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This was due to the fact that the axis for head rotation during head-pursuit and also during passive head and whole-body rotation (target stationary in space, Fig. 1 C – E, VOR ×1) was shifted from the axis for eye rotation (see Methods; Collewijn et al. 1982).
Figure 5 A, B shows the population response (mean ± SE) of the 32 neurons during head-pursuit (target stationary in space) (Fig. 5 A ) and passive head-only rotation (target stationary in space) (Fig. 5 B ). Discharge modulation was aligned with the sinusoidal stimulus so that the increased modulation occurred during the later half of the cycle.
These results indicate that head rotation in complete darkness still induced clear discharge modulation of FEF pursuit neurons, suggesting that the residual gaze-velocity components alone cannot explain the modulation during head-pursuit and passive head and whole-body rotation (target stationary in space).
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Mental rotation proper is believed to be dependent on the angle of rotation at which the targets are presented; that is, the longer it takes to respond to a rotated target the larger the angle of rotation is.
Though Americans may remember his catchy tune "A Little Bit More" from heavy rotation in Target commercials, most would be hard-pressed to identify him in the flesh.
As a farmer I can spend the rest of the year planning my crop, changing my rotation to target that".
Besides these important technological advantages, this magnetron type also has some unique features related to its rotation and/or target design.
As a farmer I can spend the rest of the year planning my crop, changing my rotation to target that" "What attracted me was the opportunity for a fixed price and focusing on a high value product".
If we assume that all AC subjects have a similar overall attention deficit, then a negative correlation would be expected between rotation and target errors: subjects whose performance in one task is affected more than average would be expected to be affected less than average on the other task.
The function,, which defines the goodness of fit of the jaw model given a particular interpolation parameter,, is shown in the following equation: (5). Figure 5 Jaw rotation morph targets.
The distractor stimuli (90° rotations of target) were either low contrast (Michelson Contrast Ratio = .51; foreground luminance = 5.4 cd/m2, background luminance = 16.8 cd/m2) or high contrast (Michelson Contrast Ratio = .96; foreground luminance = .54 cd/m2, background luminance = 30.5 cd/m2); High contrast stimuli are referred to as being "salient" and low contrast stimuli as "non-salient".
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