Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Tooth Migration”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 379 records · Page 21Linked to original sources

Orthodontic movement into bone defects augmented with bovine bone mineral and fibrin sealer: a reentry case report.

Periodontal disease can lead to migration of anterior teeth with the presence of infrabony defects. This creates the opportunity for treating such patients with a combined orthodontic-periodontic treatment. In the presented clinical case, an adult periodontal patient with extrusion of the maxillary central incisors and an infrabony defect on their lingual aspects was treated. During the surgical procedure, the bone defects were augmented with a combination of porous bovine bone mineral (Bio-Oss) and a fibrin-fibronectin sealing system (Tissucol). Ten days after surgery, the active orthodontic treatment started, and the teeth were intruded and realigned, moving the roots into the defects. After 6 months, the orthodontic appliances were removed and the teeth were retained by means of a resin-bonded splint. At this time, reduction in probing pocket depth and gingival recession was detected. Twelve months after the initial surgery, a reentry procedure was performed, showing complete filling of the predisposing defects with the presence of bone-like hard tissue. These clinical results suggest that teeth can be successfully moved and intruded into bone defects previously augmented with bovine bone substitute and fibrin glue. During the orthodontic treatment, this combined augmentation material was able to be replaced by bone-like hard tissue. At the end of the therapy, an improvement in esthetics and periodontal health status was registered.

Alveolar Bone Loss↗

Scanning electron microscopic observations of tooth germ in tissue culture with special reference to the migration of epithelial cells.

Tooth germ derived from the mandible of newborn mice was used in this study. The enamel organs were dissected and attached directly to coverslips without using the plasma clot. By this method it was possible, for the first time as far as is known, to attain preparations in which the major part of the outgrowth from the explant consisted purely of epithelial-like cells which probably were aneloblasts. Abundant desmosomes and tonofilaments were confirmed by transmission electron microscopy. Under the scanning electron microscope this outgrowth of epithelial cells revealed characteristic intercellular connections which were divided into four types. 1)In the part nearest to the explant, cell boundaries were indicated with a large number of short microvilli. 2)In the zone beyond the first type, the intercellular connection was represented by bridge-like processes firmly combined with each other. 3)In a still further zone, the tips of bridge-like processes were free from the cell connection and extended to the adjacent cells with the advance of cell migration. 4)In the most peripheral part of the explant, the cytoplasmic processes were capable of further expansion. These cells were soon separated from the adjacent cells to migrate as free cells.

Animals↗

The adaptive value of dental crowding: a consideration of the biologic basis of malocclusion.

Malocclusion, an ambiguous concept that refers to structural disharmony of the teeth and jaws, can be defined only in reference to normal occlusion. If normal occlusion is synonymous only with ideal occlusion, then normal occlusion becomes a rare occurrence. A biologically valid concept of normal occlusion includes a range of variation in the relevant occlusal variables that is compatible with health and unimpaired function. The difficulty in defining malocclusion is the determination of the point at which normal variation becomes abnormal. A clearer concept of malocclusion is obtained if the occlusal variables that it comprises are considered. Dental crowding is endemic among technologically advanced populations and uncommon in primitive groups. The significant elements in the development of most dental crowding are mesial migration and the lack of interproximal attrition. Mesial migration of the posterior teeth provides the functional replacement for the tooth surface lost to attrition because of the rigors of a primitive diet. In modern man there is little attrition of the teeth because of a soft, processed diet; this can result in dental crowding and impaction of the third molars. It is postulated that the tooth-jaw size discrepancy apparent in modern man as dental crowding is, in primitive man, a crucial biologic adaptation imposed by the selection pressures of a demanding diet that maintains sufficient chewing surface area for long-term survival. Selection pressures for teeth large enough to withstand a rigorous diet have been relaxed only recently in advanced populations, and the slow pace of evolutionary change has not yet brought the teeth and jaws into harmonious relationship.

Adaptation, Biological↗

Aneurysmal bone cysts of the maxilla: a clinicopathologic review.

PURPOSE: This study evaluated the significant differences in clinicopathologic features of aneurysmal bone cyst in the maxilla and mandible. MATERIALS AND METHODS: A search of the literature showed 30 recorded maxillary cases, and these together with one previously unrecorded case formed the basis of the study. RESULTS: There were no differences in the age and sex incidence. Only two patients complained of pain, and no patient complained of tenderness. No patient gave a history of trauma. Swelling was present in virtually every patient. In seven cases, there was tooth mobility or migration of teeth. Two patients complained of paresthesia. Four patients presented with proptosis, two of whom complained of diplopia. The radiographic appearance of the aneurysmal bone cyst is suggestive but not diagnostic. CONCLUSION: Although these differences do not enable the clinician to make a definitive diagnosis before biopsy, they have important implications for management.

Adolescent↗

Pathways and fate of migratory cells during late tooth organogenesis.

Tissue recombination experiments and cell lineage analyses of the developing neural crest have documented the role and central pathways of migratory cells during early craniofacial development. In the present study, regional pathways of cells during late peripheral morphogenesis were investigated using the crown stage tooth organ as a model. Homing targets during tooth integument formation were analyzed to understand the fate of migratory cells involved in late tooth organogenesis and the developmental origin of periodontal tissues. After surgical removal of the oral mucosa, the oral aspect of the dental follicle of lower first mouse molar teeth was labeled using a fluorescent contact dye. Following sacrifice after 0, 2, 4, and 6 days, labeled cells were detected in the dental follicle, in the alveolar bone, and in the periodontal ligament adjacent to the molar root. The distribution of labeled tissues was reconstructed three-dimensionally via confocal microscopy. Using a tooth molar organ culture system, labeled cells within the dental follicle were documented traveling in the apical direction. Our results indicated that cell migration during tooth organogenesis was following specific pathways and that cells within the circumference of the dental follicle were migrating in the apical direction. We speculate that migratory cells passing through the dental follicle connective tissue may contribute to the formation of the periodontium. The present documentation visualizes pathways, role, and dynamics of extensive cell movements during late tooth organogenesis.

Alveolar Process↗