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Investigating the Deployment of Visual Attention Before Accurate and Averaging Saccades via Eye Tracking and Assessment of Visual Sensitivity
Published on: March 18, 2019
Sound lateralization ability is affected by saccade direction but not eye movement-related eardrum oscillations
Nancy Sotero Silva1, Felix Bröhl2,3,4, Christoph Kayser1
1Cognitive Neuroscience, Faculty of Biology, Bielefeld University, Bielefeld, Germany.
None:
Eye-movement-related eardrum oscillations (EMREOs) are pressure changes recorded in the ear that supposedly reflect displacements of the tympanic membrane induced by saccadic eye movements. Previous studies hypothesized that the underlying mechanisms might play a role in combining visual and acoustic spatial information. Yet, whether and how the eardrum moves during an EMREO and whether this movement affects acoustic spatial perception remains unclear. We here probed human acoustic lateralization performance for sounds presented at different times during a saccade (hence the EMREO) in two tasks, one relying on free-field sounds and one presenting sounds in-ear. Since the EMREO generation likely involves the middle ear muscles, whose tension can alter sound transmission, it is possible that judgements of sound locations may vary concomitantly with the state of the EMREO at the time of sound presentation. However, when testing two specific hypotheses of how movements of the eardrum underlying the EMREO may affect spatial hearing, we found no evidence in support of this. Still, and in line with previous studies, we found that participants' manual sound lateralization responses were shaped by the spatial congruency of the saccade target direction and the sound direction. Thus, either the eardrum does not move directly as reflected by the EMREO signal, or despite its movement the underlying effects at the tympanic membrane only have minimal perceptual impact. Our results call for more refined studies to understand how the eardrum moves during a saccade and whether or how the EMREO phenomenon impacts spatial hearing.NEW & NOTEWORTHY Eye movement-related eardrum oscillations (EMREOs) have intrigued auditory neuroscientists for the past couple of years, as their origin and function remain unclear. We probed whether the EMREO accurately represents eardrum movements by comparing sound lateralization performance in spatial discrimination tasks. However, we found no effects driven by EMREOs deflections magnitude and sign. This suggests that eardrum movements during saccades are not directly reflected by the EMREO signal.
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