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Smith DJ, Rubel EW (1979) Organization and development of brain stem auditory nuclei of the chicken: dendritic gradients in nucleus laminaris. J Comp Neurol 186:213-39 [PubMed]

References and models cited by this paper

References and models that cite this paper

Dasika VK, White JA, Colburn HS (2007) Simple models show the general advantages of dendrites in coincidence detection. J Neurophysiol 97:3449-59 [Journal] [PubMed]
Goldwyn JH, Mc Laughlin M, Verschooten E, Joris PX, Rinzel J (2014) A model of the medial superior olive explains spatiotemporal features of local field potentials. J Neurosci 34:11705-22 [Journal] [PubMed]
   A model of local field potentials generated by medial superior olive neurons (Goldwyn et al 2014) [Model]
Grau-Serrat V, Carr CE, Simon JZ (2003) Modeling coincidence detection in nucleus laminaris. Biol Cybern 89:388-96 [Journal] [PubMed]
Remme MWH, Rinzel J, Schreiber S (2018) Function and energy consumption constrain neuronal biophysics in a canonical computation: Coincidence detection. PLoS Comput Biol 14:e1006612 [Journal] [PubMed]
   Function and energy constrain neuronal biophysics in coincidence detection (Remme et al 2018) [Model]
Simon JZ, Carr CE, Shamma SA (1999) A Dendritic Model of Coincidence Detection in the Avian Brainstem. Neurocomputing 26-27:263-9 [Journal]
   Coincidence detection in avian brainstem (Simon et al 1999) [Model]
Zhou Y, Carney LH, Colburn HS (2005) A model for interaural time difference sensitivity in the medial superior olive: interaction of excitatory and inhibitory synaptic inputs, channel dynamics, and cellular morphology. J Neurosci 25:3046-58 [Journal] [PubMed]
   A model for interaural time difference sensitivity in the medial superior olive (Zhou et al 2005) [Model]
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