PubMed Health⌕ Search

Biomedical subjects

H M Kopel

Publications and source records attributed to H M Kopel.

At least 19 recordsLinked to original sources

Pulpotomy reconsidered: application of an adhesive system to pulpotomized permanent primate pulps.

OBJECTIVE: This study was undertaken to compare the healing response of permanent primate pulps to pulpotomy procedures following hemorrhage control and adhesive hybridization to their response after conventional treatments. METHOD AND MATERIALS: Forty-two cavities were placed throughout the dentitions of 4 adult monkeys. In 24 teeth, following mechanical bur exposure and pulpotomy, hemorrhage was controlled with application of 3% sodium hypochlorite. The cavity was rinsed and the enamel-dentin-pulp surface was restored with an adhesive system for 6 and 7 months. Calcium hydroxide, formocresol, and resin-modified glass-ionomer cement were placed as conventional treatments in 18 teeth for 70 days and cavities were sealed with resin-modified glass-ionomer cement. Following perfusion fixation, tissues were demineralized, sectioned, stained, and histologically graded using defined criteria. RESULTS: Of 24 adhesive system pulps, 10 showed no or minimal pulpal response, 1 showed an acute response, 6 showed a chronic response, 2 showed a severe response, and 5 showed compartmentalized zones of localized necrosis. Only 8 adhesive system pulps showed stained bacteria associated with inflamed tissues. Thirteen adhesive system pulps showed dentin bridging directly at the adhesive system interface. Calcium hydroxide-treated specimens showed healing and dentin formation, while resin-modified glass-ionomer cement and formocresol treatments failed to result in any bridging. Apical tissues in all adhesive-treated specimens showed normal pulps and primary odontoblasts along their entire walls. CONCLUSION: Permanent pulps without periapical radiolucencies may survive pulpotomy, provided that hemorrhage is properly controlled and the pulp-restoration interface is hybridized to exclude all microleakage.

Animals↗

Shear bond strength of repaired glass ionomers.

This in vitro study investigated repairs to glass ionomer cements (GIC) with a new GIC layer added after different time intervals (15 minutes, 24 hours, 6 days) and after different types of surface treatments. The results indicated: 1) GIC can be repaired with a new GIC layer added on with specific types of surface treatment. The shear bond strength created at the interface attained no less than 65% of the value for unrepaired specimens; 2) The surface treatment that best enhances the bond was either 20 seconds of etching with phosphoric acid or roughening the surface followed by acid etching. The latter showed higher values but not at a statistically significant level; 3) Both Ketac-Fil and Fuji II provided high bond strengths when the repair occurred on a newly set surface (15 minutes); 4) When Ketac-Fil and Fuji II specimens were repaired at 24 hours, shear bond strength was lower compared to the repair bond strength at 15 minutes and demonstrated less cohesive ability; 5) When 6-day-old specimens were repaired, Fuji II provided higher bond strength values than Ketac-Fil.

Acid Etching, Dental↗

A dental library current awareness service.

A simple, manual current awareness service at the University of Southern California School of Dentistry, designed to provide the user with photocopied tables of contents from selected journals, is described. Other available current awareness and selective dissemination of information services are discussed, and a general comparison and cost analysis is made between the USC program and SDILINE. The service was evaluated by means of a questionnaire distributed to the 30 faculty participants. Results indicate that the service is of value in the teaching and research programs of the school, and has a high degree of user acceptance. Cost of the service is minimal considering the benefits to the faculty.

California↗