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B J Kröger

Publications and source records attributed to B J Kröger.

4 recordsLinked to original sources

[Modeling developmental aspects of sensorimotor control of speech production].

BACKGROUND: Detailed knowledge of the neurophysiology of speech acquisition is important for understanding the developmental aspects of speech perception and production and for understanding developmental disorders of speech perception and production. METHOD: A computer implemented neural model of sensorimotor control of speech production was developed. The model is capable of demonstrating the neural functions of different cortical areas during speech production in detail. RESULTS: (i) Two sensory and two motor maps or neural representations and the appertaining neural mappings or projections establish the sensorimotor feedback control system. These maps and mappings are already formed and trained during the prelinguistic phase of speech acquisition. (ii) The feedforward sensorimotor control system comprises the lexical map (representations of sounds, syllables, and words of the first language) and the mappings from lexical to sensory and to motor maps. The training of the appertaining mappings form the linguistic phase of speech acquisition. (iii) Three prelinguistic learning phases--i. e. silent mouthing, quasi stationary vocalic articulation, and realisation of articulatory protogestures--can be defined on the basis of our simulation studies using the computational neural model. These learning phases can be associated with temporal phases of prelinguistic speech acquisition obtained from natural data. CONCLUSIONS: The neural model illuminates the detailed function of specific cortical areas during speech production. In particular it can be shown that developmental disorders of speech production may result from a delayed or incorrect process within one of the prelinguistic learning phases defined by the neural model.

Brain Mapping↗

[MRT sequences as a database for a visual articulatory model].

Articulatory models can be used in phoniatrics for the visualisation of speech disorders, and can thus be used in teaching, the counselling of patients and their relatives, and in speech therapy. The articulatory model developed here was based on static MRI data of sustained sounds. MRI sequences are now being used to further refine the model with respect to speech movements. Medio-sagittal MRI sections were recorded for 12 consonants in the symmetrical context of the three point vowels [i:], [a:] and [u:] for this corpus. The recording-rate was eight images/s. The data show a strong influence of the vocalic context on the articulatory target-positions of all consonants. A method for the reduction of the MRI data for subsequent qualitative and quantitative analyses is presented.

Articulation Disorders↗

[A visual model of articulation].

Speech disorders become more and more important in clinical area of phoniatrics. It is striking during consultation and treatment of patients that there exist only humble concrete notions concerning speech organs and articulatory movements. Using the computational model introduced here speech organs and speech movements of unrestricted utterances can be displayed in the mediosagittal plane. Articulation is described concisely by using nine basic parameters. The time pattern of these parameter-values defines the articulatory motion plan of an utterance and gives a comprehensive overview of the spatio-temporal structure of the appertaining speech movements. The use of the model in speech therapy shall make patients sensitive for the existence of speech articulators--especially for those which are normally not directly visible (back tongue region, soft palate)--and help to understand and memorize the appertaining movement patterns.

Humans↗

A gestural production model and its application to reduction in German.

A quantitative speech production model has been computer-implemented based on specifications of gestures as its input. Articulatory gestures serve the central role of phonological/phonetic units in speech organization. The present model is not based on task dynamics, but it still assumes a critically damped linear second-order system. The capability of this model is partially demonstrated by its application to reduction phenomena in conversational speech in German. Explanations in terms of timing and magnitude alterations of gestures in different articulators use only a few general principles for a variety of apparent segmental alterations. Some salient examples have been synthesized based on the current model, which also contributed to the evaluation of the parameter values involved in sample gestures.

Female↗