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Characteristic Delay and Characteristic Phase in Broadband Interaural Time Difference Tuning Curves Arising by Across-Frequency Integration

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The article was published on 2015-01-01 and is currently open access. It has received 0 citations till now. The article focuses on the topics: Interaural time difference & Bandwidth (computing).

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Wavelets and signal processing

TL;DR: A simple, nonrigorous, synthetic view of wavelet theory is presented for both review and tutorial purposes, which includes nonstationary signal analysis, scale versus frequency,Wavelet analysis and synthesis, scalograms, wavelet frames and orthonormal bases, the discrete-time case, and applications of wavelets in signal processing.
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Response of binaural neurons of dog superior olivary complex to dichotic tonal stimuli: some physiological mechanisms of sound localization.

TL;DR: How the introduction of these two cues affects the discharge of individual binaural neurons of the superior olivary complex is considered.
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A neuronal learning rule for sub-millisecond temporal coding

TL;DR: A modelling study based on computer simulations of a neuron in the laminar nucleus of the barn owl shows that the necessary degree of coherence in the signal arrival times can be attained during ontogenetic development by virtue of an unsupervised hebbian learning rule.
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A circuit for detection of interaural time differences in the brain stem of the barn owl

TL;DR: Findings indicate that the magnocellular afferents work as delay lines, and the laminaris neurons work as co- incidence detectors, which suggest that interaural time differences and their phase equivalents are mapped in each frequency band along the dorsoventral axis of the nucleus laminari.