Literature DB >> 12596646

In vitro measurement of the restraining role of the anterior cruciate ligament during walking and stair ascent.

A M Ahmed1, C McLean.   

Abstract

The study aimed to test the hypothesis that the restraining role of the anterior cruciate ligament (ACL) of the knee is significant during the activities of normal walking and stair ascent. The role of the ACL was determined from the effect of ACL excision on tibiofemoral displacement patterns measured in vitro for fresh-frozen knee specimens subjected to simulated knee kinetics of walking (n = 12) and stair ascent (n = 7). The knee kinetics were simulated using a newly developed dynamic simulator able to replicate the sagittal-plane knee kinetics with reasonable accuracy while ensuring unconstrained tibiofemoral kinematics. The displacements were measured using a calibrated six degree-of-freedom electromechanical goniometer. For the simulation of the walking cycle, two types of knee flexion/extension moment patterns were used: the more common "biphasic" pattern, and an extensor muscle force intensive pattern. For both of these patterns, the restraining role of the ACL to tibial anterior translation was found to be significant throughout the stance phase and in the terminal swing phase, when the knee angle was in the range of 4 degrees to 30 degrees. The effect of ACL excision was an increase in tibial anterior translation by 4 mm to 5 mm. For the stair ascent cycle, however, the restraining role of the ACL was significant only during the terminal stance phase, and not during the initial and middle segments of the phase. Although, in these segments, the knee moments were comparable to that in walking, the knee angle was in the range of 60 degrees to 70 degrees. These results have been shown to be consistent with available data on knee mechanics and ACL function measured under static loading conditions.

Mesh:

Year:  2002        PMID: 12596646     DOI: 10.1115/1.1504100

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  10 in total

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2.  Are contemporary femoral components sizing and design likely to affect functional results in TKA? A mathematical model of an implanted knee to predict knee forces.

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3.  Three-dimensional kinematic evaluation of Tightrope CCL in a canine in vitro cranial cruciate deficient stifle model.

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4.  Kinematic evaluation of the step-up exercise in anterior cruciate ligament deficiency.

Authors:  Michal Kozánek; Ali Hosseini; Samuel K Van de Velde; Mohamed E Moussa; Jing Sheng Li; Thomas J Gill; Guoan Li
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5.  High knee valgus in female subjects does not yield higher knee translations during drop landings: a biplane fluoroscopic study.

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6.  In vivo measurement of ACL length and relative strain during walking.

Authors:  K A Taylor; H C Cutcliffe; R M Queen; G M Utturkar; C E Spritzer; W E Garrett; L E DeFrate
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7.  The triply periodic minimal surface-based 3D printed engineering scaffold for meniscus function reconstruction.

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8.  Meniscus Injuries Alter the Kinematics of Knees With Anterior Cruciate Ligament Deficiency.

Authors:  Ali Hosseini; Jing-Sheng Li; Thomas J Gill; Guoan Li
Journal:  Orthop J Sports Med       Date:  2014-08-21

9.  Tibiofemoral Cartilage Contact Differences Between Level Walking and Downhill Running.

Authors:  Berkcan Akpinar; Eric Thorhauer; Scott Tashman; James J Irrgang; Freddie H Fu; William J Anderst
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10.  Three-dimensional finite-element analysis of aggravating medial meniscus tears on knee osteoarthritis.

Authors:  Lan Li; Longfei Yang; Kaijia Zhang; Liya Zhu; Xingsong Wang; Qing Jiang
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  10 in total

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