Exposure to multisensory and visual static or moving stimuli enhances processing of nonoptimal visual rhythms

Atten Percept Psychophys. 2022 Nov;84(8):2655-2669. doi: 10.3758/s13414-022-02569-1. Epub 2022 Oct 14.

Abstract

Research has shown that visual moving and multisensory stimuli can efficiently mediate rhythmic information. It is possible, therefore, that the previously reported auditory dominance in rhythm perception is due to the use of nonoptimal visual stimuli. Yet it remains unknown whether exposure to multisensory or visual-moving rhythms would benefit the processing of rhythms consisting of nonoptimal static visual stimuli. Using a perceptual learning paradigm, we tested whether the visual component of the multisensory training pair can affect processing of metric simple two integer-ratio nonoptimal visual rhythms. Participants were trained with static (AVstat), moving-inanimate (AVinan), or moving-animate (AVan) visual stimuli along with auditory tones and a regular beat. In the pre- and posttraining tasks, participants responded whether two static-visual rhythms differed or not. Results showed improved posttraining performance for all training groups irrespective of the type of visual stimulation. To assess whether this benefit was auditory driven, we introduced visual-only training with a moving or static stimulus and a regular beat (Vinan). Comparisons between Vinan and Vstat showed that, even in the absence of auditory information, training with visual-only moving or static stimuli resulted in an enhanced posttraining performance. Overall, our findings suggest that audiovisual and visual static or moving training can benefit processing of nonoptimal visual rhythms.

Keywords: Audiovisual; Motion; Multisensory perception; Perceptual learning; Rhythm.

MeSH terms

  • Acoustic Stimulation
  • Auditory Perception* / physiology
  • Humans
  • Learning* / physiology
  • Photic Stimulation
  • Visual Perception / physiology