Literature DB >> 17685785

On the effective number of tracked trajectories in normal human vision.

Srimant P Tripathy1, Sathyasri Narasimhan, Brendan T Barrett.   

Abstract

Z. W. Pylyshyn and R. W. Storm (1988) have shown that human observers can accurately track four to five items at a time. However, when a threshold paradigm is used, observers are unable to track more than a single trajectory accurately (S. P. Tripathy & B. T. Barrett, 2004). This difference between the two studies is examined systematically using substantially suprathreshold stimuli. The stimuli consisted of one (Experiment 1) or more (Experiments 2 and 3) bilinear target trajectories embedded among several linear distractor trajectories. The target trajectories deviated clockwise (CW) or counterclockwise (CCW) (by 19 degrees, 38 degrees, or 76 degrees in Experiments 1 and 2 and by 19 degrees, 38 degrees, or 57 degrees in Experiment 3), and observers reported the direction of deviation. From the percentage of correct responses, the "effective" number of tracked trajectories was estimated for each experimental condition. The total number of trajectories in the stimulus and the number of deviating trajectories had only a small effect on the effective number of tracked trajectories; the effective number tracked was primarily influenced by the angle of deviation of the targets and ranged from four to five trajectories for a +/-76 degrees deviation to only one to two trajectories for a +/-19 degrees deviation, regardless of whether the different magnitudes of deviation were blocked (Experiment 2) or interleaved (Experiment 3). Simple hypotheses based on "averaging of orientations," "preallocation of resources," or pop-out, crowding, or masking of the target trajectories are unlikely to explain the relationship between the effective number tracked and the angle of deviation of the target trajectories. This study reconciles the difference between the studies cited above in terms of the number of trajectories that can be tracked at a time.

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Year:  2007        PMID: 17685785     DOI: 10.1167/7.6.2

Source DB:  PubMed          Journal:  J Vis        ISSN: 1534-7362            Impact factor:   2.240


  12 in total

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6.  High-capacity, transient retention of direction-of-motion information for multiple moving objects.

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Journal:  J Vis       Date:  2010-06-01       Impact factor: 2.240

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9.  Misperceptions in the trajectories of objects undergoing curvilinear motion.

Authors:  Ozgur Yilmaz; Srimant P Tripathy; Haluk Ogmen
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10.  Bottlenecks of motion processing during a visual glance: the leaky flask model.

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Journal:  PLoS One       Date:  2013-12-31       Impact factor: 3.240

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