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Additionally, body mass index and smoking status were associated with tube displacement (p < 0.05).
The results of the ANOVA showed that for both the contact and fixation models, the loading site was a significant factor in the three-dimensional displacement (p < 0.01) (Table 3). Figure 8 Displacement in the buccolingual direction (x-axis).
A reduction using a transconjunctival approach and an intraoral approach was statistically better than that using an intraoral approach, Gillies approach, and lateral canthotomy approach for a posterior displacement (P < 0.05).
Displacements across participants were found to be small (mean ± S.D. of displacement AD (absolute) = 0.43±0.28 mm; AD (relative) = 0.11±0.07 mm; OC (absolute) = 0.33±0.16 mm; OC (relative) = 0.11±0.07 mm); no significant differences were found between the experimental groups (2-tailed t-test; absolute displacement p = 0.21; relative displacement p = 0.82).
A correlation was found between manifestation of humeral head necrosis and residual axial or rotational deformities (p = 0.004) and secondary fracture displacement (p = 0.03).
Locking plates in normal bone had lower stiffness and torque during torsion testing (both p = 0.03), but there was no significant difference in rotation (angular displacement) (p = 0.84).
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The critical fracture force of each CT specimen was determined from the measured force-crack opening displacement (P-V) curve.
Load vs. mid-span deflection (P-δ) curves, load vs. crack mouth opening displacement (P-CMOD) curves and load vs. crack tip opening displacement (P-CTOD) curves of the tested beams were obtained.
Side-span vertical displacement (S-V), main-span vertical displacement (M-V) and pylon top horizontal displacement (P-H), are different for CFRP and Steel cables at three different cases designated as case a, case b and case c.
Finite element analyses was then carried out to calculate the complete load vs. crack mouth opening displacement (P-CMOD) curve, the critical crack propagation length ΔaC and the unstable fracture toughness KunIC for notched beams under three-point bending.
The hypotheses of the assumption are given below: 1. the nonlinear characteristic of the load-crack mouth opening displacement (P-CMOD) curve is caused by fictitious crack extension in front of a stress-free crack; and 2.
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