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The influence of vibration velocity amplitude on the friction force in the presence of tangential longitudinal vibrations and on reduction of the driving force in sliding motion was analysed.
The cervical spine motion was analysed using an MCS device.
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Transition from a single potential well oscillations to cross-well motion is analysed.
These external controls, and the effects of them on longitudinal and vertical motion are analysed statistically and quantitative relationships are derived to underpin the resultant conceptual model.
Features of the resulting vibration control and the influence on it of time-delay based on different sampling intervals of seismic ground motion are analysed.
For all contraction conditions, the first trial was discarded and the central 6 seconds of data (20 80° of motion) were analysed for the remaining four trials.
The loss in azimuth resolution and the GMTI and MTI problems introduced by micro-motions was analysed.
The relationship between posture and joint range of motion, hip dislocation, scoliosis, and pain was analysed using logistic regression and Spearman's correlation.
The motion principle is analysed on the basis of harmonic response calculation results.
Calculation of LSMD at 'any level' was only performed in cases in which all four motion segments were analysed.
Notes : LSR = lumbar segment rigidity; LSI = lumbar segmental instability; Calculation of LSMD at 'any level' was only performed in cases in which all four motion segments were analysed.
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