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June 3, 20260 citationsOpen Access

Cardiac afferent signals can facilitate visual dominance in binocular rivalry

JVJohn P. VeilletteUniversity of ChicagoFGFan GaoUniversity of ChicagoHNHoward C. NusbaumUniversity of Illinois Chicago

Key Points

  • The study aims to investigate how cardiac signals affect visual perception during binocular rivalry.
  • Presented separate grating stimuli to each eye in a binocular rivalry setup.
  • Manipulated timing of visual stimuli with subjects' electrocardiogram to align with systole or diastole phases.
  • Measured duration of perceptual dominance for each stimulus.
  • Dominance durations increased for systole-entrained stimuli, contrary to the Baroreceptor Hypothesis.
  • Significant findings demonstrate cardiac signals influence visual awareness rather than suppress it.
  • Cardiac-dependent rivalry effects persisted even when subjects had no conscious access to heartbeat sensations.

Abstract

Sensory signals from the body's visceral organs (e.g. the heart) can robustly influence the perception of exteroceptive sensations. This interoceptive–exteroceptive interaction has been argued to underlie self-awareness by situating one's perceptual awareness of exteroceptive stimuli in the context of one's internal state, but studies probing cardiac influences on visual awareness have yielded conflicting findings. In this study, we presented separate grating stimuli to each of subjects' eyes as in a classic binocular rivalry paradigm – measuring the duration for which each stimulus dominates in perception. However, we caused the gratings to 'pulse' at specific times relative to subjects' real-time electrocardiogram, manipulating whether pulses occurred during cardiac systole, when baroreceptors signal to the brain that the heart has contracted, or in diastole when baroreceptors are silent. The influential 'Baroreceptor Hypothesis' predicts the effect of baroreceptive input on visual perception should be uniformly suppressive. In contrast, we observed that dominance durations increased for systole-entrained stimuli, inconsistent with the Baroreceptor Hypothesis. Furthermore, we show that this cardiac-dependent rivalry effect is preserved in subjects who are at-chance discriminating between systole-entrained and diastole-presented stimuli in a separate interoceptive awareness task, suggesting that our results are not dependent on conscious access to heartbeat sensations.

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Cite This Study

Veillette et al. (2024) studied this question.

synapsesocial.com/papers/6a1fc5d7dee9eb8c0dce72b5https://doi.org/10.6082/kse3m-gq089
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