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Detection of periodic motion trajectories: Effects of frequency and radius. | LitMetric

AI Article Synopsis

  • Periodic trajectories play a crucial role in understanding biological motion, with a study extending previous findings on radial frequency (RF) motion detection.
  • The researchers found that detection thresholds for low RF trajectories decrease as a power function, while high RF trajectories plateau at certain levels.
  • Additionally, the study suggests that detection thresholds are affected by the radius of the stimuli and that there is no significant advantage for the upper or lower fields in the parafoveal area, highlighting the parallel processing of spatial and temporal information in perception and action.

Article Abstract

Periodic trajectories are an important component of biological motion. Or, Thabet, Wilkinson, and Wilson (2011) studied radial frequency (RF) motion trajectory detection and concluded that, for RF2-5 trajectories, the threshold function paralleled that of static RF patterns. We have extended Or et al.'s (2011) findings to a broader range of RFs (three to 24 cycles) and across a 4-fold range of radii (1°-4°). We report that (a) thresholds for RF trajectories decrease as a power function of RF for low RF trajectories (three to six cycles) before approaching an asymptote at high RFs (12-24 cycles); (b) detection thresholds for RF trajectories scale proportionally with radius; and (c) there is no lower versus upper field advantage in the parafoveal field for stimuli displaced from fixation on the vertical midline. The results are compared to earlier findings for static RF thresholds, and we argue that our findings support the existence of parallel spatial and temporal processing channels that may contribute to both action perception and production.

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Source
http://dx.doi.org/10.1167/16.7.10DOI Listing

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