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Biomedical subjects

E Møller

Publications and source records attributed to E Møller.

At least 19 recordsLinked to original sources

Ultrasonographic assessment of the swelling of the human masseter muscle after static and dynamic activity.

Work-related fatigue, pain and disorders in skeletal muscles have been related to prolonged static and dynamic activity. Such contractions have been shown to impair blood flow and increase muscle thickness and fluid. In the present study the effect of static and dynamic activity was evaluated from changes in masseter thickness as a measure of oedema, simultaneously with assessment of perceived pain/discomfort and cardiovascular responses. As static activity, fourteen young healthy women bit at 15% maximal voluntary contraction on bite-force transducers in the molar regions until exhaustion or 20 min at maximum (median endurance time 7.1 min). For dynamic activity, the same individuals chewed gum unilaterally until exhaustion or 40 min at maximum (all endured 40 min) with a cycle time of 725 ms, an average load of 9.3% of maximal electromyographic activity (maxEMG) and a peak mean voltage of 54.3% of maxEMG. Muscle thickness was measured by ultrasonography at the mid-portion of the ipsilateral masseter. Immediately after exercise, muscle thickness was significantly increased, more after static (14.0%) than dynamic (8.6%), and returned to pre-exercise values after 20-min recovery. Visual analogue scales (VAS) revealed the concomitant occurrence of pain (static 11.9 VAS%; dynamic 5.9 VAS%), and discomfort (static 8.1 VAS%; dynamic 5.9 VAS%), and both sensations decreased to pre-exercise values after 20-min recovery. Systolic blood pressure increased significantly, more during static (12.5%) than dynamic activity (4.3%), whereas heart rate rose significantly only during dynamic exercise (13.3%). Hence, activity was associated with muscular swelling and pain, and, despite the relatively small size of the masticatory muscles, also with general cardiovascular responses.

Adult

A system for analysis of sleep and nocturnal activity in craniomandibular muscles.

A system was developed for continuous, full-night, polysomnographic recording of sleep using manual sleep scoring and automatic electromyographic analysis of craniomandibular muscle activity. In the sleep laboratory, data are stored on tape with hard copy on paper followed by off-line, computer-controlled digital processing. Muscle activity is described by the Amplitude Probability Distribution Function and by parameters of time and intensity. Sleep and electromyographic data are available graphically on screen, and the results are presented in tables and graphics after statistical treatment. The system was developed to provide a differentiated, detailed analysis of sleep and nocturnal muscle activity in the craniomandibular system that is suitable for comparing groups of individuals, effects of treatments, and physical load of muscles. Applications of the system are demonstrated.

Adult

Facial growth and oral function in a case of juvenile rheumatoid arthritis during an 8-year period.

The present report is a detailed analysis of facial growth and oral function in a girl with juvenile rheumatoid arthritis of the temporomandibular joints. She was followed from 9 to 17 years of age prior to and after orthognathic surgery. Facial growth was assessed by facial photographs, dental casts, and roentgencephalometry, and oral function was assessed clinically by electromyography, kinesiography, and bite force. In addition, histological and histochemical analysis was performed on biopsy material from her masseter muscle obtained at the time of surgery. The study showed a clear relationship between facial growth and oral function. Dysplastic growth of the mandible led to an increasingly unstable occlusion with poor working conditions for the masticatory muscles. The muscles became weak, and even revealed marked structural histological and histochemical changes. Based on these observations it is suggested that the conventional treatment strategy with postponement of orthodontic or orthognathic surgical treatment until cessation of growth is abandoned and that early treatment should be undertaken to maintain occlusal stability throughout the growth period.

Arthritis, Juvenile

Structure and function of masticatory muscles in a case of muscular dystrophy.

Histologic examination of muscle biopsies and functional examination comprising electromyography and force measurements in a 19-yr-old boy with muscular dystrophy showed different wasting patterns of mandibular elevator and depressor muscles. Pronounced histopathologic changes were present in the masseter muscle, whereas pathologic findings in the anterior digastric muscle were limited to increased number of cells in slightly enlarged interfiber connective tissue. The masticatory pattern was distorted, and strength of mandibular elevator muscles was less than one third of the norm, whereas depressor strength corresponded more to reference values. This difference of muscular wasting might be caused by protective enzymes in the digastric muscle and/or functionally induced damage of the masseter. As affection from muscular dystrophy may vary greatly between the masticatory muscles, structural and functional examination should be used routinely to clarify prognosis before initiation of treatment procedures.

Adult

[Soft tissue tumors, particularly intramuscular lipomas].

The pathology, clinical features and treatment of intramuscular lipomata are reviewed on the basis of two case reports. The intramuscular lipoma is a benign tumour which feels hard on contraction of the muscle involved in comparison to ordinary lipomata.

Aged

Occlusal harmony and disharmony: frauds in clinical dentistry?

In defining the principles of occlusal function it is possible to demonstrate how firmly the number, the placement and the distribution of occlusal contacts control muscle activity and joint function during biting and chewing. This control implies that the intercuspal position is determined by positive feedback, that is by afferent activity that varies with occlusal stability. Conventional dental treatment involving occlusal surfaces alters this input and consequently alters the coordination of the muscles of mastication and the function of the temporomandibular joints. To assess and direct this input properly, quantitative parameters of electromyography and kinesiography are needed. Terms such as harmony and disharmony are irrelevant and must be abandoned.

Dental Occlusion

Skeletal and functional craniofacial adaptations in plagiocephaly.

The present report aims to contribute to our understanding of craniofacial development in plagiocephaly. A previously unreported dry skull with plagiocephaly and two clinical cases with unoperated plagiocephaly are presented. The clinical cases were followed longitudinally with roentgencephalometry in lateral, frontal, and axial projections. In addition, in one of the cases, electromyographic analysis of the temporal, masseter, sternomastoid, and trapezius muscles was carried out. The dry skull revealed premature closure of the sphenofrontal suture in addition to the coronal suture. Furthermore, severe asymmetry of the cranial base and mandible was observed. The clinical cases revealed a similar marked asymmetry of the cranial base. Mandibular asymmetry was observed to develop in early infancy secondary and compensatory to the primary asymmetry of the cranial base. The electromyographic examination revealed that the muscles of mastication were less developed on the affected side. Furthermore, the analysis of the muscles of the neck would seem to indicate that the patient compensated for her cranial base asymmetry and lateral deviation of the orbital axis on the affected side by rotating the head to the opposite side to secure binocular vision. Based on these findings, it would seem pertinent to consider early surgical release of the sutures of the calvaria and cranial base in plagiocephaly to prevent asymmetric facial development.

Bone Development