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Lukasiewicz P, Werblin F (1988) A slowly inactivating potassium current truncates spike activity in ganglion cells of the tiger salamander retina. J Neurosci 8:4470-81 [PubMed]

References and models cited by this paper

References and models that cite this paper

Bieda MC, Copenhagen DR (2000) Inhibition is not required for the production of transient spiking responses from retinal ganglion cells. Vis Neurosci 17:243-54 [PubMed]

Fohlmeister JF, Miller RF (1997) Mechanisms by which cell geometry controls repetitive impulse firing in retinal ganglion cells. J Neurophysiol 78:1948-64 [Journal] [PubMed]

Fohlmeister JF, Miller RF (1997) Impulse encoding mechanisms of ganglion cells in the tiger salamander retina. J Neurophysiol 78:1935-47 [Journal] [PubMed]

   Salamander retinal ganglion cell: ion channels (Fohlmeister, Miller 1997) [Model]

Henderson D, Miller RF (2003) Evidence for low-voltage-activated (LVA) calcium currents in the dendrites of tiger salamander retinal ganglion cells. Vis Neurosci 20:141-52 [PubMed]

Henderson D, Miller RF (2007) Low-voltage activated calcium currents in ganglion cells of the tiger salamander retina: experiment and simulation. Vis Neurosci 24:37-51 [Journal] [PubMed]

Sheasby BW, Fohlmeister JF (1999) Impulse encoding across the dendritic morphologies of retinal ganglion cells. J Neurophysiol 81:1685-98 [Journal] [PubMed]

   Salamander retinal ganglian cells: morphology influences firing (Sheasby, Fohlmeister 1999) [Model]

Velte TJ, Miller RF (1996) Computer simulations of voltage clamping retinal ganglion cells through whole-cell electrodes in the soma. J Neurophysiol 75:2129-43 [Journal] [PubMed]

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