[HTML][HTML] Asymmetric excitatory synaptic dynamics underlie interaural time difference processing in the auditory system

PE Jercog, G Svirskis, VC Kotak, DH Sanes… - PLoS biology, 2010 - journals.plos.org
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

[PDF][PDF] Asymmetric Excitatory Synaptic Dynamics Underlie Interaural Time Difference Processing in the

PE Jercog, G Svirskis, VC Kotak, DH Sanes, J Rinzel - 2010 - cyberleninka.org
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

[PDF][PDF] Asymmetric Excitatory Synaptic Dynamics Underlie Interaural Time Difference Processing in the

PE Jercog, G Svirskis, VC Kotak, DH Sanes, J Rinzel - 2010 - researchgate.net
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

Asymmetric excitatory synaptic dynamics underlie interaural time difference processing in the auditory system.

PE Jercog, G Svirskis, VC Kotak, DH Sanes, J Rinzel - 2010 - agris.fao.org
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

Asymmetric excitatory synaptic dynamics underlie interaural time difference processing in the auditory system

PE Jercog, G Svirskis, VC Kotak, DH Sanes… - PLoS …, 2010 - pubmed.ncbi.nlm.nih.gov
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

Asymmetric Excitatory Synaptic Dynamics Underlie Interaural Time Difference Processing in the Auditory System.

PE Jercog, G Svirskis, VC Kotak, DH Sanes… - PLoS …, 2010 - search.ebscohost.com
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

[PDF][PDF] Asymmetric Excitatory Synaptic Dynamics Underlie Interaural Time Difference Processing in the

PE Jercog, G Svirskis, VC Kotak, DH Sanes, J Rinzel - 2010 - pdfs.semanticscholar.org
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

[HTML][HTML] Asymmetric Excitatory Synaptic Dynamics Underlie Interaural Time Difference Processing in the Auditory System

PE Jercog, G Svirskis, VC Kotak, DH Sanes… - PLoS Biology, 2010 - ncbi.nlm.nih.gov
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

Asymmetric excitatory synaptic dynamics underlie interaural time difference processing in the auditory system

PE Jercog, G Svirskis, V Kotak, DH Sanes… - PLoS Biology. San …, 2010 - lsmu.lt
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …

Asymmetric excitatory synaptic dynamics underlie interaural time difference processing in the auditory system.

PE Jercog, G Svirskis, VC Kotak, DH Sanes, J Rinzel - Plos Biology, 2010 - europepmc.org
Low-frequency sound localization depends on the neural computation of interaural time
differences (ITD) and relies on neurons in the auditory brain stem that integrate synaptic …