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[Studies on stress distribution under simulated muscles on dry skull].

In case of occlusion, the mandible is elevated by the muscles of mastication with T. M. J. as the fulcrum point, and at this time, the masticatory force concentrated mainly on the dental arch is absorbed into the jaw bone through the periodontal tissues. Therefore, it is of great significance for the study of prosthodontics to assess what distribution of mechanical strain the maxillar and mandibular bones exhibit to occlusal force at mastication. Very many studies have been made to clarify this point, but many of them were analyses of stress pattern when a tooth (a point) is under force on models prepared on the assumption that a tooth is planted on the jaw bone, but there are only very few studies which made analysis of stress pattern when the mandible is under force by elevating it mainly along the direction of the M. masseter upon positioning the bone similarly as in vivo mechanism. With the purpose of assessing the distribution of mechanical strain received when the mandible is elevated by the muscle of mastication, the author has assessed the change in the stress distribution under 2 conditions of light and hard tensile forces by setting the M. masseter form the center of the inferior border of the zygomatic bone and center of the zygomatic arch to the mandibular angles on the assumption that self memory alloy takes the places of the M. masseter (the masseter) and M. temporalis (the temporalis) on the experimental model. As a result, the following conclusions have been reached: 1. When the origin of the masseter is at the center of the inferior border of the zygomatic bone, the maximum exhibited tensile strain at all the measuring points both under light and hard tensile forces. Under light tensile force, the minimum strain showed compressive strain in the region from the lower canine to the lower first under hard tensile force, the minimum strain exhibited tensile strain at all measuring points. The amount of strain under hard tensile force exceeded the amount under light tensile force. 2. When the origin of the masseter is at the center of the zygomatic arch, the maximum strain showed tensile strain at all the measuring points both under light and hard tensile foece. The minimum strain exhibited compressive strain at all the measuring points both under light and hard tensile foece. The amount of strain under hard tensile force always exceeded the amount under light tensile force.(ABSTRACT TRUNCATED AT 400 WORDS)

Dental Stress Analysis↗

[Electromyographic evaluation of muscular tension in dysfunctional subjects in relation to normal subjects].

Electromyography has been used to analyse the myoelectric activity of the masticatory muscles in 130 dysfunctional patients in comparison with normal subjects. Of the muscles examined, those presenting greater basal tension were also identified. Myoelectric activity proved greater, at postural values, in dysfunctional patients; by contrast, subjects without craniomandibular symptomatology presented normally low initial values. As for the analysis of the muscular group presenting greater tension, analysis of the results did not produce statistically significant percentages pointing to the prevalence of one muscular group over another.

Adolescent↗

The influence of dental occlusion on electromyographic silent periods.

Electromyographic silent periods (EMG SP) and occlusal contact intensity were studied in 31 young patients (9-18 years of age) having different types of malocclusion. EMG SP was induced from bilateral temporalis and masseter muscles by chin tapping during isometric contraction. The simple silent period (SSP), depressed activity (DP) and double silent period (2SP or 3SP) were classified according to the character of silence. The occlusal contact intensity was obtained by using a polymer wafer for clenching and was analysed with a photocclusion analyser. It was found that the average amplitude of temporalis and masseter muscles during clenching was about 400 microV. The mean SSP was around 34 msec. The total SP was around 40 msec in temporalis and 44 msec in masseter. All of the subjects demonstrated one or more DP in ten taps while 18 of them had 2SP or 3SP. The difference in contact intensity between right and left had a strong correlation with the EMG SSP+DP, SSP+2SP3SP and total SP. Anterior-posterior difference was not as strongly related to SP parameters. Less significant correlation was found between SSP and occlusal intensity. It is concluded that the influence of occlusion on EMG SP is basically related to the uneven occlusal contact between the two sides rather than the total occlusal contact intensity or the difference in intensity anterior-posteriorly.

Adolescent↗

[Animal experiment studies on the effect of unilateral tooth extraction on the growth of the skull and masticatory muscles. III. The masticatory muscles].

All continuous teeth were unilaterally extracted on the right side of the upper and lower jaws of 57 male and female Vietnamese belly pig. The animals were slaughtered 6, 7, 8, 9, 10, 11 and 12 after the extraction. Our investigations into quantitative changes in the masticatory musculature after unilateral extraction showed the dry weight of the musculature on the extraction side was reduced. This reduction was greatest in the case of the M. temporalis. The findings relating to the muscles are consistent with the results of the skull evaluations reported in the first 2 publications, with indicated that tooth extraction leads to only local changes in the jaw during postnatal development. The findings published in the 3 publications of this series relating to the bones and muscles are discussed.

Animals↗

[Morphometric and histochemical studies of the masticatory muscles in growing white rats following ligation of the right common carotid artery].

White Wistar rats served for examinations to the masticatory muscles after ligature of the a. carotis communis dextra on the 42nd d after birth. Gravimetric determinations of the dry substance of the muscles were performed in a total of 229 animals. In 65 animals casts of the vessels in synthetic resin (Kallocryl M) were made and the inside diameters of the blood vessels of the corresponding vascular regions measured. Histological, histochemical and muscle-fibre-morphometric observations of the masticatory muscles were made in 10 animals. Due to processes of adaption the a. carotis communis sinistra with an enlarged cross-section supplied the head with an increased blood volume. However, the anatomical and physiologic conditions of the collateral blood vessels conveying blood to the right side of the head prevented the entry of same share of blood into that side. Obviously there is a causal connection between this circumstance and the reduction in the dry substance of the right-side masticatory muscles. Histologic investigations revealed an increase in the capillaries by 10 percent in the animals operated on. The reduction in the diameters of the muscle fibres on the right side of the head was accompanied by a change in the normal combination of fibre types. 2 out of 5 animals which had been operated on showed a fairly homogeneous distribution of the fibre types in the masticatory muscles. Fibres of type 2 tended to be more vulnerable than fibres of type 1. Pathogenetically, the reduction in the dry substance of muscles and the reduction in the diameters of the muscle fibres are caused by nutritive disturbances in connection with restricted circulation. The neuronal-trophic sphere and the mechanism which is responsible for the differentiation of the muscle-fibre types seem to be affected as well. The myokinetic synapses are not affected.

Aging↗

[Anatomy of muscles acting on the temporomandibular joint].

By means of craniometry, 300 skulls of mature persons have been studied, as well as the muscles affecting the temporomandibular joint (m. masseter, m. temporalis, m. pterygoideus medialis et lateralis, anterior venter of m. digastricus, m. mylohyoideus, m. geniohyoideus, m. genioglossus) have been studied in 170 preparations of the mature persons' corpses by the method of preparation. It has been stated that the bony parts to which the muscles in question are fixed have various size, form and are in different topographic relation at various forms of the skull. Therefore, the size, form and position of the muscles affecting the temporomandibular joint are characterized by different indices in brachicephals and in dolichocephals. Fatty tissue spaces, limited by the muscles and cranial bones mentioned above, have corresponding different length and communications.

Adult↗

Preliminary rapport on head posture and muscle activity in subjects with class I and II.

Forward head posture may cause alterations in the stomatognathic system, including changes in the muscle activity of the masticatory muscles and dental occlusion alterations. Considering the need for further understanding of the relationship between the stomatognathic system and the cervical region, the purpose of this study was to analyse the head posture and the electromyographic (EMG) activity of the anterior portion of temporal and masseter muscles bilaterally among bruxist's subjects with different dental occlusion classifications using the Angle method. The study consisted of 20 female volunteers, between the ages of 17 and 27 years. They were separated into two groups (class I and class II occlusions) according to a dentist-performed evaluation. An assessment of forward head posture was conducted using a photographic technique (angular calculus) combined with a clinical analysis. In the EMG analyses, active differential surface electrodes (Ag) were utilized and were placed bilaterally on the belly of masseter and temporal muscles, perpendicular to the muscles fibres. The EMG signal recorded during bilateral isotonic mastication, was presented using the Root Mean Square and was processed by Matlab software. The results indicated that the EMG responses of temporal and masseter muscles tend to be modified by occlusion alteration class II. Subjects with class II occlusion tended to present more occurrence of forward head posture with alterations in the muscle activity pattern between masseter and temporal muscles.

Adolescent↗

Power spectral analysis of electromyographic signal of masticatory muscles at rest position and habitual clench.

Thirteen normal subjects were selected for this investigation. At the vertical dimension of rest position and habitual clench, their myoelectric activities of the masseter, anterior and posterior temporal, and digastric muscles on the left and right sides were simultaneously sampled and processed by computer, and the mean power frequency (MPF) and the mean amplitude (MA) of the myoelectric signal were calculated. At rest position, the temporal muscles were major muscles and the MPF differences of various masticatory muscles were not significant. At habitual clench, with the increase in MA, the MPF of various muscles increased. The results show that MPF may have application in describing a central tendency of myoelectrical signal frequency distribution and in evaluating recruitment of motor units. MPF and MA are the quantitative indices reflecting masticatory muscle function.

Adult↗

Spatio-temporal evaluation of neck muscle activation during postural perturbations in healthy subjects.

The purpose of this study was to examine the spatio-temporal activation of the sternocleidomastoid (SCM) and cervical extensor (CE) muscles with respect to the deltoid muscle onset during rapid voluntary upper limb movement in healthy volunteers. The repeatability and reliability of the spatio-temporal aspects of the myoelectric signals were also examined. Ten subjects performed bilateral and unilateral rapid upper limb flexion, abduction and extension in response to a visual stimulus. EMG onsets and normalised root mean square (nRMS) values were calculated for the SCM and CE muscles. Subjects attended three testing sessions over non-consecutive days allowing the repeatability and reliability of these measures to be assessed. The SCM and CE muscles demonstrated feed-forward activation (activation within 50 ms of deltoid onset) during rapid arm movements in all directions. The sequence and magnitude of neck muscle activation displayed directional specificity, however, the neck flexor and extensor muscles displayed co-activation during all perturbations. EMG onsets demonstrated high repeatability in terms of repeated measure precision (nSEM in the range 1.9-5.7%). This was less evident for the repeatability of nRMS values. The results of this study provide a greater understanding of cervical neuromotor control strategies. During bilateral and unilateral upper limb perturbations, the SCM and CE muscles demonstrate feed-forward co-activation. It seems apparent that feed-forward activation of neck muscles is a mechanism necessary to achieve stability for the visual and vestibular systems, whilst ensuring stabilisation and protection of the cervical spine.

Adult↗