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Since posture does not change with body size in Felidae, the role of allometry in maintaining relative bone strength should be marked.
Both contact situation and bone strength should be determinant factors of long-term stability of the nonstemmed system.
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These results suggest that supplemental Ca may be beneficial for the attainment of peak bone strength and that multiple factors linked to bone mass and strength should be taken into account when setting dietary levels of adequate mineral intake to support optimal peak bone mass acquisition.
Methodological limitations and strengths should be evaluated.
Several study limitations and strengths should be addressed.
In accordance with this, bone biomechanics should be measured to study its strength.
It is thought that a perfect bone replacement material should be biocompatible and have good mechanical strength, but should also (for some reason) be replaced by host bone over time.
The bone conduction threshold should be stable.
Now, the bones should be a bit loose.
Bone strength can be estimated from measurements of bone mineral density (BMD) [ 8].
The outer porous coating should exhibit bone-like architecture, high mechanical strength and good bioactivity to bond to bone, whereas the interlayer should be chemically stable in biological fluids to avoid detachment between the joined parts.
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