Escabí MA, Nassiri R, Miller LM, Schreiner CE, Read HL. (2005). The contribution of spike threshold to acoustic feature selectivity, spike information content, and information throughput. The Journal of neuroscience : the official journal of the Society for Neuroscience. 25 [PubMed]

See more from authors: Escabí MA · Nassiri R · Miller LM · Schreiner CE · Read HL

References and models cited by this paper

BARLOW HB. (1953). Summation and inhibition in the frog's retina. The Journal of physiology. 119 [PubMed]

BARLOW HB. (1961). Possible principles underlying the transformations of sensory messages Sensory Communication.

Bar-Yosef O, Rotman Y, Nelken I. (2002). Responses of neurons in cat primary auditory cortex to bird chirps: effects of temporal and spectral context. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Borst A, Theunissen FE. (1999). Information theory and neural coding. Nature neuroscience. 2 [PubMed]

Brenowitz EA, Margoliash D, Nordeen KW. (1997). An introduction to birdsong and the avian song system. Journal of neurobiology. 33 [PubMed]

Bringuier V, Chavane F, Glaeser L, Frégnac Y. (1999). Horizontal propagation of visual activity in the synaptic integration field of area 17 neurons. Science (New York, N.Y.). 283 [PubMed]

Calhoun BM, Schreiner CE. (1998). Spectral envelope coding in cat primary auditory cortex: linear and non-linear effects of stimulus characteristics. The European journal of neuroscience. 10 [PubMed]

Casseday JH, Ehrlich D, Covey E. (1994). Neural tuning for sound duration: role of inhibitory mechanisms in the inferior colliculus. Science (New York, N.Y.). 264 [PubMed]

DeAngelis GC, Ohzawa I, Freeman RD. (1993). Spatiotemporal organization of simple-cell receptive fields in the cat's striate cortex. II. Linearity of temporal and spatial summation. Journal of neurophysiology. 69 [PubMed]

DeWeese MR, Wehr M, Zador AM. (2003). Binary spiking in auditory cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. 23 [PubMed]

Doupe AJ. (1997). Song- and order-selective neurons in the songbird anterior forebrain and their emergence during vocal development. The Journal of neuroscience : the official journal of the Society for Neuroscience. 17 [PubMed]

Escabi MA, Schreiner CE. (2002). Nonlinear spectrotemporal sound analysis by neurons in the auditory midbrain. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Escabí MA, Miller LM, Read HL, Schreiner CE. (2003). Naturalistic auditory contrast improves spectrotemporal coding in the cat inferior colliculus. The Journal of neuroscience : the official journal of the Society for Neuroscience. 23 [PubMed]

Fujita I, Tanaka K, Ito M, Cheng K. (1992). Columns for visual features of objects in monkey inferotemporal cortex. Nature. 360 [PubMed]

Gross CG, Sergent J. (1992). Face recognition. Current opinion in neurobiology. 2 [PubMed]

Hermes DJ, Aertsen AM, Johannesma PI, Eggermont JJ. (1981). Spectro-temporal characteristics of single units in the auditory midbrain of the lightly anaesthetised grass frog (Rana temporaria L) investigated with noise stimuli. Hearing research. 5 [PubMed]

Hsu A, Woolley SM, Fremouw TE, Theunissen FE. (2004). Modulation power and phase spectrum of natural sounds enhance neural encoding performed by single auditory neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Keat J, Reinagel P, Reid RC, Meister M. (2001). Predicting every spike: a model for the responses of visual neurons. Neuron. 30 [PubMed]

Keller CH, Takahashi TT. (2000). Representation of temporal features of complex sounds by the discharge patterns of neurons in the owl's inferior colliculus. Journal of neurophysiology. 84 [PubMed]

Kempter R, Gerstner W, van Hemmen JL. (1998). How the threshold of a neuron determines its capacity for coincidence detection. Bio Systems. 48 [PubMed]

Klein DJ, Depireux DA, Simon JZ, Shamma SA. (2000). Robust spectrotemporal reverse correlation for the auditory system: optimizing stimulus design. Journal of computational neuroscience. 9 [PubMed]

Kowalski N, Depireux DA, Shamma SA. (1996). Analysis of dynamic spectra in ferret primary auditory cortex. II. Prediction of unit responses to arbitrary dynamic spectra. Journal of neurophysiology. 76 [PubMed]

Kuwada S, Batra R, Stanford TR. (1989). Monaural and binaural response properties of neurons in the inferior colliculus of the rabbit: effects of sodium pentobarbital. Journal of neurophysiology. 61 [PubMed]

Kuwada S et al. (1997). Intracellular recordings in response to monaural and binaural stimulation of neurons in the inferior colliculus of the cat. The Journal of neuroscience : the official journal of the Society for Neuroscience. 17 [PubMed]

Machens CK, Wehr MS, Zador AM. (2004). Linearity of cortical receptive fields measured with natural sounds. The Journal of neuroscience : the official journal of the Society for Neuroscience. 24 [PubMed]

Martin KA. (2004). A brief history of the "feature detector". Cereb Cortex. 4

Nelken I, Kim PJ, Young ED. (1997). Linear and nonlinear spectral integration in type IV neurons of the dorsal cochlear nucleus. II. Predicting responses with the use of nonlinear models. Journal of neurophysiology. 78 [PubMed]

Oliver DL, Morest DK. (1984). The central nucleus of the inferior colliculus in the cat. The Journal of comparative neurology. 222 [PubMed]

Priebe NJ, Mechler F, Carandini M, Ferster D. (2004). The contribution of spike threshold to the dichotomy of cortical simple and complex cells. Nature neuroscience. 7 [PubMed]

Qiu A, Schreiner CE, Escabí MA. (2003). Gabor analysis of auditory midbrain receptive fields: spectro-temporal and binaural composition. Journal of neurophysiology. 90 [PubMed]

Ramachandran R, Davis KA, May BJ. (1999). Single-unit responses in the inferior colliculus of decerebrate cats. I. Classification based on frequency response maps. Journal of neurophysiology. 82 [PubMed]

Reid RC, Soodak RE, Shapley RM. (1991). Directional selectivity and spatiotemporal structure of receptive fields of simple cells in cat striate cortex. Journal of neurophysiology. 66 [PubMed]

Reyes A. (2001). Influence of dendritic conductances on the input-output properties of neurons. Annual review of neuroscience. 24 [PubMed]

Sahani M, Linden JF. (2003). How linear are auditory cortical responses? Advances in neural information processing systems.

Schnupp JW, Mrsic-Flogel TD, King AJ. (2001). Linear processing of spatial cues in primary auditory cortex. Nature. 414 [PubMed]

Sivaramakrishnan S, Oliver DL. (2001). Distinct K currents result in physiologically distinct cell types in the inferior colliculus of the rat. The Journal of neuroscience : the official journal of the Society for Neuroscience. 21 [PubMed]

Suga N, Jen PH. (1976). Disproportionate tonotopic representation for processing CF-FM sonar signals in the mustache bat auditory cortex. Science (New York, N.Y.). 194 [PubMed]

Suga N, O'Neill WE, Manabe T. (1978). Cortical neurons sensitive to combinations of information-bearing elements of biosonar signals in the mustache bat. Science (New York, N.Y.). 200 [PubMed]

Suga N, Simmons JA, Howell DJ. (2003). Information content of bat sonar echoes. Am Sci. 63

Svirskis G, Kotak V, Sanes DH, Rinzel J. (2002). Enhancement of signal-to-noise ratio and phase locking for small inputs by a low-threshold outward current in auditory neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Swadlow HA, Gusev AG. (2002). Receptive-field construction in cortical inhibitory interneurons. Nature neuroscience. 5 [PubMed]

Theunissen FE, Sen K, Doupe AJ. (2000). Spectral-temporal receptive fields of nonlinear auditory neurons obtained using natural sounds. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Versnel H, Shamma SA. (1998). Spectral-ripple representation of steady-state vowels in primary auditory cortex. The Journal of the Acoustical Society of America. 103 [PubMed]

Yu JJ, Young ED. (2000). Linear and nonlinear pathways of spectral information transmission in the cochlear nucleus. Proceedings of the National Academy of Sciences of the United States of America. 97 [PubMed]

de Boer R, Kuyper P. (1968). Triggered correlation. IEEE transactions on bio-medical engineering. 15 [PubMed]

de Ruyter van Steveninck RR, Lewen GD, Strong SP, Koberle R, Bialek W. (1997). Reproducibility and variability in neural spike trains. Science (New York, N.Y.). 275 [PubMed]

de Ruyter van Steveninck RR, Strong SP, Koberle R, Bialek W. (1998). On the application of information theory to neural spike trains. Pac Symp Biocomput. 21

deCharms RC, Blake DT, Merzenich MM. (1998). Optimizing sound features for cortical neurons. Science (New York, N.Y.). 280 [PubMed]

References and models that cite this paper

Platkiewicz J, Brette R. (2010). A threshold equation for action potential initiation. PLoS computational biology. 6 [PubMed]

This website requires cookies and limited processing of your personal data in order to function. By continuing to browse or otherwise use this site, you are agreeing to this use. See our Privacy policy and how to cite and terms of use.