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At least 19 recordsLinked to original sources

Postnatal development of the annulospiral endings of Ia fibers in muscle spindles of the mouse temporal muscle.

The formation of the annulospiral endings of Ia fibers in muscle spindles was investigated in the temporal muscle of developing mice. From 15 to 20 d after birth, there were only a few spindles with "++" sensory endings. With growth of mice, the primary endings of the Ia fiber began to develop its spiral endings. And by the 30th postnatal day (that is, after weaning), almost all of the Ia fibers had completely coiled endings though the formation was still continuing in some spindles at this time. Formation of the annulospiral endings of the Ia fibers of muscle spindles in the temporal muscle was completed earlier than that of fibers in the spindles in the masseter muscle.

Animals

Surface EMG frequency dependence on force in the masseter and the anterior temporal muscles.

Myoelectric power spectrum analysis was used to study isometric contractions, 10-15 s long, of the masseter muscles and the anterior temporal muscles. Surface EMG activity was recorded from these muscles for nine females while biting on a bite force transducer up to maximal effort (100% maximal voluntary contraction; MVC). The mean frequency (MF) was calculated as a single estimate of the myoelectric power spectrum. Regression analyses were made of MF versus bite force (0-100% MVC). The mean MF values of all females' masseter muscles increased up to 55-60% MVC. For the anterior temporal muscles no increase in mean MF was found above 20-25% MVC. The increase in MF was possibly dependent on recruitment of type I fibers and low-pass tissue filtering effects. The slope of regression for the force level 0-60% MVC was intraindividually steeper for the masseter muscles than for the anterior temporal muscles. A similar decrease in mean MF was found for the masseter muscles and the anterior temporal muscles for the force level 60-100% MVC. The possibility of muscular fatigue was discussed.

Adult

Postnatal development of the mouse temporal muscle and effects of a fine-grained diet on the muscle spindle.

The postnatal development of the mouse temporal muscle and effects of a fine-grained diet on muscle spindles were investigated. On d 25 after birth, 3 types of extrafusal muscle fibers could be distinguished on the basis of SDH activity, but not on the basis of their diameters. And in 50-d-old mice, 3 types of the muscle fibers had different diameters each other. In intrafusal muscle fibers, the postnatal changes of the SDH activity were similar to those of extrafusal muscle fibers, but the diameter distribution showed unimodal statistical distribution from 10th to 50th postnatal day. On the other hand, in control 180-d-old mice, 80 percent of muscle spindles in the temporal muscle had complete annulospiral endings, but the ratio of muscle spindles with complete annulospiral endings was decreased significantly in mice fed a fine-grained diet. The diet also decreased the diameter of the endings significantly. These results suggest that the main changes in the morphological and functional properties of the mouse temporal muscle occur in during and early after weaning period, and that normal mastication is needed to maintain the homeostatic condition of the mouse temporal muscle.

Animals

Temporal muscle blood flow in common migraine.

Temporal muscle blood flow (TMBF) was measured by the local 133-Xenon washout technique in 61 patients suffering from common migraine. Nineteen were re-examined in the course of spontaneous attacks. Muscle tension was quantified by surface EMG. During the attacks, median TMBF increased insignificantly, 33% on the ipsilateral and 24% on the contralateral side. During 15 unilateral attacks, the ipsilateral-contralateral ratio of TMBF was 1.02. Isometric and dynamic work tests showed intact metabolic regulation of TMBF. These results speak against a general vasomotor disturbance of the extracranial tissues during attacks of common migraine. There was also no indication that ischemia of the temporal muscle might explain the pain.

Adult

Electrophysiological study of size and fibre distribution of motor units in the human masseter and temporal muscles.

Probably related to their unique function, human jaw muscles have a specialized muscle-fibre composition different from that of limb and trunk muscles. In jaw muscle from healthy young adults, there were large groups of densely-packed fibres of the same histochemical type, a finding which indicates re-innervation when seen in limb muscles. The number of muscle fibres per motor unit, the local distribution of muscle fibres within motor units and the neuromuscular transmission in human masseter and temporal muscles were examined by single-fibre EMG and macro EMG. One hundred and forty-seven low-threshold motor units in four healthy subjects were recorded. The first dorsal interosseus muscle of the hand was similarly measured. In the jaw and hand muscles the low-threshold motor units were slightly smaller, than in large arm and leg muscles. The temporal muscle differed from the masseter in having significantly-higher fibre density, which may be explained by the higher frequency of small type-II fibres in the temporal causing closer packing of the type-I, low-threshold motor units. The fibre concentration within motor units was similar to that of normal limb muscles without any sign of grouping of fibres from the same motor unit. Normal motor end-plate transmission was another argument against re-innervation.

Adult

Temporal muscle blood flow in chronic tension-type headache.

Temporal muscle blood flow was measured with the xenon 133 clearance technique in 40 patients with chronic tension-type headache and in 13 control subjects. Pressure-pain threshold in the temporal region was determined with an algometer. Patients and control subjects did not differ in any of the blood flow parameters. Resting blood flow at the two sides was highly correlated (Spearman coefficient, r = .61) and no right/left differences could be demonstrated. In both patients and control subjects, blood flow increased approximately fivefold during isometric work (1/3 of a maximum surface electromyogram). Reactive hyperperfusion after isometric work was found in 8 patients and in 1 control subject. There was no definite correlation between the pressure-pain threshold and the corresponding blood flow. It is not likely that temporal muscle ischemia is the cause of muscle tenderness and pain in patients with chronic tension-type headache.

Adult

The use of Gore-Tex Soft Tissue Patch to assist temporal muscle transfer in the treatment of facial nerve palsy.

Temporal muscle transfer remains one of the most widely practiced procedures in dynamic correction of paralysis of facial nerves. In case of shortage of temporal muscle volume, length, and strength, some type of autogenous tissue or implant is required to achieve great stretching and excursion. Several artificial materials have been used in the past, each with its own limitations or problems. We used Gore-Tex Soft Tissue Patch to lengthen and strengthen the muscle-fascia strip. This material is very successful as an implant; it shows excellent tissue tolerance, the porous microstructure encourages tissue attachment and infiltration, and it also resists infection. As a result, reasonable suspension and restoration of orbital and oral sphincters were achieved.

Facial Paralysis

Transfer of the temporal muscle for lagophthalmos according to Gillies.

For correction of lagophthalmos different methods have been described such as gold weights, palpebral spring and magnets. Using the transposed temporal muscle is superior to implantation of foreign material. We present a method for correction of lagophthalmos that combines static support with dynamic function. During the last eight years we performed transposition of the temporal muscle in 17 patients. The anterior part of the temporal muscle has been transposed. Corneal irritation and epiphora disappeared in all patients, although a complete correction of lagophthalmos could not be achieved in each case. Chewing was not impaired and closure of the eye could be performed independently from chewing. Because of its low morbidity the transfer of the temporal muscle is the procedure of choice for repair of lagophthalmos.

Eyelid Diseases

Transfer of the temporal muscle for lagophthalmos according to Gillies.

For correction of lagophthalmos different methods have been described such as gold weights, palpebral spring and magnets. Using the transposed temporal muscle is superior to implantation of foreign material. We present a method for correction of lagophthalmos that combines static support with dynamic function. During the last eight years we performed transposition of the temporal muscle in 17 patients. The anterior part of the temporal muscle has been transposed. Corneal irritation and epiphora disappeared in all patients, although a complete correction of lagophthalmos could not be achieved in each case. Chewing was not impaired and closure of the eye could be performed independently from chewing. Because of its low morbidity the transfer of the temporal muscle is the procedure of choice for repair of lagophthalmos.

Aged

[Closing of central palate defects using a temporal muscle flap].

Large defects of the maxilla are hard to repair. In spite of the prosthesis that covers the defect, patients complain of loss of fluid through the nose when they drink or take liquid food. In five patients the maxillary defect was successfully closed by transposing the anterior part of the temporal muscle or the entire temporal muscle. The donor site was covered by transposing the posterior part of the temporal muscle or by an implant.

Adult

Algesia and local responses induced by neurokinin A and substance P in human skin and temporal muscle.

Neurokinin A (NKA), substance P (SP) and the two peptides combined (SP + NKA) were injected intracutaneously on the forearm and into the temporal muscle of healthy volunteers. Pain intensity, cutaneous wheal and flare responses and tenderness of the temporal muscle were quantitated. SP but not NKA induced cutaneous pain. This relates the algesic effect of SP to the specific N-terminal amino acid sequence of the peptide, not shared by NKA. NKA, however, potentiated the algesic effect of SP as SP + NKA induced a significantly prolonged cutaneous pain sensation. Both peptides induced wheals, but only SP induced flare. These results confirm previous studies relating wheal formation to the identical C-terminal amino acid sequence of the two peptides and flare reaction to the N-terminal part of SP. Injections into the temporal muscle did not cause pain or tenderness.

Adult

Temporal muscle activity during the first year of Class II, division 1 malocclusion treatment with an activator.

The activity of the anterior and posterior temporal muscles in response to treatment with a splint type of activator was studied in children with distal occlusion. The effect on muscle activity was compared with that in a similar group of children being treated with a headgear and with that in a control group receiving orthodontic treatment for Class I malocclusion. Electromyographic recordings were made with the mandible in the rest position and, during maximal bite, in the intercuspal position. The recordings were made before the start of the treatment and on three later occasions at 4-month intervals. The activity in the rest position was constant during the 1-year period of observation. During maximal bite the activity of the posterior temporal muscle decreased significantly in the group with headgear and the control group and in a subgroup of children with large protrusions in the construction bite who had been treated with activators. This decrease was considered to be an effect of occlusal instability brought about by the treatment. There was no evidence of a decrease in the postural (rest) activity of the posterior temporal muscle, although such a decrease has been described as a sign of forward displacement of the mandible during treatment with a functional appliance.

Activator Appliances

[Electromyographic (EMG) electrode impedance and EMG activity from anterior temporal muscle and masseter muscle].

The value and change with time of the impedance of surface EMG electrodes and the effects of their difference between the bipolar electrodes on the electromyographic activity from the anterior temporal muscle and the masseter muscle in six adult male subjects with normal occlusion were studied. The results were as follows: 1. In the anterior temporal muscle, if the impedance of the electrode was under 20 k omega it was stable from just after the electrode disc was applied to the skin. In the masseter muscle, if the impedance was under 30 k omega it became stable within two minutes after the electrode was applied. 2. The difference of impedance between the bipolar EMG electrodes did not correlate with EMG activity.

Adult