PubMed HealthSearch

PubMed · 5318124

Surgery for prosthetics.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

F Coffin. 1964. Surgery for prosthetics.. https://doi.org/10.1016/s0007-117x(64)80002-0

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Chairside options for the treatment of complete denture problems associated with the atrophic (flat) mandibular ridge.

This article outlines a number of simple clinical steps which should enable general dental practitioners to diagnose and treat the majority of complete denture problems in patients with atrophic mandibular ridges. The guiding principle is the reduction of forces transmitted to the denture-bearing area via the lower denture. Methods of optimising the size of the denture bases and/or the occlusal tables are discussed and illustrated.

Alveolar Process

Effects of low-energy laser irradiation on bone remodeling during experimental tooth movement in rats.

BACKGROUND AND OBJECTIVE: Low-energy laser irradiation has many anabolic effects such as the acceleration of bone formation. However, its effects on tooth movement, performed by bone resorption and formation, have not been well characterized. STUDY DESIGN/MATERIALS AND METHODS: A total of 10 g of orthodontic force was applied to rat molars to cause experimental tooth movement. A Ga-Al-As diode laser was used to irradiate the area around the moved tooth, and after 12 days, the amount of tooth movement was measured. Calcein was injected subcutaneously to label the newly formed alveolar bone for quantitative analysis. Immunohistochemical staining of proliferating cell nuclear antigen was performed to evaluate cellular proliferation. TRAPase staining was also performed to facilitate the identification of osteoclasts. RESULTS: In the laser irradiation group, the amount of tooth movement was significantly greater (1. 3-fold) than that of the nonirradiation group in the end of the experiment. The amount of bone formation and rate of cellular proliferation in the tension side and the number of osteoclasts in the pressure side were all significantly increased in the irradiation group when compared with the nonirradiation group (P < 0. 01). CONCLUSION: These findings suggest that low-energy laser irradiation can accelerate tooth movement accompanied with alveolar bone remodeling.

Alveolar Process

A strain gauge and photoelastic analysis of in vivo strain and in vitro stress distribution in human dental supporting structures.

Strain gauge and photoelastic experiments have been workhorses of experimental stress analysis for over 50 years. In this study, both were used to analyse the nature of stress distribution from the tooth root surface to the supporting alveolar bone. Such studies help in understanding the behaviour of dental supporting structures under physiological function. In the strain gauge experiment, the mechanical strains were measured on the supporting bone surface and the root surface of the tooth under applied bite force. It was found that higher strains were distributed along the cervical region of the supporting bone and the root surface. The photoelastic study was also done to evaluate the stress distribution pattern from the root surface to the supporting bone under clinical conditions. The stress patterns were found to decrease from the cervical to the apical region of the root surface. These studies highlight the role of the periodontium in stress distribution and bone remodelling.

Alveolar Process