I investigated the neural algorithms by which neurons gain selectivity for interaural level difference in the brainstem of the barn owl (Tyto alba). Differences in the timing and in the level of sounds at the ears are used by this owl to encode, respectively, azimuthal and vertical position of sound sources in space. These two cues are processed in two parallel neural pathways. Below the level of the inferior colliculus, all neurons in the pathway that processes level differences show responses to this cue that are monotonic, and thus not selective for a particular level difference. Only in the inferior colliculus, which contains a map of auditory space, are neurons sharply tuned to specific interaural level differences. How are these respo...
This paper investigates the role of the central nucleus of the barn owl's inferior colliculus in det...
The barn owl (Tyto alba) is a well-known model system for auditory processing and sound localization...
Space-specific neurons in the barn owl's auditory space map gain spatial selectivity through tuning ...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
Nervous systems process information about the environment in order to generate adaptive behavior. Se...
The nucleus ventralis lemnisci lateralis pars posterior (VLVp) is the first binaural station in the ...
This paper discusses how the barn owl’s brain stem auditory pathway is divided into two physiologica...
This paper discusses how the barn owl’s brain stem auditory pathway is divided into two physiologica...
The barn owl uses binaural phase and intensity differences for sound localization. These two cues al...
The barn owl uses the interaural difference in the timing of sounds to determine the azimuth of the ...
The barn owl uses the interaural difference in the timing of sounds to determine the azimuth of the ...
This paper investigates the role of the central nucleus of the barn owl's inferior colliculus in det...
A multiplicative combination of tuning to interaural time difference (ITD) and interaural level diff...
This paper investigates the role of the central nucleus of the barn owl's inferior colliculus in det...
The barn owl (Tyto alba) is a well-known model system for auditory processing and sound localization...
Space-specific neurons in the barn owl's auditory space map gain spatial selectivity through tuning ...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
Nervous systems process information about the environment in order to generate adaptive behavior. Se...
The nucleus ventralis lemnisci lateralis pars posterior (VLVp) is the first binaural station in the ...
This paper discusses how the barn owl’s brain stem auditory pathway is divided into two physiologica...
This paper discusses how the barn owl’s brain stem auditory pathway is divided into two physiologica...
The barn owl uses binaural phase and intensity differences for sound localization. These two cues al...
The barn owl uses the interaural difference in the timing of sounds to determine the azimuth of the ...
The barn owl uses the interaural difference in the timing of sounds to determine the azimuth of the ...
This paper investigates the role of the central nucleus of the barn owl's inferior colliculus in det...
A multiplicative combination of tuning to interaural time difference (ITD) and interaural level diff...
This paper investigates the role of the central nucleus of the barn owl's inferior colliculus in det...
The barn owl (Tyto alba) is a well-known model system for auditory processing and sound localization...
Space-specific neurons in the barn owl's auditory space map gain spatial selectivity through tuning ...