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Fig. 2 3D motion and planar imaging model.
We report results relating to all factors for completeness but concentrate on planar retinal motion and planar objective motion, emphasizing here the multiple sources contributing to "eye movements".
In view of the functional data presented below, estimates of planar retinal motion and planar objective motion were therefore not affected by eye-movement differences.
In the following, we compare the degree to which V5/MT, MST, and CSv responded to coherent versus random motion, 3D flow and 2D planar motion, hemifield stimulation, pursuit signals, planar retinal motion, and planar objective motion.
Finally, we examined the responses of each ROI to eye movements, planar objective motion, and planar retinal motion (i.e., the main effects and their interaction in experiments 2 and 3, see Materials and Methods).
Figure 3 e shows the responses of CSv to the 3 motion types in experiment 3: eye movements, planar objective motion, and planar retinal motion (pooled across 2D and 3D conditions that each showed a similar response profile, shown in Supplementary Fig. S1 b ).
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In this study, the shooting method and the continuation technique are applied to investigate the large amplitude motion and non-planar motion characteristic of the inclined cable subject to the support motion.
This means that the 1/3 power law, experimentally found in the studies of hand-drawing and planar motion perception, implies motion at constant affine velocity.
The 4 possible combinations of objective planar motion (on or off) with smooth pursuit (on or off) allowed us to induce retinal planar motion in the presence or absence of objective planar motion and, vice versa, to induce objective planar motion in the presence or absence of retinal motion.
Experimental results for 1 DOF rotational motion and 2 DOF planar translational motion systems are presented.
Since the motion is planar, and 'p' and L are perpendicular, pz = ηz = 0 and attention may be restricted to the three-dimensional vector \boldsymbol\eta = (ηw, ηx, ηy).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

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CEO of Professional Science Editing for Scientists @ prosciediting.com