Mammals are known to use Interaural Intensity Difference (IID) to determine azimuthal position of high frequency sounds. In the Lateral Superior Olive (LSO) neurons have firing behaviours which vary systematicaly with IID. Those neurons receive excitatory inputs from the ipsilateral ear and inhibitory inputs from the contralateral one. The IID sensitivity of a LSO neuron is thought to be due to delay differences between both ears, delays due to different synaptic delays and to intensity-dependent delays. In this paper we model the auditory pathway until the LSO. Inputs to LSO neurons are at first numerous and differ in their relative delays. Spike Timing-Dependent Plasticity is then used to prune those connections. We compare the pruned neu...
Low-frequency sound localization depends on the neural computation of interaural time differences (I...
Accurate sound source localization of low-frequency sounds in the horizontal plane depends criticall...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
Neurons in the lateral superior olive (LSO) respond selectively to interaural intensity differences ...
International audienceTo localize sounds in the environment, animals mostly rely on spectro-temporal...
The lateral superior olive (LSO) is believed to encode differences in sound level at the two ears, a...
The lateral superior olive (LSO) is one of the earliest sites in the auditory pathway that is involv...
Time differences between the two ears are an important cue for animals to azimuthally locate a sound...
The azimuthal location of a sound source imposes interaural intensity disparities (IIDs) on binaura...
SummaryNeurons in the medial superior olive (MSO) enable sound localization by their remarkable sens...
The brainstem's lateral superior olive (LSO) is thought to be crucial for localizing high-frequency ...
textabstractNeurons in the medial superior olive (MSO) enable sound localization by their remarkable...
The Lateral Superior Olive (LSO) is believed to be involved in encoding high frequency localization ...
Sound-source localization in the horizontal plane relies on detecting small differences in the timin...
Although the sensitivity to interaural intensity differences (IIDs) of neurons receiving excitatory ...
Low-frequency sound localization depends on the neural computation of interaural time differences (I...
Accurate sound source localization of low-frequency sounds in the horizontal plane depends criticall...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...
Neurons in the lateral superior olive (LSO) respond selectively to interaural intensity differences ...
International audienceTo localize sounds in the environment, animals mostly rely on spectro-temporal...
The lateral superior olive (LSO) is believed to encode differences in sound level at the two ears, a...
The lateral superior olive (LSO) is one of the earliest sites in the auditory pathway that is involv...
Time differences between the two ears are an important cue for animals to azimuthally locate a sound...
The azimuthal location of a sound source imposes interaural intensity disparities (IIDs) on binaura...
SummaryNeurons in the medial superior olive (MSO) enable sound localization by their remarkable sens...
The brainstem's lateral superior olive (LSO) is thought to be crucial for localizing high-frequency ...
textabstractNeurons in the medial superior olive (MSO) enable sound localization by their remarkable...
The Lateral Superior Olive (LSO) is believed to be involved in encoding high frequency localization ...
Sound-source localization in the horizontal plane relies on detecting small differences in the timin...
Although the sensitivity to interaural intensity differences (IIDs) of neurons receiving excitatory ...
Low-frequency sound localization depends on the neural computation of interaural time differences (I...
Accurate sound source localization of low-frequency sounds in the horizontal plane depends criticall...
The largest nucleus of the human superior olivary complex is the medial superior olive (MSO), which ...