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Bruxing patterns in children compared to intercuspal clenching and chewing as assessed with dental models, electromyography, and incisor jaw tracing: preliminary study.

The purpose of the present study was to compare bruxing patterns in children with chewing and maximum intercuspal clenching as defined in a clinical and laboratory environment. Six non-bruxing controls and six children who actively bruxed according to parent reports were evaluated. Both control and experimental subjects were assessed by an initial questionnaire, intraoral examination, extraoral examination, dental study models, incisor mandibular tracking, and bilateral surface electromyographic recordings (e.g., EMG). Bruxing was defined as grinding, clenching, or both in combination. The clinical examination consisted of an intraoral examination of the dentition, number of occlusal contacts, and wear facets. Dental study models were used to substantiate the intraoral findings for occlusal contact and wear facets. The mandibular incisors position was tracked during opening, closing, laterotrusion, protrusion, and chewing and compared to the bruxing movements in the experimental subjects. Bilateral surface EMG signals from the temporalis and masseter muscles were recorded in three maximum intercuspal clenches, ten chewing cycles on sugarless gum, and during simulated bruxing. The dental contacts were equal in number bilaterally in both control and bruxing subjects. Both groups demonstrated wear facets, but the bruxing subjects had more facets. The wear facets indicated lateral excursions but not clenching. Only the incisor jaw tracking and bilateral EMG differentiated the bruxing patterns. In those subjects (n = 4) who clenched during bruxing, the EMG pattern was not similar to that of intercuspal clenching and demonstrated its own unique muscle recruitment for the temporalis and masseter muscles. In the subjects who exhibited lateral excursions for bruxing (n = 2), the pattern of muscle recruitment of the two-closing muscles in terms of amplitude was similar for both the bruxing and chewing gum. Our findings support a concept that bruxing may depend upon factors that modify coactivation of muscle recruitment and do not depend upon occlusal contacts.

Analysis of Variance↗

[Comparison between physical properties of resin materials and those of gypsum materials for dental models and dies (author's transl)].

Setting time, water sorption, solubility, dimensional change, hardness, tensile strength, compressive strength, bending strength, and Young's modulus of resin model materials and gypsum model materials were determined. These results are following: 1) Setting time of Goldex is in general the same as that of dental plaster, and setting time of Alpha-Die and that of Dicodur are the same as densite type stone. But setting time of Rock Model is very long, that is, ten times as long as that of densite type stone. 2) Water sorption and solubility of gypsum model materials are larger than those of resin model materials. Solubility of Dicodur is larger in comparison with the other resin model materials. 3) During setting, all of gypsum model materials expand but all of resin model materials contract. The absolute values of dimensional change of Rock Model and of densite type stones are the same, but smaller compared with those of other materials. 4) The value of knoop hardness of resin model materials is between that of plaster of Paris and that of hydrocal type stones. 5) In comparison with densite type stone, resin model materials are 2.5 to 5.0 times in tensile strength, the same in compressive strength, and 1.5 to 2.3 times in bending strength. 6) Young's modulus of resin model materials is 1/3 to 1/5 as much as that of densite type stones.

Calcium Sulfate↗

A critical comparison of three methods for measuring dental models.

A critical comparison of three methods for measuring distances between various fiducial points on orthodontic plaster casts is presented. The first method consisted of using a vernier caliper by which direct measurements (Dv) of the distances were recorded. The second method consisted of measuring the same casts using a reflex metrograph (Dm), where the co-ordinates of the points relative to two axes were recorded and the distances between various points were calculated. In the third method, reflection holograms of the casts were made, and the same distances were measured on the holographic images (Dh) using the reflex metrograph. The Wilcoxon sign rank test indicated no significant differences (p greater than 0.1) between measurements made by the various techniques. The means of the different distances scored varied within less than 0.5 mm (Dv-Dh), 0.5mm (Dv-Dm) and 0.2mm Dm-Dh). This study indicated that holograms can provide sufficiently accurate representations of orthodontic study models. Their retention as case records may solve the problem of the storage of orthodontic plaster casts.

Dental Records↗

The research and development of noncontact 3-D laser dental model measuring and analyzing system.

OBJECTIVE: To research and develop a new laser scanning 3-dimensional digitization system for collecting, showing, and measuring the data of dental casts. MATERIAL AND METHODS: According to the 3-dimensional measuring method, by using 2 pulsate motors to make the synthetic movement of the dental cast, a special semiconductor laser, and 2 special line array CCD, the 3-D data could be found anywhere on the surface of the dental cast. The program, developed with Visual C++ language under the Windows (Windows tm) system, can control the scanner, rebuild the 3-D graphics and measure the data of the dental cast. RESULTS: The system offers 70 x 70 x 70 mm measurement scope, 0.01 mm resoling power, < 0.1 mm mean deviation, and 25 mins for single cast scanning. CONCLUSION: The advantages of this system are its precision, simplicity, high efficiency, and wide range of measurements with complete direct view. This system also supplied new information that cannot be found with traditional measurement methods.

Computer Graphics↗