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Biomedical subjects

H E Goodis

Publications and source records attributed to H E Goodis.

36 records · Page 2Linked to original sources

Identification of the physical modification threshold of dentin induced by neodymium and holmium YAG lasers using scanning electron microscopy.

Laser application to dentin has been advocated to modify the dentin substrate for restorative procedures. We examined the minimum energy density required to physically modify the dentin surface using 1.06 microns and 1.32 microns Neodymium:Yttrium-Aluminum-Garnet (Nd:YAG) and 2.10 microns Holmium-YAG (Ho:YAG) lasers. Three millimeter thick dentin sections from the middle occlusal third of crowns of third molars were used. To determine the effect of surface preparation, the sections were ground to 240, 320, 400, 600 grit or polished to 0.5 micron. Smear layer was removed using 0.5 M EDTA for 2 minutes. Five single pulse repetitions at each laser parameter were performed. Power (W) and energy per pulse (mJ/p) were increased for each wavelength until a physical modification occurred. The energy density (J/cm2) was then held constant and the threshold was confirmed using 200, 320 and 550 microns diameter quartz contact probes. Scanning electron microscopy (SEM) was used to verify the physical modification of the dentin. The physical threshold remained constant for ground and polished surfaces. Similar surface modifications were found for the three wavelengths tested. The threshold modifications occurred at 207, 165, and 83 J/cm2 for the 1.06 microns, 1.32 microns and 2.10 microns lasers, respectively. For all emission wavelengths tested the physical threshold modification occurred at relatively low energy densities. These lasers show promise for surface modification of dentin.

Aluminum↗

Endodontic case selection: to treat or to refer.

Endodontic treatment in the United States is delivered primarily by general dentists. A dilemma often arises as to which cases should be treated and which should be referred for specialty care. The case selection system described here rates endodontic cases so that practitioners can assess those cases they are best qualified to treat.

Anesthesia, Dental↗

Application of a device to lower pulpal temperatures in vivo.

Heat generated by tooth reduction and restoration procedures may be harmful to the pulp. Water spray during those procedures aids in maintaining lowered pulpal temperatures. A device that lowers intrapulpal temperatures has been developed and tested in an animal model. The animal's pulp chamber temperatures were lowered to 15.5 degrees C and 12.4 degrees C and maintained at those temperatures for 20 min. Histological examinations disclosed no inflammatory reaction to the testing. Therefore, this device may aid in reducing the trauma of dental preparation procedures as well as other effects of lowered temperature on the biology of the dental pulp.

Animals↗

Use of the pulsed Nd:YAG laser for intraoral soft tissue surgery.

Application of a neodymium:yttrium-aluminum-garnet (Nd:YAG) laser was compared to conventional scalpel in dental soft tissue surgery. Two surgery sites on 29 patients were randomly selected and treated. An additional 41 patients were exclusively treated with the Nd:YAG laser. The surgical technique was then evaluated for periodontal pocket depths, degree of pain perceived, bleeding, inflammation, procedure time, and anesthesia. Surgical prognosis was made at the time of surgery and compared to actual healing 1 week and 1 month after surgery. No differences were observed between laser and scalpel surgery in terms of pocket depth reduction, postoperative pain, post-operative inflammation, and treatment time. However, operative and postoperative bleeding with laser surgery were significantly less than with conventional surgery. Anesthesia is required for scalpel surgery, the majority of laser-treated sites evoked minimal pain without anesthesia. These results indicate that the Nd:YAG laser can be used successfully for intraoral soft tissue applications are well tolerated without anesthesia and minimal bleeding compared to scalpel surgery.

Adult↗

The effects of storage after extraction of the teeth on human dentine permeability in vitro.

Freshly extracted third molars were stored for one week in one of four solutions: 70% ethanol, 10% formalin, distilled water with thymol and phosphate-buffered saline with thymol. Crown segments were prepared and initial permeability measurements taken. Each specimen was placed in a fresh preparation of its original solution, and permeability was measured over two periods: 1, 4, 6 and 8 days or 1, 8, 15 and 22 days. Ten crown segments were used for each solution for each time sequence. Permeabilities were lower for those specimens stored in ethanol and formalin than in water/thymol and saline/thymol, but most specimens showed increased permeability with time. Both storage solution and storage time had statistically significant effects (p less than 0.05), with significant differences between specimens stored in water/thymol and saline/thymol and those stored in ethanol and formalin. Thus, type of storage solution effects dentine permeability over time.

Analysis of Variance↗

Histologic evaluation of the pulpal response to temperature probe placement in the Macaca fascicularis monkey.

A method to measure intrapulpal temperatures during cavity preparation and restorative procedures has been developed. It involves placement of temperature probes to the dentinoenamel and dentinopulpal junctions. After placement of the probes, the pulps of the test teeth were examined histologically to determine whether their placement caused a pulpal response. The test teeth displayed no adverse response in the areas of the pulp opposite or adjacent to the position of the probes. Therefore the developed method of temperature probe placement to measure intrapulpal temperatures does not interfere with those measurements by adversely affecting the pulp tissues.

Animals↗

Evaporative water loss from human dentine in vitro.

The rate of spontaneous evaporation of water from dentine was measured in extracted human teeth in vitro. Spontaneous water loss was the same with or without a smear layer. When air was blown on the dentine, the rate of evaporation increased significantly. After removal of the smear layer, the air blast-induced evaporative loss was twice as great as before its removal. Thus, with a smear layer present, evaporation is the major route by which fluid is lost from dentine rather than by filtration of dentinal fluid. After smear layer removal, fluid filtration sometimes may exceed the spontaneous rate of fluid evaporation.

Body Water↗

Bacterial adherence and contamination during radiographic processing.

Oral fluids are potential contaminants of radiographic processors. This investigation measured bacterial contamination in a radiographic processing room during times of high and low clinical activity and processing effects on five types of microorganisms. Cultures in the clinical setting, during high and low activity, were taken by brain-heart infusion agar plates placed near automatic processors. Site samples were taken of entrance, developer, fixer, water, and exit surfaces. Measurements of processing effects were accomplished by intentional contamination of films run in series through an automatic processor. Site samples were again taken of the processor. In the clinical setting colony-forming units increased with activity. Radiographic processing after intentional contamination decreased colony-forming units on films, but they increased for all processing solutions. Bacteria on radiographic film survived processing. Although processing procedures significantly reduce the number of bacteria on films, the potential for contamination and cross-contamination remains.

Air Microbiology↗

Pulp chamber temperature changes with visible-light-cured composites in vitro.

Due to the low compliance nature of the dental pulp, it is vulnerable to cavity preparation and restoration procedures. The vulnerability may be due to temperature increases within the pulp tissue generated by those procedures. Placement of composites includes the use of visible-light-cure lamps which emit heat and cause a temperature increase in the pulp. This study measured the temperature increase occurring in the pulp chamber with the placement of a two-surface posterior composite using six visible-light-cure lamps. The data indicate that the lamps vary in the amount of temperature increase generated from one to another; that the greater portion of the temperature increase occurred during the placement of the first layer of composite; and that one lamp caused significantly lower temperature increases.

Composite Resins↗

Endodontic considerations when fabricating overdentures.

Successful use of an overdentures prosthesis depends on the successful completion and maintenance of endodontically-treated teeth. The process of completion and maintenance of teeth so treated in elderly individuals is difficult and less predictable. The purpose of this paper is to discuss treatment considerations to enhance success when treating elderly candidates for endodontic overdenture abutment retention.

Aged↗

Evaluation of temperature rise on the outer surface of teeth during root canal obturation techniques.

The heat generated at the apical 2 mm of the outer root surface of extracted human canine teeth during three obturation procedures was measured. The rise in temperature was found to be less when a sealer was used in all obturation techniques. Temperatures as high as 44.02 degrees C were recorded with warm gutta-percha with no sealer, and the lowest temperature rise occurred with a thermoplasticized gutta-percha technique with a sealer. The thickness of the remaining dentin and cementum after cleaning and shaping were found to have no effect in reducing temperature rise. The results of this investigation indicated that temperature rise on the outer surface of the root as a result of heat-generating obturation procedures is negligible and will not have an effect on the supporting attachment apparatus.

Bismuth↗

Measurement of temperature generated by visible-light-cure lamps in an in vitro model.

The dental pulp is vulnerable to cavity preparation and restoration procedures. This vulnerability may be a result of the temperature rise generated by those procedures. When visible-light-cure lamps are used to place composite restorations, they cause the temperature in the pulp to rise. This study measured the temperature rise recorded when six visible-light-cure lamps were tested for 20- and 60-second exposure times. They were also tested in conjunction with an air current passed along the face of the lens in order to lower the temperature. Analysis of the data indicates that the lamps do cause a temperature rise within the pulp chamber--a higher rise the longer the lamp is used. Dentin thickness is important, and air lowers the temperature generated.

Dental Pulp↗

Temperature gradients at two locations within the tooth during cavity preparation in vitro.

An improved method has been developed to measure temperature at both the DEJ and the PDJ during cavity preparation. This method allows a more realistic determination of the effects on the pulp tissue of various tooth reduction procedures. In future studies, the same method could also be used to determine pulpal effects from various restorative materials.

Body Temperature↗