[1] Torsten Dau, Jesko L. Verhey, and Armin Kohlrausch, Intrinsic envelope fluctuations and modulation-detection thresholds for narrow-band noise carriers, Journal of the Acoustical Society of America, vol. 106, no. 5, pp. 2752-2760, 1999. [ bib ]
[2] Birgitta Gabriel, Stephan Albani, and Birger Kollmeier, Audiologische Erfolgskontrolle von digitalen Hörgeräte-Anpassungen, Zeitschrift für Audiologie/Audiological Acoustics, vol. 38, no. 1, pp. 26-32, 1999. [ bib ]
[3] Birgitta Gabriel and Birger Kollmeier, Test results on a new approach for fitting "ski-slope" hearing losses, The Hearing Journal, vol. 52, no. 6, pp. 68-76, 1999. [ bib ]
[4] Martin Hansen and Birger Kollmeier, Continuous Assessment of time-varying speech quality, Journal of the Acoustical Society of America, vol. 106, pp. 2888-2899, 1999. [ bib ]
[5] Birger Kollmeier, Intelligente Hörgeräte, Spektrum der Wissenschaft, vol. 1999, no. 2, pp. A15-A17, 1999. [ bib ]
[6] Mark Marzinzik, Volker Hohmann, Jens-E. Appell, and Birger Kollmeier, Dynamic Compression Algorithms: laboratory evaluation with hearing-impaired listeners, Zeitschrift für Audiologie/Audiological Acoustics, vol. 38, no. 1, pp. 16-25, 1999. [ bib ]
[7] Manfred Mauermann, Stefan Uppenkamp, Peter W.J. van Hengel, and Birger Kollmeier, Evidence for the distortion product frequency place as a source of DPOAE fine structure in humans I. Fine structure and higher order DPOAE as a function of the frequency ratio f2/f1, Journal of the Acoustical Society of America, vol. 106, no. 6, pp. 3473-3483, 1999. [ bib ]
[8] Manfred Mauermann, Stefan Uppenkamp, Peter W.J. van Hengel, and Birger Kollmeier, Evidence for the distortion product frequency place as a source of DPOAE fine structure in humans II. Fine structure for different shapes of cochlear hearing loss, Journal of the Acoustical Society of America, vol. 106, no. 6, pp. 3484-3491, 1999. [ bib ]
[9] Jürgen Tchorz and Birger Kollmeier, A model of auditory perception as front end for automatic speech recognition, Journal of the Acoustical Society of America, vol. 106, no. 4, pp. 2040-2050, 1999. [ bib ]
[10] Stefan Uppenkamp, Physikalische Grundlagen der Entstehung und Registrierung von otoakustischen Emissionen, Zeitschrift für Audiologie/Audiological Acoustics, vol. 38, pp. 59-62, 1999. [ bib ]
[11] Jesko L. Verhey, Torsten Dau, and Birger Kollmeier, Within-channel cues in comodulation masking release (CMR): Experiments and model predictions using a modulation-filterbank model, Journal of the Acoustical Society of America, vol. 106, no. 5, pp. 2733-2745, 1999. [ bib ]
[12] Kirsten Wagener, Thomas Brand, and Birger Kollmeier, Entwicklung und Evaluation eines Satztests für die deutsche Sprache II: Optimierung des Oldenburger Satztests, Zeitschrift für Audiologie/Audiological Acoustics, vol. 38, no. 2, pp. 44-56, 1999. [ bib ]
[13] Kirsten Wagener, Thomas Brand, and Birger Kollmeier, Entwicklung und Evaluation eines Satztests für die deutsche Sprache III: Evaluation des Oldenburger Satztests, Zeitschrift für Audiologie/Audiological Acoustics, vol. 38, no. 3, pp. 86-95, 1999. [ bib ]
[14] Kirsten Wagener, Volker Kühnel, and Birger Kollmeier, Entwicklung und Evaluation eines Satztests für die deutsche Sprache I: Design des Oldenburger Satztests, Zeitschrift für Audiologie/Audiological Acoustics, vol. 38, no. 1, pp. 4-15, 1999. [ bib ]