VISUAL REHABILITATION USING THE PRINCIPLES OF MULTISENSORY INTEGRATION

dc.contributor.authorDakos, Alexander Stamatiosen_US
dc.date.accessioned2019-05-24T08:35:52Z
dc.date.available2020-05-23T08:30:18Z
dc.date.issued2019en_US
dc.description.abstractBecause all organisms live in a world that produces stimuli of multiple sensory modalities, multisensory integration has become an invaluable tool for discriminating signals from the noise. Multisensory integration is the process by which information from different senses is combined in the brain to produce effects stronger than those seen evoked by any of the unisensory components presented individually. There are constraints on this process honed by environmental experience, and within this framework, the conditions leading to the greatest benefit derived from multisensory integration can be approximated by heuristics derived from these constraints (Xu et al. 2015). Here we examine some of these constraints and stimulus properties from which the greatest benefit is derived. Traditionally the benefits of multisensory integration manifest behaviorally in the form of lower stimulus detectability thresholds, and neurophysiologically in the form of increased firing rate. However, this thesis will illustrate the benefit of multisensory integration behaviorally in the visual rehabilitation process.en_US
dc.identifier.urihttps://wakespace.lib.wfu.edu/handle/10339/93992
dc.language.isoenen_US
dc.publisherWake Forest Universityen_US
dc.subjectCortical blindnessen_US
dc.subjectCross-modal integrationen_US
dc.subjectHemianopiaen_US
dc.subjectSuperior colliculusen_US
dc.titleVISUAL REHABILITATION USING THE PRINCIPLES OF MULTISENSORY INTEGRATIONen_US
dc.typeDissertationen_US
thesis.contributor.committeeChairRowland, Benjamin Aen_US
thesis.contributor.committeeMemberHampson, Robert Een_US
thesis.contributor.committeeMemberConstantinidis, Christosen_US
thesis.contributor.committeeMemberSalinas, Emilioen_US
thesis.contributor.committeeMemberStanford, Terrence Ren_US
thesis.degree.disciplineNeuroscienceen_US
thesis.embargo.terms2020-05-23en_US

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