PubMed · 15904267
Spiking neurons learning phase delays: how mammals may develop auditory time-difference sensitivity.
Abstract
Time differences between the two ears are an important cue for animals to azimuthally locate a sound source. The first binaural brainstem nucleus, in mammals the medial superior olive, is generally believed to perform the necessary computations. Its cells are sensitive to variations of interaural time differences of about 10 micros. The classical explanation of such a neuronal time-difference tuning is based on the physical concept of delay lines. Recent data, however, are inconsistent with a temporal delay and rather favor a phase delay. By means of a biophysical model we show how spike-timing-dependent synaptic learning explains precise interplay of excitation and inhibition and, hence, accounts for a physical realization of a phase delay.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Christian Leibold, J Leo van Hemmen. 2005-04-26. Spiking neurons learning phase delays: how mammals may develop auditory time-difference sensitivity.. https://doi.org/10.1103/physrevlett.94.168102
Cite the original work for its findings. Save a collection to share your selection of sources.