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Models of plasticity in spatial auditory processing
1Departments of Cognitive and Neural Systems and Biomedical Engineering, Boston University Hearing Research Center, 677 Beacon Street, Boston, MA 02215, USA. shinn@cns.bu.edu
Audiology & Neuro-Otology
|November 6, 2001
Summary
This study explores plasticity in spatial auditory processing, reviewing models that explain how experiences shape sound perception and auditory system calibration for accurate hearing.
Area of Science:
- Auditory Neuroscience
- Psychoacoustics
- Computational Auditory Neuroscience
Background:
- Extensive research exists on how the auditory system processes basic spatial cues.
- Limited understanding remains regarding the integration of these cues into spatial percepts.
- The mechanisms of auditory system adaptation and calibration for spatial hearing are not fully elucidated.
Purpose of the Study:
- To review evidence for plasticity in the spatial auditory pathway.
- To explore statistical and system-level models of spatial auditory processing.
- To elucidate how auditory experiences influence spatial hearing computations.
Main Methods:
- Review of psychophysical and physiological studies on auditory plasticity.
- Examination of a statistical, decision-theory model for short-term plasticity.
- Analysis of a system-level model for the spatial auditory pathway.
Main Results:
- Evidence supports plasticity in the spatial auditory pathway.
- Models reviewed offer insights into short-term and long-term adaptive mechanisms.
- These models may explain how experiences influence spatial hearing.
Conclusions:
- Spatial auditory processing exhibits significant plasticity.
- Statistical and system-level models provide frameworks for understanding auditory adaptation.
- Further research using these models can clarify the influence of experience on spatial hearing.