Transfer of figure-ground segregation learning is facilitated by a cross-modal auditory feature-based attention cue.
Fromm, C.; Huxlin, K. R.; Diaz, G. J.
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This study tested the role of a cross-modal feature based attention (FBA) cue on perceptual learning and spatial transfer. The trained task was figure-ground segregation in the motion domain. The experiment involved a pre-test, ten days of training, and a post-test. Twelve visually intact participants were immersed in a virtual environment and tasked with identifying the location and motion direction of a peripheral 10{whitebullet}aperture of semi-coherently moving dots embedded at randomized locations within whole-field random dot motion. The aperture contained both randomly moving dots and signal dots which had global leftward or rightward motion. To manipulate motion coherence, a 3-up-1-down staircase adjusted the direction range of the signal dots in response to segregation judgments. The dot stimulus was preceded by a 1s white-noise spatialized auditory cue emitted from the fixation point (neutral group), or from an emitter moving in the direction of signal dots at 80{whitebullet}/s in a horizontal arc centered on the fixation point (FBA cue group). Visual feedback indicated the selected and true aperture locations, and correctness of the motion direction judgment. Analysis measured MD discrimination within the aperture as well as segregation ability, both measured in terms of direction range threshold (DRT). At trained locations, MD DRT improved similarly in FBA and neutral groups, and learning was retained when the pre-cue was removed ({Delta}DRT from pretest to posttest: 61{+/-}10{whitebullet}(SD) FBA, 74{+/-}10{whitebullet}neutral), and transferred to untrained locations (41{+/-}10{whitebullet}FBA, 45{+/-}10{whitebullet}neutral). DRT for localization also improved in both groups when pre-cues were removed (49{+/-}10{whitebullet}FBA, 44{+/-}10{whitebullet}neutral), but only the FBA group showed full transfer of learning to untrained locations in the segregation task (32{+/-}10{whitebullet}FBA, 23{+/-}10{whitebullet}neutral). In summary, transfer occurred for both motion direction and segregation tasks, but the segregation transfer required the presence of the cross-modal FBA cue during training.
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