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1
Towards the acquisition of a sensorimotor vocal tract action repository within a neural model of speech processing
In: http://www.phonetik.phoniatrie.rwth-aachen.de/bkroeger/documents/Kroeger_etal_2011_LNCS_b.pdf (2011)
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2
A gesturebased concept for speech movement control in articulatory speech synthesis
In: http://www.vocaltractlab.de/publications/kroeger-2007-cost.pdf (2007)
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3
A visual articulatory model and its application to therapy of speech disorders : a pilot study [Online resource]
In: Speech production and perception : experimental analyses and models / editors Susanne Fuchs, Pascal Perrier and Bernd Pompino-Marschall, Zentrum für Allgemeine Sprachwissenschaft, Sprachtypologie und Universalienforschung (Berlin): ZAS papers in linguistics ; Vol. 40 (2005) 40 (2005), 79-94
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4
A Neurofunctional Model of Speech Production Including Aspects of Auditory and Audio-Visual Speech Perception
In: http://isca-speech.org/archive_open/archive_papers/avsp08/av08_083.pdf
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5
Performing Identification and Discrimination Experiments for Vowels and Voiced Plosives by Using a Neurocomputational Model of Speech Production and Perception
In: http://issp2008.loria.fr/Proceedings/PDF/issp2008-82.pdf
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6
Neural models of speech production and speech acquisition
In: http://www.zas.gwz-berlin.de/sommer_org/abstract/kro.pdf
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7
Categorical perception of consonants and vowels: evidence from a neurophonetic model of speech production and perception
In: http://www.vocaltractlab.de/publications/kroeger-2011-lncs.pdf
Abstract: Abstract. While the behavioral side of categorical perception in speech is already well investigated, little is known concerning its underlying neural mechanisms. In this study, a computer-implemented neurophonetic model of speech production and perception is used in order to elucidate the functional neural mechanisms responsible for categorical perception. 20 instances of the model ("virtual listeners/speakers") underwent a speech acquisition training procedure and then performed behavioral tests, i.e. identification and discrimination experiments based on vocalic and CV-syllabic speech stimuli. These virtual listeners showed the expected behavioral results. The inspection of the neural organization of virtual listeners indicated clustering in the case of categorical perception and no clustering in the case of non-categorical (continuous) perception for neurons representing the stimuli. These results highlight a possible neural organization underlying categorical and continuous perception.
URL: http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1090.8067
http://www.vocaltractlab.de/publications/kroeger-2011-lncs.pdf
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8
Audiovisual Tools for Phonetic and Articulatory Visualization in Computer-Aided Pronunciation Training
In: http://www.se.cuhk.edu.hk/hccl/publications/pub/LNCS5967.pdf
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9
during
In: http://www.phonetik.phoniatrie.rwth-aachen.de/bkroeger/documents/Kroeger_etal_2006_ISSP.pdf
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10
Coupling Phonology and Phonetics in a Constraint-Based Gestural Model
In: http://pc0864.Germanistik-Kunst.uni-marburg.de/~walther/konveng.ps.gz
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11
RESEARCH Associative le
In: http://www.phonetik.phoniatrie.rwth-aachen.de/bkroeger/documents/Kroeger_2014_EPJNBP.pdf
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12
Early Vocal Development in a Normally Hearing Infant and a Young Cochlear Implant Recipient
In: http://issp2008.loria.fr/Proceedings/PDF/issp2008-36.pdf
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13
SIMULATION OF VOCAL TRACT GROWTH FOR ARTICULATORY SPEECH SYNTHESIS
In: http://www.icphs2007.de/conference/Papers/1153/1153.pdf
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