In this study, we investigate the ability of the mammalian auditory pathway to adapt its strategy for temporal processing under natural stimulus conditions. We derive temporal receptive fields from the responses of neurons in the inferior colliculus to vocalization stimuli with and without additional ambient noise. We find that the onset of ambient noise evokes a change in receptive field dynamics that corresponds to a change from bandpass to lowpass temporal filtering. We show that these changes occur within a few hundred milliseconds of the onset of the noise and are evident across a range of overall stimulus intensities. Using a simple model, we illustrate how these changes in temporal processing exploit differences in the statistical pr...
During critical periods, neural circuits develop to form receptive fields that adapt to the sensory ...
<div><p>Identifying behaviorally relevant sounds in the presence of background noise is one of the m...
Although understanding the processing of natural sounds is an important goal in auditory neuroscienc...
In this study, we investigate the ability of the mammalian auditory pathway to adapt its strategy fo...
Neurons in the sensory systems are tuned to diverse but specific features of the sensory environment...
Perception of vocalizations and other behaviorally relevant sounds requires integrating acoustic inf...
Spectro-temporal receptive fields (STRFs) have been widely used as linear approximations to the sign...
A central hypothesis in sensory coding suggests that auditory neurons are optimized to represent sou...
The stimulus-response function of many visual and auditory neurons has been described by a spatial-t...
The human auditory system displays a robust capacity to adapt to sudden changes in background noise,...
SummarySongbird auditory neurons must encode the dynamics of natural sounds at many volumes. We inve...
Physiological studies in vocal animals such as songbirds indicate that vocalizations drive auditory ...
Sensory neurons encode environmental stimuli by transmitting trains of nearly identical all-or-none ...
Sensation in natural environments requires the analysis of time-varying signals. While previous work...
The mammalian brain is able to recognize natural sounds in the presence of acoustic uncertainties su...
During critical periods, neural circuits develop to form receptive fields that adapt to the sensory ...
<div><p>Identifying behaviorally relevant sounds in the presence of background noise is one of the m...
Although understanding the processing of natural sounds is an important goal in auditory neuroscienc...
In this study, we investigate the ability of the mammalian auditory pathway to adapt its strategy fo...
Neurons in the sensory systems are tuned to diverse but specific features of the sensory environment...
Perception of vocalizations and other behaviorally relevant sounds requires integrating acoustic inf...
Spectro-temporal receptive fields (STRFs) have been widely used as linear approximations to the sign...
A central hypothesis in sensory coding suggests that auditory neurons are optimized to represent sou...
The stimulus-response function of many visual and auditory neurons has been described by a spatial-t...
The human auditory system displays a robust capacity to adapt to sudden changes in background noise,...
SummarySongbird auditory neurons must encode the dynamics of natural sounds at many volumes. We inve...
Physiological studies in vocal animals such as songbirds indicate that vocalizations drive auditory ...
Sensory neurons encode environmental stimuli by transmitting trains of nearly identical all-or-none ...
Sensation in natural environments requires the analysis of time-varying signals. While previous work...
The mammalian brain is able to recognize natural sounds in the presence of acoustic uncertainties su...
During critical periods, neural circuits develop to form receptive fields that adapt to the sensory ...
<div><p>Identifying behaviorally relevant sounds in the presence of background noise is one of the m...
Although understanding the processing of natural sounds is an important goal in auditory neuroscienc...