Temporal mechanisms of multimodal binding

Author:

Burr David12,Silva Ottavia3,Cicchini Guido Marco3,Banks Martin S.4,Morrone Maria Concetta56

Affiliation:

1. Department of Psychology, Università Degli Studi di Firenzevia S. Nicolò 89, Florence 50125, Italy

2. School of Psychology, University of Western AustraliaNedlands, Western Australia 6009, Australia

3. Faculty of Psychology, Università Vita-Salute San Raffaelevia Olgettina 58, Milan 20132, Italy

4. Department of Psychology, School of Optometry, Vision Science Program, University of CaliforniaBerkeley, CA 94720, USA

5. Department of Physiological Sciences, University of PisaVia S. Zeno 36, Pisa 56100, Italy

6. Scientific Institute Stella MarisCalambrone, Pisa 56018, Italy

Abstract

The simultaneity of signals from different senses—such as vision and audition—is a useful cue for determining whether those signals arose from one environmental source or from more than one. To understand better the sensory mechanisms for assessing simultaneity, we measured the discrimination thresholds for time intervals marked by auditory, visual or auditory–visual stimuli, as a function of the base interval. For all conditions, both unimodal and cross-modal, the thresholds followed a characteristic ‘dipper function’ in which the lowest thresholds occurred when discriminating against a non-zero interval. The base interval yielding the lowest threshold was roughly equal to the threshold for discriminating asynchronous from synchronous presentations. Those lowest thresholds occurred at approximately 5, 15 and 75 ms for auditory, visual and auditory–visual stimuli, respectively. Thus, the mechanisms mediating performance with cross-modal stimuli are considerably slower than the mechanisms mediating performance within a particular sense. We developed a simple model with temporal filters of different time constants and showed that the model produces discrimination functions similar to the ones we observed in humans. Both for processing within a single sense, and for processing across senses, temporal perception is affected by the properties of temporal filters, the outputs of which are used to estimate time offsets, correlations between signals, and more.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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