitro measurement of forces in the cruciate ligaments. Part I: The effect of multiplane loading in the intact kneeQ70589490
The biomechanics of anterior cruciate ligament rehabilitation and reconstructionQ71287657
Medial restraints to anterior-posterior motion of the kneeQ71394247
The function of the primary ligaments of the knee in anterior-posterior and medial-lateral motionsQ71401521
Loading of the two bundles of the posterior cruciate ligament: an analysis of bundle function in a-P drawerQ71538578
The contribution of the cruciate ligaments to the load-displacement characteristics of the human knee jointQ72072298
The influence of muscle forces and external loads on cruciate ligament strainQ72180952
A validated three-dimensional computational model of a human knee jointQ73349252
Biomechanical response of the passive human knee joint under anterior-posterior forcesQ74055573
Strain distribution in the ligament using photoelasticity. A direct application to the human ACLQ74836225
P433issue1
P304page(s)1-8
P577publication date2004-02-01
P1433published inComputer Methods in Biomechanics and Biomedical EngineeringQ15751255
P1476titleFinite element analysis of the human ACL subjected to passive anterior tibial loads
P478volume7

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cites work (P2860)
Q41620991FE analysis of stress and displacements occurring in the bony chain of leg.
Q38726176Modelling approaches for evaluating multiscale tendon mechanics

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