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Visual load does not decrease the auditory steady‐state response to 40‐Hz amplitude‐modulated tones
Stockholm University, Faculty of Social Sciences, Department of Psychology, Perception and psychophysics.ORCID iD: 0000-0002-5807-6855
Stockholm University, Faculty of Social Sciences, Department of Psychology, Perception and psychophysics.ORCID iD: 0000-0003-4531-4313
2020 (English)In: Psychophysiology, ISSN 0048-5772, E-ISSN 1469-8986, Vol. 57, no 12, article id e13689Article in journal (Refereed) Published
Abstract [en]

The auditory pathway consists of multiple recurrent loops of afferent and efferent connections that extend from the cochlea up to the prefrontal cortex. The early-filter theory proposes that these loops allow topdown filtering of early and middle latency auditory responses. Furthermore, the adaptive filtering model suggests that filtering of irrelevant auditory stimuli should start lower in the pathway during more demanding tasks. If so, the 40-Hz auditory steady state responses (ASSRs) to irrelevant sounds should be affected by top-down crossmodal attention to a visual task, and effects should vary with the load of the visual task. Because few studies have examined this possibility, we conducted two preregistered studies that manipulated visual load (Study 1: N = 43, Study 2: N = 45). Study 1 used two levels (low and high), and Study 2 used four levels (no, low, high, and very high). Subjects were asked to ignore a 500-Hz taskirrelevant tone that was amplitude-modulated to evoke 40-Hz ASSRs. Results from Bayesian analyses provided moderate to extreme support for no effect of load (or of task) on ASSRs. Results also supported no interaction with time (i.e., over blocks, over minutes, or with changes in ASSRs that were synchronized with the onset of the visual stimuli). Further, results provided moderate support for no correlation between effects of load and working memory capacity. Because the present findings support the robustness of ASSRs against manipulations of crossmodal attention, they are not consistent with the adaptive filtering model.

Place, publisher, year, edition, pages
2020. Vol. 57, no 12, article id e13689
Keywords [en]
crossmodal attention, EEG, early-filter theory, task difficulty, envelope following response
National Category
Applied Psychology Psychology
Research subject
Psychology
Identifiers
URN: urn:nbn:se:su:diva-184769DOI: 10.1111/psyp.13689ISI: 000570168400001OAI: oai:DiVA.org:su-184769DiVA, id: diva2:1464142
Funder
Swedish Research Council, 2015-01181Available from: 2020-09-04 Created: 2020-09-04 Last updated: 2022-02-25Bibliographically approved
In thesis
1. Effects of visual load on auditory processing
Open this publication in new window or tab >>Effects of visual load on auditory processing
2020 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

In daily life, people need to be able to focus on a task while ignoring any task-irrelevant background noise. For example, people who work in an open-space office may have to work on a report while ignoring the background talk among co-workers. Theories of attention argue that processing of task-irrelevant auditory information should become attenuated when attentional capacity is exhausted by task-relevant stimuli, for example a visual task. According to early-filter theory, top-down attenuation of auditory responses is possible at various stages of the auditory pathway through multiple recurrent loops. Furthermore, the adaptive filtering model of selective attention suggests that filtering occurs early when concurrent visual tasks are demanding (e.g., high load) and late when tasks are easy (e.g., low load).

The main aim of this thesis was to investigate whether auditory processing is attenuated during concurrent visual load manipulation, and if so, at which stage of the auditory pathway. Recurrent loops that are present throughout the entire auditory pathway should allow top-down modulation of even earliest responses, especially when accompanied by a highly demanding task. Recording these auditory responses during concurrent visual tasks with different levels of load could potentially show at which stages of auditory processing the filtering happens when the task demands are high or low, or there is no task at all.

This thesis tested the effects of visual load manipulation on the responses originating from different stages of the auditory pathway: mismatch negativity (MMN) to duration in Study I, MMN to frequency in Study III, auditory steady-state responses (ASSRs) to a 40-Hz modulation frequency in Study IV, and ASSRs to 20-, 40-, and 80-Hz modulation frequencies in Study V. Additionally, Study II compared different control conditions (cascade vs. no-repetition control) for evoking MMN to find a design that reduces confounds in the MMN. Results of Study II showed that cascade and no-repetition control are comparable control conditions for evoking MMN.

For the effects of visual load manipulation on auditory MMN (low vs. high load), results showed moderate evidence for the effect of load on duration MMN and moderate evidence for no effect of load on frequency MMN. However, results for the duration MMN might be confounded by physical differences between the low load and high load conditions in the visual task, and by a biased oddball paradigm used to evoke the MMN. Thus, it is most likely that auditory MMN is not affected by visual load (low vs. high).

For the effects of visual load on ASSRs (no, low, and high load), results showed moderate to strong evidence for no effects of load manipulation on ASSRs, but some comparisons were inconclusive. The convincing evidence obtained in Studies IV and V points to the robustness of ASSRs against visual load manipulation.

Because it is most likely that neither MMN nor ASSRs are affected by visual load manipulation, results presented in this thesis support the idea that attentional resources are modality specific. Because it is possible that filtering occurs at one stage of auditory processing and does not change with the concurrent task demands, the present results do not rule out the early-filter theory. However, results are inconsistent with the adaptive filtering model because filtering of task-irrelevant responses does not vary with the demands of the concurrent task.

Place, publisher, year, edition, pages
Stockholm: Department of Psychology, Stockholm University, 2020. p. 98
Keywords
EEG, event-related potential, mismatch negativity, auditory steady-state response, envelope following response, perceptual load, visual load, task difficulty, crossmodal attention, early-filter theory, adaptive filtering model
National Category
Psychology
Research subject
Psychology
Identifiers
urn:nbn:se:su:diva-184774 (URN)978-91-7911-246-2 (ISBN)978-91-7911-247-9 (ISBN)
Public defence
2020-10-21, U16, Frescati Hagväg 8 and digitally via Zoom: https://stockholmuniversity.zoom.us/j/65525307332, Stockholm, 13:00 (English)
Opponent
Supervisors
Available from: 2020-09-28 Created: 2020-09-04 Last updated: 2022-02-25Bibliographically approved

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Szychowska, MalinaWiens, Stefan

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