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Renewal-Process Approximation of a Stochastic Threshold Model for Electrical Neural Stimulation., , , , and . J. Comput. Neurosci., 9 (2): 119-132 (2000)The Effects of HCN and KLT Ion Channels on Adaptation and Refractoriness in a Stochastic Auditory Nerve Model., and . IEEE Trans. Biomed. Eng., 61 (11): 2749-2759 (2014)A stochastic model of the electrically stimulated auditory nerve: pulse-train response., , , , , , and . IEEE Trans. Biomed. Eng., 46 (6): 630-637 (1999)Robust formant tracking for continuous speech with speaker variability., and . ISSPA (2), page 623-624. IEEE, (2003)0-7803-7946-2.Can homeostatic plasticity in deafferented primary auditory cortex lead to travelling waves of excitation?, , , , and . J. Comput. Neurosci., 30 (2): 279-299 (2011)Computationally Efficient DNN-Based Approximation of an Auditory Model for Applications in Speech Processing., , , and . ICASSP, page 301-305. IEEE, (2021)Modeling of Spiking Analog Neural Circuits with Hebbian Learning, Using Amorphous Semiconductor Thin Film Transistors with Silicon Oxide Nitride Semiconductor Split Gates., , and . ICANN (1), volume 7552 of Lecture Notes in Computer Science, page 89-96. Springer, (2012)Exploiting Voicing Cues for Contrast Enhanced Frequency Shaping of Speech for Impaired Listeners., , and . ICASSP (5), page 137-140. IEEE, (2006)Development of a flexible, realistic hearing in noise test environment (R-HINT-E)., , , , , , , and . Signal Process., 84 (2): 299-309 (2004)A comparative study of eight human auditory models of monaural processing, , , , , , and . (2021)cite arxiv:2107.01753.