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    Interaction between Space and Effectiveness in Multisensory Integration: Behavioral and Perceptual Measures

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    Previous research has described several core principles of multisensory integration. These include the spatial principle, which relates the integrative product to the physical location of the stimuli and the principle of inverse effectiveness, in which minimally effective stimuli elicit the greatest multisensory gains when combined. In the vast majority of prior studies, these principles have been studied in isolation, with little attention to their interrelationships and possible interactions. Recent neurophysiological studies in our laboratory have begun to examine these interactions within individual neurons in animal models, work that we extend here into the realm of human performance and perception. To test this, we conducted a psychophysical experiment in which 51 participants were tasked with judging the location of a target stimulus. Target stimuli were visual flashes and auditory noise bursts presented either alone or in combination at four locations and at two intensities. Multisensory combinations were always spatially coincident. A significant effect was found for response times and a marginal effect was found for accuracy, such that the degree of multisensory gain changed as a function of the interaction between space and effectiveness. These results provide further evidence for a strong interrelationship between the multisensory principles in dictating human performance
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