Olfactory Modulation of Steady- State Visual Evoked Potential Topography in Comparison with Differences in Odor Sensitivity

Author:

Owen Caroline M.1,Patterson John1,Silberstein Richard B.2

Affiliation:

1. Sensory Neuroscience Laboratory, School of Biophysical Sciences and Electrical Engineering, Swinburne University of Technology, Hawthorn, Australia, Cooperative Research Centre for International Food Manufacture and Packaging Science, Hawthorne, Australia

2. Brain Sciences Institute, Swinburne University of Technology, Hawthorn, Australia

Abstract

Summary Research was undertaken to determine whether olfactory stimulation can alter steady-state visual evoked potential (SSVEP) topography. Odor-air and air-only stimuli were used to determine whether the SSVEP would be altered when odor was present. Comparisons were also made of the topographic activation associated with air and odor stimulation, with the view toward determining whether the revealed topographic activity would differentiate levels of olfactory sensitivity by clearly identifying supra- and subthreshold odor responses. Using a continuous respiration olfactometer (CRO) to precisely deliver an odor or air stimulus synchronously with the natural respiration, air or odor (n-butanol) was randomly delivered into the inspiratory airstream during the simultaneous recording of SSVEPs and subjective behavioral responses. Subjects were placed in groups based on subjective odor detection response: “yes” and “no” detection groups. In comparison to air, SSVEP topography revealed cortical changes in response to odor stimulation for both response groups, with topographic changes evident for those unable to perceive the odor, showing the presence of a subconscious physiological odor detection response. Differences in regional SSVEP topography were shown for those who reported smelling the odor compared with those who remained unaware of the odor. These changes revealed olfactory modulation of SSVEP topography related to odor awareness and sensitivity and therefore odor concentration relative to thresholds.

Publisher

Hogrefe Publishing Group

Subject

Physiology,Neuropsychology and Physiological Psychology,General Neuroscience

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