To localize low-frequency sound sources in azimuth, the binaural system compares the timing of sound waves at the two ears with microsecond precision. A similarly high precision is also seen in the binaural processing of the envelopes of high-frequency complex sounds. Both for low- and high-frequency sounds, interaural time difference (ITD) acuity is to a large extent independent of sound level. The mechanisms underlying this level-invariant extraction of ITDs by the binaural system are, however, only poorly understood. We use high-frequency pip trains with asymmetric and dichotic pip envelopes in a combined psychophysical, electrophysiological, and modeling approach. Although the dichotic envelopes cannot be physically matched in terms of ...
The present study investigated interaural time discrimination for binaurally mismatched carrier freq...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
Humans, and many other species, exploit small differences in the timing of sounds at the two ears (i...
To localize low-frequency sound sources in azimuth, the binaural system compares the timing of sound...
To localize low-frequency sound sources in azimuth, the binaural system compares the timing of sound...
To localize low-frequency sound sources in azimuth, the binaural system compares the timing of sound...
Humans perceive their acoustic environment by means of two ears located at opposite positions on the...
We assessed neural sensitivity to interaural time differences (ITDs) conveyed in the temporal fine s...
We assessed neural sensitivity to interaural time differences (ITDs) conveyed in the temporal fine s...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
The ability to localize sound sources relies on differences between the signals at the two ears. The...
Thesis (Ph.D.)--University of Washington, 2013Interaural level and time differences (ILD and ITD) ar...
The present study investigated interaural time discrimination for binaurally mismatched carrier freq...
The present study investigated interaural time discrimination for binaurally mismatched carrier freq...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
Humans, and many other species, exploit small differences in the timing of sounds at the two ears (i...
To localize low-frequency sound sources in azimuth, the binaural system compares the timing of sound...
To localize low-frequency sound sources in azimuth, the binaural system compares the timing of sound...
To localize low-frequency sound sources in azimuth, the binaural system compares the timing of sound...
Humans perceive their acoustic environment by means of two ears located at opposite positions on the...
We assessed neural sensitivity to interaural time differences (ITDs) conveyed in the temporal fine s...
We assessed neural sensitivity to interaural time differences (ITDs) conveyed in the temporal fine s...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
The ability to localize sound sources relies on differences between the signals at the two ears. The...
Thesis (Ph.D.)--University of Washington, 2013Interaural level and time differences (ILD and ITD) ar...
The present study investigated interaural time discrimination for binaurally mismatched carrier freq...
The present study investigated interaural time discrimination for binaurally mismatched carrier freq...
The mammalian auditory system is the temporally most precise sensory modality: To localize low-frequ...
Humans, and many other species, exploit small differences in the timing of sounds at the two ears (i...