Search PubMedSearch

PubMed · 1097158

Normal velopharyngeal function in speech.

Abstract

What has been presented in the foregoing pages is the broad outline of a theory of velopharyngeal function in normal speech production. It is suggested that the velopharyngeal musculature functions in a predictably variable manner to provide predictably variable structural movements and positioning. The variability is predictable, based on the phenomenon of coarticulation, given knowledge of where the structures are, where they must go to produce a perceptually acceptable phonime, and where they must subsequently be for later phonemes. The theory is not complete, as will be discussed below. Nevertheless, it demonstrates the complexity of velopharyngeal function. Many variables are involved simultaneously in the movements of this mechanism, and it is not enough to consider a muscle, a structure, or a phoneme. The action of any muscle is influenced by the action of others in the system, the movements of any structure are influenced by movements of other structures, and any phoneme is influenced-sometimes heavily so-by phonemes around it. Thus, the central nervous system programming of oralization and nasalization gestures must be a complicated process. Certainly, the results of that programming are complicated.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J F Lubker. 1975. Normal velopharyngeal function in speech.. https://pubmed.ncbi.nlm.nih.gov/1097158/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Do fast voluntary movements necessitate anticipatory postural adjustments even if equilibrium is unstable?

Anticipatory postural adjustments (APA) were studied in maximum velocity flexion of lower limb from two initial postures, a bipedal stance (Fbu) and unipedal stance (Fuu). In Fbu, the dynamics of center of gravity (CG) and ankle and hip muscle EMG activity showed large APA. In contrast, in Fuu there were no APA, the CG dynamics and the ankle EMG activity started at the same time as the intentional movement while the hip EMG activity started some 30 ms before the thigh flexion. The knee flexion velocity was lower in Fuu than in Fbu (7 rd/s versus 12 rd/s). These results suggest that fast voluntary movements do not require APA when the postural equilibrium is unstable, and that an alternative strategy is used. The absence of APA in Fuu, in contrast to the presence of APA in Fbu, suggests that the postural command and the focal one are time-locked and organized in a parallel process.

Electromyography

[Peripheral nerve lesions in general surgery].

Surgical interventions can give rise to peripheral nerve lesions by various mechanisms. The neurologist is asked to define which nerve has been lesioned at which site. We also have to define the type of lesion and its severity. The electrophysiological investigation is a very important diagnostic tool in this particular situation. Together with the clinical examination it will allow to plan an optimal treatment for the patient.

Electromyography