Detection of interaural time differences underlies azimuthal sound localization in the barn owl Tyto alba. Axons of the cochlear nucleus magnocellularis, and their targets in the binaural nucleus laminaris, form the circuit responsible for encoding these interaural time differences. The nucleus laminaris receives bilateral inputs from the cochlear nucleus magnocellularis such that axons from the ipsilateral cochlear nucleus enter the nucleus laminaris dorsally, while contralateral axons enter from the ventral side. This interdigitating projection to the nucleus laminaris is tonotopic, and the afferents are both sharply tuned and matched in frequency to the neighboring afferents. Recordings of phase-locked spikes in the afferents show an ord...
Space-specific neurons, found in the barn owl's inferior colliculus, respond selectively to a narrow...
The interaural time difference (ITD) is one of two primary binaural cues used to compute the positio...
Nervous systems process information about the environment in order to generate adaptive behavior. Se...
Interaural time difference is an important cue for sound localization. In the barn owl (Tyto alba) n...
The interaural time difference (ITD) is the primary auditory cue used by the barn owl for localizati...
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...
This paper investigates the role of the central nucleus of the barn owl's inferior colliculus in det...
Neurons of the barn owl's (Tyto alba) nucleus laminaris, the first site of binaural convergence, res...
Both the mammalian and avian auditory systems localize sound sources by computing the interaural tim...
The auditory system uses delay lines and coincidence detection to measure the interaural time differ...
The auditory system uses delay lines and coincidence detec-tion to measure the interaural time diffe...
Interaural time and intensity differences (ITD and IID) are processed independently in the owl’s aud...
We demonstrated that ongoing time disparity (OTD) was a sufficient cue for the azimuthal component o...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
Space-specific neurons, found in the barn owl's inferior colliculus, respond selectively to a narrow...
The interaural time difference (ITD) is one of two primary binaural cues used to compute the positio...
Nervous systems process information about the environment in order to generate adaptive behavior. Se...
Interaural time difference is an important cue for sound localization. In the barn owl (Tyto alba) n...
The interaural time difference (ITD) is the primary auditory cue used by the barn owl for localizati...
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...
This paper investigates the role of the central nucleus of the barn owl's inferior colliculus in det...
Neurons of the barn owl's (Tyto alba) nucleus laminaris, the first site of binaural convergence, res...
Both the mammalian and avian auditory systems localize sound sources by computing the interaural tim...
The auditory system uses delay lines and coincidence detection to measure the interaural time differ...
The auditory system uses delay lines and coincidence detec-tion to measure the interaural time diffe...
Interaural time and intensity differences (ITD and IID) are processed independently in the owl’s aud...
We demonstrated that ongoing time disparity (OTD) was a sufficient cue for the azimuthal component o...
I investigated the neural algorithms by which neurons gain selectivity for interaural level differen...
Space-specific neurons, found in the barn owl's inferior colliculus, respond selectively to a narrow...
The interaural time difference (ITD) is one of two primary binaural cues used to compute the positio...
Nervous systems process information about the environment in order to generate adaptive behavior. Se...