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Exact(38)
Two loading cases were considered: the hip joint reaction force alone, and the hip joint reaction force with all muscle forces acting on the femur.
Changes in the joint reaction force orientation significantly altered mean acetabular bone strain values up to 67%.
Reduced knee flexion is a logical gait adaptation for individuals with patellofemoral pain (PFP) to lessen the patellofemoral joint reaction force and minimise pain during stair ambulation.
Motion of the patella was governed by a combination of kinematic and force control, based on knee flexion and patellofemoral joint reaction force data from the literature.
Micromotion was measured in a stair climbing simulator with loading to a joint reaction force of 200 kg for 6 million cycles.
While the canine femur seems to be loaded primarily in bending when only the hip joint reaction force is considered, the bending moment is significantly decreased when all muscle forces are considered as well.
Similar(22)
Joint reaction forces were estimated using a series of springs between articulating bones.
Full muscle loading and joint reaction forces are included in the finite element model.
We suggest studying the factors affecting acetabular orientation in standing to help reduce joint reaction forces and improve outcomes.
The crutch system was validated statically and dynamically for accuracy of computing joint reaction forces and moments during gait.
The greatest joint reaction forces were observed in the posterior direction of the wrist, while shoulder flexion moments were the greatest joint reaction moments.
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