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Graft fixation to bone should furthermore consider that the bone mineral density and the angle of force application significantly differ between the femoral and the tibial bone.
Efficacies of different fixation techniques are sensitive to the angle of force application.
All methods showed variation in the force required for tube motion with angle of force application.
Figure 5 provides a graphical illustration of the dataset as it relates to the angle of force application.
Standard deviations between test pulls were also observed to depend upon the angle of force application and fixation method.
In general, both force values and standard deviations exhibited a strong dependence upon angle of force application.
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Due to the nature of fixation being more of a point on the tube rather than immobilization of a segment of the tube, traditional methods allow for rotation while, at extreme angles of force application, devices do not.
Due to large variations in the form and functionality of various fixation methods, there is a need to examine several different angles of force application in order to thoroughly evaluate the performance of ET tube restraints.
These effects would likely not be consistent across devices, or even angles of force application, so relativistic observations made in this study may not necessarily hold true in the clinical setting.
During this time, the angles of force on the hoof changes (because of the lack of support from the laminae) and the hoof grows unevenly.
Build rate and walk rate are also determined by steering force and the direction angle of steering force α k.
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