Literature DB >> 9001937

A musculoskeletal model of the knee for evaluating ligament forces during isometric contractions.

K B Shelburne1, M G Pandy.   

Abstract

A model of the knee in the sagittal plane was developed to study the forces in the ligaments induced by isometric contractions of the extensor and flexor muscles. The geometry of the distal femur was obtained from cadaver data. The tibial plateau and patellar facet were modeled as flat surfaces. Eleven elastic elements were used to describe the mechanical behavior of the anterior and posterior cruciate ligaments (ACL and PCL), the medial and lateral collateral ligaments (MCL and LCL), and the posterior capsule. The model knee was actuated by 11 musculotendinous units, each muscle represented by a Hill-type contractile element, a series-elastic element, and a parallel-elastic element. Tendon was assumed to be elastic. The response of the model to anterior-posterior drawer suggests that the geometrical and mechanical properties of the model ligaments approximate the behavior of real ligaments in the intact knee. Calculations for a simulated quadriceps leg raise indicate further that the two-dimensional model reproduces the response of the three-dimensional knee under similar conditions of loading and constraint. During maximum isometric contractions of the quadriceps, the model ACL is loaded from full extension to 80 degrees C of flexion; the model PCL is loaded at 70 degrees of flexion and greater. For maximum isometric extension, ACL forces in the range 0-20 degrees of flexion depend most heavily upon the force-length properties of the quadriceps. At flexion angles greater than 20 degrees, cruciate ligament forces are determined by the geometry of the articulating surfaces of the bones. During isolated contractions of the hamstrings and gastrocnemius muscles, the model ACL is loaded from full extension to 10 degrees of flexion; the model PCL is loaded at all flexion angles greater than 10 degrees. Isolated contractions of the flexor muscles cannot unload the ACL near full extension, as the behavior of the ACL in this region is governed by the shapes of the bones. At 10 degrees of flexion or greater, the overall pattern of PCL force is explained by the force length properties of the hamstrings and by the geometrical arrangement of the flexor muscles about the knee.

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Year:  1997        PMID: 9001937     DOI: 10.1016/s0021-9290(96)00119-4

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  28 in total

1.  Effect of sex on preactivation of the gastrocnemius and hamstring muscles.

Authors:  R G DeMont; S M Lephart
Journal:  Br J Sports Med       Date:  2004-04       Impact factor: 13.800

2.  Prediction of In Vivo Knee Joint Loads Using a Global Probabilistic Analysis.

Authors:  Alessandro Navacchia; Casey A Myers; Paul J Rullkoetter; Kevin B Shelburne
Journal:  J Biomech Eng       Date:  2016-03       Impact factor: 2.097

3.  THE EFFECTS OF ANTICIPATION ON THE MECHANICS OF THE KNEE DURING SINGLE-LEG CUTTING TASKS: A SYSTEMATIC REVIEW.

Authors:  Thomas G Almonroeder; Erika Garcia; Malerie Kurt
Journal:  Int J Sports Phys Ther       Date:  2015-12

4.  Muscle preactivity of anterior cruciate ligament-deficient and -reconstructed females during functional activities.

Authors:  R G Demont; S M Lephart; J L Giraldo; C B Swanik; F H Fu
Journal:  J Athl Train       Date:  1999-04       Impact factor: 2.860

5.  The interaction between the vastus medialis and vastus intermedius and its influence on the extensor apparatus of the knee joint.

Authors:  Karl Grob; Mirjana Manestar; Luis Filgueira; Markus S Kuster; Helen Gilbey; Timothy Ackland
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2017-01-25       Impact factor: 4.342

6.  The interaction of muscle moment arm, knee laxity, and torque in a multi-scale musculoskeletal model of the lower limb.

Authors:  Donald R Hume; Alessandro Navacchia; Azhar A Ali; Kevin B Shelburne
Journal:  J Biomech       Date:  2018-06-15       Impact factor: 2.712

7.  Late quadriceps tendon rupture at the donor site following cruciate ligament reconstruction using central quadriceps tendon graft.

Authors:  Vivek Pandey; Sandesh Madi; Amy Joseph; Kiran Acharya
Journal:  BMJ Case Rep       Date:  2015-10-16

Review 8.  Functional bracing of ACL injuries: current state and future directions.

Authors:  Sean D Smith; Robert F Laprade; Kyle S Jansson; Asbjørn Arøen; Coen A Wijdicks
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2013-04-27       Impact factor: 4.342

9.  Anterior Cruciate Ligament Injury: Compensation during Gait using Hamstring Muscle Activity.

Authors:  Paola Formento Catalfamo; Gerardo Aguiar; Jorge Curi; Ariel Braidot
Journal:  Open Biomed Eng J       Date:  2010-06-10

10.  Experimental validation of a tibiofemoral model for analyzing joint force distribution.

Authors:  Emily J Miller; Rose F Riemer; Tammy L Haut Donahue; Kenton R Kaufman
Journal:  J Biomech       Date:  2009-04-22       Impact factor: 2.712

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