During knee motion, the fiber bundles of ligaments are nonuniformly loaded in a recruitment pattern which is different for successive knee-joint positions. As a result, the restraining functions of these ligaments are variable. To analyze the relative restraint contributions of the fiber bundles in different knee-joint positions, a new method was developed. Its application was illustrated for the cruciate ligaments of one knee-joint specimen. The methods developed to estimate bundle forces comprise five steps. First, the three-dimensional motions of a knee specimen are measured for anterior-posterior forces, using Rontgen stereophotogrammetric analysis. Second, bone-ligament-bone tensile tests are performed to evaluate the mechanical proper...
On the basis of earlier reported data on the in vitro kinematics of passive knee-joint motions of fo...
Posterior drawer forces of up to 400 N. Design. A nonlinear three-dimensional finite element model o...
Despite decades of clinical, experimental, and computational research on knee joints, the lack of un...
During knee motion, the fiber bundles of ligaments are nonuniformly loaded in a recruitment pattern ...
During knee-joint motions, the fiber bundles of the knee ligaments are nonuniformly loaded in a recr...
The modeling approach is the only possible way to estimate the biomechanic function of the different...
The ligaments of the knee consist of fiber bundles with variable orientations, lengths and mechanica...
A mathematical model of the knee ligaments in the sagittal plane is used to study the forces in the ...
On the basis of earlier reported data on the in vitro kinematics of passive knee-joint motions of fo...
Passive knee-joint motion and 'stability' characteristics depend on the interrelation between joint ...
A mathematical model of the knee ligaments in the sagittal plane is used to study the forces in the ...
The development of a mathematical model of the knee ligaments in the sagittal plane is presented. Es...
Obtaining tibio-femoral (TF) contact forces, ligament deformations and loads during daily life motor...
A mathematical model of the knee in the sagittal plane was used to investigate the ligament forces r...
On the basis of earlier reported data on the in vitro kinematics of passive knee-joint motions of fo...
Posterior drawer forces of up to 400 N. Design. A nonlinear three-dimensional finite element model o...
Despite decades of clinical, experimental, and computational research on knee joints, the lack of un...
During knee motion, the fiber bundles of ligaments are nonuniformly loaded in a recruitment pattern ...
During knee-joint motions, the fiber bundles of the knee ligaments are nonuniformly loaded in a recr...
The modeling approach is the only possible way to estimate the biomechanic function of the different...
The ligaments of the knee consist of fiber bundles with variable orientations, lengths and mechanica...
A mathematical model of the knee ligaments in the sagittal plane is used to study the forces in the ...
On the basis of earlier reported data on the in vitro kinematics of passive knee-joint motions of fo...
Passive knee-joint motion and 'stability' characteristics depend on the interrelation between joint ...
A mathematical model of the knee ligaments in the sagittal plane is used to study the forces in the ...
The development of a mathematical model of the knee ligaments in the sagittal plane is presented. Es...
Obtaining tibio-femoral (TF) contact forces, ligament deformations and loads during daily life motor...
A mathematical model of the knee in the sagittal plane was used to investigate the ligament forces r...
On the basis of earlier reported data on the in vitro kinematics of passive knee-joint motions of fo...
Posterior drawer forces of up to 400 N. Design. A nonlinear three-dimensional finite element model o...
Despite decades of clinical, experimental, and computational research on knee joints, the lack of un...