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Adapting to remapped auditory localization cues: a decision-theory model
1Department of Cognitive and Neural Systems, Boston University, MA 02215, USA. shinn@cns.bu.edu
Perception & Psychophysics
|March 7, 2000
Summary
This study models how auditory localization adapts to new cues, suggesting past experience influences perception and training changes responses over time. The model quantifies sensitivity, bias, and resolution in spatial auditory adaptation experiments.
Area of Science:
- Auditory perception
- Psychoacoustics
- Computational neuroscience
Background:
- Auditory localization relies on interpreting complex spatial cues.
- Adaptation to altered sensory information is a key aspect of perception.
- Previous models focused on psychophysical performance but lacked explicit consideration of experience-driven changes.
Purpose of the Study:
- To develop a computational model of adaptation to remapped auditory localization cues.
- To explicitly incorporate the influence of past experience on auditory perception.
- To quantify the evolution of subjects' responses during spatial auditory adaptation training.
Main Methods:
- Extension of existing decision-theory models of psychophysical performance.
- Incorporation of assumptions regarding the effect of past experience on perception.
- Quantitative prediction of sensitivity, bias, and resolution in adaptation experiments.
Main Results:
- The model predicts how training alters subjects' responses over time in spatial auditory adaptation.
- It suggests adaptation involves reinterpreting a continuous decision variable, not learning discrete stimulus-response pairs.
- Model predictions align with experimental findings showing inability to adapt to nonlinear cue rearrangements.
Conclusions:
- Past experience significantly impacts auditory localization perception and adaptation.
- Adaptation to remapped auditory cues involves a continuous internal decision variable shift.
- The model provides a quantitative framework for understanding spatial auditory adaptation and its limitations.