Recently, with the use of an amplitude-modulated binaural beat (AMBB), in which sound amplitude and interaural-phase difference (IPD) were modulated with a fixed mutual relationship (Dietz et al. 2013b), we demonstrated that the human auditory system uses interaural timing differences in the temporal fine structure of modulated sounds only during the rising portion of each modulation cycle. However, the degree to which peripheral or central mechanisms contribute to the observed strong dominance of the rising slope remains to be determined. Here, by recording responses of single neurons in the medial superior olive (MSO) of anesthetized gerbils and in the inferior colliculus (IC) of anesthetized guinea pigs to AMBBs, we report a correlation ...
The cochlea behaves like a bank of band-pass filters, segregating information into different frequen...
Sound-source localization in the horizontal plane relies on detecting small differences in the timin...
SummaryNeurons in the medial superior olive (MSO) enable sound localization by their remarkable sens...
Previous studies demonstrated that tuning of inferior colliculus (IC) neurons to interaural phase di...
The ability to locate the direction of a target sound in a background of competing sources is critic...
We assessed neural sensitivity to interaural time differences (ITDs) conveyed in the temporal fine s...
Binaural hearing, the ability to detect small differences in the timing and level of sounds at the t...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
Adaptation of sensory neurons to the prevailing environment is thought to underlie improved coding o...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
Accurate sound source localization of low-frequency sounds in the horizontal plane depends criticall...
Temporal differences between the two ears are critical for spatial hearing. They can be described al...
International audienceTo localize sounds in the environment, animals mostly rely on spectro-temporal...
Humans, and many other species, exploit small differences in the timing of sounds at the two ears (i...
The cochlea behaves like a bank of band-pass filters, segregating information into different frequen...
The cochlea behaves like a bank of band-pass filters, segregating information into different frequen...
Sound-source localization in the horizontal plane relies on detecting small differences in the timin...
SummaryNeurons in the medial superior olive (MSO) enable sound localization by their remarkable sens...
Previous studies demonstrated that tuning of inferior colliculus (IC) neurons to interaural phase di...
The ability to locate the direction of a target sound in a background of competing sources is critic...
We assessed neural sensitivity to interaural time differences (ITDs) conveyed in the temporal fine s...
Binaural hearing, the ability to detect small differences in the timing and level of sounds at the t...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
Adaptation of sensory neurons to the prevailing environment is thought to underlie improved coding o...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
Accurate sound source localization of low-frequency sounds in the horizontal plane depends criticall...
Temporal differences between the two ears are critical for spatial hearing. They can be described al...
International audienceTo localize sounds in the environment, animals mostly rely on spectro-temporal...
Humans, and many other species, exploit small differences in the timing of sounds at the two ears (i...
The cochlea behaves like a bank of band-pass filters, segregating information into different frequen...
The cochlea behaves like a bank of band-pass filters, segregating information into different frequen...
Sound-source localization in the horizontal plane relies on detecting small differences in the timin...
SummaryNeurons in the medial superior olive (MSO) enable sound localization by their remarkable sens...