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Even though Hermite and Brutus use different algorithms and precisions to solve the equations of motion, we find that the lifetime of an unstable triple is statistically indistinguishable between converged Brutus and non-converged Hermite solutions (but see also Section 6.3).
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The postoperative range of motion we found is better than previous studies with computer-assisted 3D planned corrective osteotomy in radial malunions [22, 23].
With regard to our three primary endpoints, pain, stability, and range of motion, we found no significant difference between the 2 groups on evaluation 12 months after time of injury, see Table 2.
By comparing images before and after the motion, we found that while the rotation of the pons is negligible relative to the skull, the pons displaces significantly at the foramen magnum, on the order of ∼2 mm.
By investigating the influencing factors of the smart motion, we found that the device that consisted of one pH-responsive part, one hydrophobic part and a quartz cell performed the best under a 0.9% concentration of hydrogen peroxide during the diving-surfacing motion with a high frequency, leading to the highest output of induced current.
From the rotational flow by the circular end-effector motion, we found the range of frequencies that can generate swirl flow and then selected several frequencies (50, 77, and 100 Hz) and amplitudes (12, 15, and 21 μm) to analyze the flow velocity.
For the measurements of longitudinal LV systolic motion, we found clinically acceptable repeatability.
From the detailed analysis of motion, we found that the timing to the initial point of mechanical responses TR, always corresponded to the time when the bends are maximal on either the P- or R-bend sides.
If we consider the relation between gas molecules and a model for gas, namely a collection of billiard balls in random motion, we will find properties that are common to both domains (positive analogy) as well as properties that can only be ascribed to the model but not to the target domain (negative analogy).
As a result, we obtain a lower-dimensional representation of human postures which is more suitable to describe human motion, since we found that each dimension on the PCA space describes a natural mode of variation of human motion [16].
As a result, we obtain a lower-dimensional representation of human postures which is more suitable to describe human motion, since we found that each dimension on the PCA space describes a natural mode of variation of human motion.
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