Key result
Systolic stimulus presentation initially improves detection sensitivity versus diastole but this benefit attenuates over time.
Why the study?
Cardiac-phase modulation of perception has been observed across various tasks, but its temporal dynamics during sustained cognitive monitoring remain unclear.
Does cardiac phase (systole vs diastole) modulate detection sensitivity in a cognitive monitoring task?
Does cardiac phase (systole vs diastole) modulate detection sensitivity in a cognitive monitoring task?
Cardiac phase modulates perceptual sensitivity, but this embodied sensory intake varies during prolonged monitoring tasks, offering a physiological account of vigilance changes over time.
Cardiac timing may subtly affect vigilance performance; leaves open whether phase-targeted presentation improves sustained monitoring.
Cardiac-phase modulation of perception has been observed across various cognitive tasks, but its temporal dynamics during sustained monitoring remain unclear. We examined how cardiac phase modulates detection sensitivity ( d′ ) and response criterion ( c ) during a cognitive vigilance task. Thirty-seven participants performed three successive blocks of a near-threshold detection task in which stimuli were presented during cardiac systole or diastole based on real-time ECG R-wave detection. Performance was analyzed using signal detection theory, with cardiac phase and block effects tested via linear mixed-effects models. Results showed a systolic advantage in d′ in the first block that attenuated across later blocks, whereas the cardiac-phase effect on response criterion persisted unchanged, and response time was unaffected by cardiac timing. These findings indicate that bodily states influence perceptual sensitivity, and that the embodied sensory intake may vary in prolonged monitoring tasks, offering a physiological account of vigilance changes over time.
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Jiao et al. (2026) studied this question. Stimuli presentation during cardiac systole vs. Stimuli presentation during cardiac diastole was evaluated on Detection sensitivity (d') and response criterion (c). Stimuli presentation during cardiac systole showed an advantage in detection sensitivity in the first block that attenuated across later blocks compared to diastole.
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