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Proceedings of the National Academy of Sciences of the United States of America|May 2, 2003
A unifying basis of auditory thresholds based on temporal summationPeter Heil, Heinrich NeubauerBrain Research|October 16, 2007
A physiological model for the stimulus dependence of first-spike latency of auditory-nerve fibersHeinrich Neubauer, Peter HeilFrontiers in Synaptic Neuroscience|March 23, 2011
Summing Across Different Active Zones can Explain the Quasi-Linear Ca-Dependencies of Exocytosis by Receptor CellsPeter Heil, Heinrich NeubauerJournal of the Association for Research in Otolaryngology : JARO|January 28, 2005
Towards a unifying basis of auditory thresholds: the effects of hearing loss on temporal integration reconsideredHeinrich Neubauer, Peter HeilHearing Research|July 19, 2017
A probabilistic Poisson-based model accounts for an extensive set of absolute auditory threshold measurementsPeter Heil, Artur Matysiak, Heinrich NeubauerJournal of Neurophysiology|April 10, 2009
Spontaneous activity of auditory nerve fibers in the barn owl (Tyto alba): analyses of interspike interval distributionsHeinrich Neubauer, Christine Köppl, Peter HeilThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|October 28, 2011
An improved model for the rate-level functions of auditory-nerve fibersPeter Heil, Heinrich Neubauer, Dexter R F IrvineJournal of the Association for Research in Otolaryngology : JARO|July 11, 2006
Comparison of absolute thresholds derived from an adaptive forced-choice procedure and from reaction probabilities and reaction times in a simple reaction time paradigmPeter Heil, Heinrich Neubauer, Andreas Tiefenau, et al.Brain Research|October 10, 2006
Correcting for false alarms in a simple reaction time taskAndreas Tiefenau, Heinrich Neubauer, Hellmut von Specht, et al.Advances in Experimental Medicine and Biology|May 30, 2013
A probabilistic model of absolute auditory thresholds and its possible physiological basisPeter Heil, Heinrich Neubauer, Manuel Tetschke, et al.Pageof 30