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Frontiers in Computational Neuroscience|February 24, 2016
Measuring the Performance of Neural ModelsOliver Schoppe, Nicol S Harper, Ben D B Willmore, et al.Elife|June 19, 2018
Sensory cortex is optimized for prediction of future inputYosef Singer, Yayoi Teramoto, Ben Db Willmore, et al.Acta Cytologica|November 2, 2020
Challenges Developing Deep Learning Algorithms in CytologyEwen David McAlpine, Liron Pantanowitz, Pamela M MichelowJournal of the Association for Research in Otolaryngology : JARO|June 14, 2016
Sensitivity to Interaural Time Differences Conveyed in the Stimulus Envelope: Estimating Inputs of Binaural Neurons Through the Temporal Analysis of Spike TrainsMathias Dietz, Le Wang, David Greenberg, et al.Trends in Hearing|January 2, 2016
Sensitivity to Envelope Interaural Time Differences at High Modulation RatesJessica J M Monaghan, Stefan Bleeck, David McAlpineThe Journal of the Acoustical Society of America|July 9, 2021
The influence of envelope shape on the lateralization of amplitude-modulated, low-frequency soundNicholas R Haywood, Jaime A Undurraga, David McAlpineProceedings. Biological Sciences|November 10, 2017
Midbrain adaptation may set the stage for the perception of musical beatVani G Rajendran, Nicol S Harper, Jose A Garcia-Lazaro, et al.Plos Computational Biology|January 18, 2019
STRFs in primary auditory cortex emerge from masking-based statistics of natural soundsAbdul-Saboor Sheikh, Nicol S Harper, Jakob Drefs, et al.Elife|May 26, 2022
Cortical adaptation to sound reverberationAleksandar Z Ivanov, Andrew J King, Ben D B Willmore, et al.Advances in Experimental Medicine and Biology|April 16, 2016
Objective Measures of Neural Processing of Interaural Time DifferencesDavid McAlpine, Nicholas Haywood, Jaime Undurraga, et al.Pageof 12