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Therefore, the operated segment should provide enough cage-endplate contact stresses under compression to prevent TLIF cage displacement and allow spaced graft consolidation, while maintaining structural flexibility that approaches the intact specimen to decrease adjacent segment degeneration [ 22, 24, 32, 40, 41].
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The radius of the neck is found to increase with an increase in the deformation of the specimen and to decrease as the ductility of the material decreases.
After the strength reached 41 kN at the displacement of 144 mm, the flexural strength of the specimen started to decrease as a result of yield of re-bars and formation of microcracks.
The volume and pore pressure changes in live oil-filled sand specimens due to decrease in confining pressure under undrained condition were examined in laboratory.
Notably, higher density of Libellulidae and Hydrophilidae specimens appeared to decrease the relative success of the M form, but their effects were not significant.
The bending fatigue strength of gas carburized specimens was showed to decrease with the increasing case depths caused by the increasing of internal oxidation and nonmartensitic transformation present at the surface.
Efforts to improve the quality of RNA to be extracted from urine specimen may decrease the inter-platform variability observed.
Generally, adding alignment spacers tends to reduce the deflection along the specimen, and decrease the bending moment at the overlap edge.
However, these data also suggest that as the amount of total RNA starting material decreases the coefficient of similarity to the original specimen also decreases, which may contribute to inconsistencies in data interpretation.
The uniaxial compressive strength and specimen density decrease as the mass percent of coal and aggregate binder ratio rise.
At the last applied displacement, the specimen's strength decreases to 699.7 kN (76.6 % of the maximum strength) and its failure can be concluded to the shear-compression failure.
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