The auditory system computes sound location by detecting submillisecond time differences in the arrival of sound at the two ears. Studies by van der Heijden et al. (2013) and Roberts et al. (2013) in this issue of Neuron shed light on how this is accomplished by the interaction of excitatory and inhibitory synapses
Behavioral, anatomical, and physiological approaches can be integrated in the study of sound localiz...
The barn owl (Tyto alba) uses interaural time difference (ITD) cues to localize sounds in the horizo...
The ability to localize sound sources relies on differences between the signals at the two ears. The...
The auditory system computes sound location by detecting submillisecond time differences in the arri...
Mammals and birds appear to encode timing differences between the ears, a major cue for auditory loc...
AbstractMammals and birds appear to encode timing differences between the ears, a major cue for audi...
Both the mammalian and avian auditory systems localize sound sources by computing the interaural tim...
© 2016 the authors. Accurate localization of sound sources is essential for survival behavior in man...
The barn owl uses the interaural difference in the timing of sounds to determine the azimuth of the ...
This paper discusses how the barn owl’s brain stem auditory pathway is divided into two physiologica...
A wide variety of neurons encode temporal information via phase-locked spikes. In the avian auditory...
Interaural time difference (ITD), or the difference in timing of a sound wave arriving at the two ea...
Human psychoacoustical studies have been the main sources of information from which the brain mechan...
The barn owl's auditory system computes interaural differences in time and amplitude and derive...
The barn owl (Tyto alba) is a well-known model system for auditory processing and sound localization...
Behavioral, anatomical, and physiological approaches can be integrated in the study of sound localiz...
The barn owl (Tyto alba) uses interaural time difference (ITD) cues to localize sounds in the horizo...
The ability to localize sound sources relies on differences between the signals at the two ears. The...
The auditory system computes sound location by detecting submillisecond time differences in the arri...
Mammals and birds appear to encode timing differences between the ears, a major cue for auditory loc...
AbstractMammals and birds appear to encode timing differences between the ears, a major cue for audi...
Both the mammalian and avian auditory systems localize sound sources by computing the interaural tim...
© 2016 the authors. Accurate localization of sound sources is essential for survival behavior in man...
The barn owl uses the interaural difference in the timing of sounds to determine the azimuth of the ...
This paper discusses how the barn owl’s brain stem auditory pathway is divided into two physiologica...
A wide variety of neurons encode temporal information via phase-locked spikes. In the avian auditory...
Interaural time difference (ITD), or the difference in timing of a sound wave arriving at the two ea...
Human psychoacoustical studies have been the main sources of information from which the brain mechan...
The barn owl's auditory system computes interaural differences in time and amplitude and derive...
The barn owl (Tyto alba) is a well-known model system for auditory processing and sound localization...
Behavioral, anatomical, and physiological approaches can be integrated in the study of sound localiz...
The barn owl (Tyto alba) uses interaural time difference (ITD) cues to localize sounds in the horizo...
The ability to localize sound sources relies on differences between the signals at the two ears. The...