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Modeling auditory processing of amplitude modulation. I. Detection and masking with narrow-band carriers

, , and . Acoustical Society of America, (1997)

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Multi-loudspeaker equalization for acoustic transparency in a custom hearing device., , , and . ITG Symposium on Speech Communication, page 1-5. VDE / IEEE, (2018)Adaptive separation of acoustic sources for anechoic conditions: A constrained frequency domain approach., and . Speech Commun., 39 (1-2): 79-95 (2003)Classifier Architectures for Acoustic Scenes and Events: Implications for DNNs, TDNNs, and Perceptual Features from DCASE 2016., , , , and . IEEE ACM Trans. Audio Speech Lang. Process., 25 (6): 1304-1314 (2017)Combining Binaural and Cortical Features for Robust Speech Recognition., , and . IEEE ACM Trans. Audio Speech Lang. Process., 25 (4): 756-767 (2017)Increase and Subjective Evaluation of Feedback Stability in Hearing Aids by a Binaural Coherence-Based Noise Reduction Scheme., , and . IEEE Trans. Speech Audio Process., 17 (7): 1408-1419 (2009)Prediction of Binaural Intelligibility Level Differences in Reverberation., , and . INTERSPEECH, page 37-40. ISCA, (2011)Does sentence complexity interfere with intelligibility in noise? evaluation of the oldenburg linguistically and audiologically controlled sentence test (OLACS)., , , , , , and . INTERSPEECH, page 2482-2485. ISCA, (2010)Digital hearing aid techniques employing a loudness model for recruitment compensation., and . ICSLP, page 2111-2114. ISCA, (1994)Predicting Common Audiological Functional Parameters (CAFPAs) as Interpretable Intermediate Representation in a Clinical Decision-Support System for Audiology., , , and . Frontiers Digit. Health, (2020)Multi-Channel Speech Enhancement and Amplitude Modulation Analysis for Noise Robust Automatic Speech Recognition., , , , and . Comput. Speech Lang., (2017)