Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Tooth Preparation”

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 469 records · Page 26Linked to original sources

Clinical evaluation of electronic dental anesthesia for various procedures in pediatric dentistry.

Electronic dental anesthesia (EDA) is a newer technique for achieving regional anesthesia by the application of transcutaneous electrical nerve stimulation (TENS). The present study intended to be an initial investigation of the attitudes of dentists and patients towards a relatively newly introduced EDA system. The purpose of the study was to evaluate the effectiveness of EDA system, a unit of TENS, in the management of pain during treatment procedures such as minor extractions, restorations (tooth preparations), and pulp therapy, in children. Overall, forty children between the age groups of 5 to 12 years were selected for three different clinical procedures. The response of the patients as well as the opinion of both, the clinician and the patient regarding perception of pain and comfort on administration I effectiveness of electronic anesthesia were recorded and analyzed. Significantly favorable results to the use of EDA were obtained, which indicate that EDA, besides offering safety and psychological advantages, may also be a promising alternative to the conventional methods of local anesthesia.

Anesthesia, Dental↗

A temporary space maintainer using acrylic resin teeth and a composite resin.

A one-session technique for preparing a temporary space maintainer has been described. The technique consists of attaching an acrylic resin pontic to etched surfaces of natural adjacent teeth by means of a composite resin. The main advantages of this technique are elimination of premature tooth preparation, good esthetics, fair strength, low cost, and rapid completion of the restoration without the need of a dental laboratory.

Acid Etching, Dental↗

Impression techniques for preparations with shoulders.

An impression technique useful for both individual or multiple preparations with shoulders is described. This method reproduces the entire maxillary arch in one impression, which facilitates development of satisfactory occlusion for the patient. In addition, an impression technique that simultaneously reproduces the gingival margins of tooth preparations and the edentulous ridges is described. A master cast of the entire maxillary arch can be obtained in one appointment.

Dental Cavity Preparation↗

The captive screw retained sectional denture.

Sectional dentures, where retention is gained, not by flexible metal arms engaging "desirable" undercuts, have occasionally been described in the dental literature. The captive screw retained sectional denture described here is an effective replacement for one or two missing teeth in selected patients. It consists of separate labial and lingual sections, which, when assembled, provide an aesthetic appearance, functional occlusion and excellent retention, with a minimum of abutment tooth preparation and at low cost. The two sections are connected by a captive screw, which allows the sections to be separated for denture insertion, but which is tightened to join the two sections. Portions of each section then engage tooth undercuts to provide retention. The screw is loosened and tightened by means of a torque-limiting screwdriver. These dentures have a high level of patient acceptability, and do not appear to promote dental caries or gingival irritation.

Acrylic Resins↗

Microleakage of different cementation techniques in Class V ceramic inlays.

Microleakage between the restorative materials and the cavity walls of teeth remains a problem. The purpose of this study was to evaluate the microleakage around Class V ceramic inlay restoration using three different cementation techniques. Class V preparations were made on the buccal surfaces of 45 freshly extracted premolar teeth. The teeth were randomly divided into three groups of 15. In the first group, dentine bonding agent (DBA) (Clearfil Liner Bond 2V) was applied immediately after the tooth preparation (D-DBA). In the second group, DBA was applied to the prepared cavities while luting ceramic inlays (I-DBA). In the third group, DBA was not applied at either stage (No-DBA). Impressions were made and ceramic inlays (Ceramco II) fabricated and cemented in the Class V cavities. The restorations were stored in water at room temperature for 24 h. All restorations were thermocycled and then subjected to a dye penetration test. After sectioning, leakage at cavity/restoration interface was scored. Statistical analysis was performed using Kruskal-Wallis, Mann-Whitney U and Wilcoxon's signed tests. Results showed no significant difference among three different cementation techniques (P > 0.05). Microleakage at the dentine margins was greater than that at the enamel margins (P < 0.05).

Bicuspid↗

A castable glass-ceramic pontic for the partial veneer fixed partial denture.

A technique is presented for fabricating an esthetic, cast glass-ceramic pontic for the partial veneer-retained fixed partial denture. After the framework is waxed to full contour, the pontic is sectioned from the remainder of the wax pattern and cut back on the occlusal, proximal, and lingual aspects. A cast glass-ceramic pontic is then fabricated. The pontic is returned to the master cast to complete the wax pattern for the type IV gold fixed partial denture superstructure. The pontic is fitted and then luted to the gold framework using an adhesive resin cement. The lost wax technique ensures a pontic with precise, anatomic form that restores proper contours and relationships. Additionally, this esthetic and durable pontic for partial veneer fixed partial dentures encourages conservative tooth preparation and promotes restorative materials that minimize wear of the opposing dentition.

Dental Casting Technique↗

Fabrication of an amalgam core using a customized acrylic resin shell.

This article describes a build-up technique that uses a customized acrylic resin shell for restoring endodontically treated molars that are involved in three-unit fixed partial denture design. The shell confines the amalgam without impinging on the periodontium to ensure a proper core foundation, an ideal tooth preparation, and a more predictable final restoration.

Acrylic Resins↗

Clinical management of abutments with intracoronal attachments.

A method of preparing teeth to accommodate intracoronal attachments is presented. The resulting prosthesis incorporates a fixed partial denture with physiologically contoured crowns and a removable partial denture with a precisely determined path of insertion. These techniques stress the importance of surveyed diagnostic casts and coordinated tooth preparations for artificial crowns to facilitate treating complex cases.

Crowns↗

Conservative indirect restorations for posterior teeth. Cast versus bonded ceramic.

The practitioner today has a number of alternative restorative modalities from which to chose when faced with the necessity of restoring posterior teeth. The primary options with extensively broken down posterior teeth are cast gold and bonded ceramic inlays, onlays, and partial veneer restorations. The dentist and informed patient should make the choice of which modality is appropriate based on a number of criteria. Certainly, based on the criteria of basic physical properties, potential for marginal integrity and stability of that integrity, cast gold is the material of choice. In terms of conservation of tooth structure and systemic biocompatibility, both restoration types are excellent. With regard to effects on long-term pulpal health, much remains unknown with many of the materials used with bonded restorations at the present time. Conservative cast gold restorations have proved to be very successful in this regard over the long term. The potential for tooth strengthening with bonded restorations is certainly an exciting, but as yet, unproven, clinical reality. Thus, until those clinical data are available, the most predictable means of restoration of extensively broken down posterior teeth is with partial-coverage cast gold, protecting cusps at risk as required (Fig. 9). As mentioned previously, cast gold inlays are also a very conservative and predictable restoration (Fig. 10). Both cast gold and bonded ceramic restorations are technically demanding, but the details required to produce excellent gold castings are well defined, and can be learned readily. Much remains to be learned regarding the materials and the techniques used to fabricate bonded ceramic restorations. Priority issues would seem to be reaching a consensus regarding the details of tooth preparation and the development of improved luting resins with improved wear resistance. Simplified techniques to improve the quality of the fit of these types of restoration also are of paramount importance. The requirement for an esthetic, or, more properly, use of a tooth-colored restoration in a posterior tooth, should be evaluated carefully for each individual restoration. Often it is possible to restore a tooth with cast gold with minimal or no display of metal. The patient will then receive the long-term benefit of cast gold and not compromise on esthetics. It is our obligation as diagnosticians to educate our patients so that they are in a position to choose, when indicated, this most cost effective of restorative options.

Bicuspid↗

Selection of luting agents, part 1.

The clinical success of indirect restorations is dependent on multiple factors that include preparation design, mechanical forces, restorative material selection, oral hygiene, and selection of a proper luting agent. The selection of the luting agent is dependent on the specific clinical situation, the type of restoration utilized and the physical, biologic, and handling properties of the luting agent. Although it is important to choose the best luting agent for each clinical situation, far greater variations in physical properties result from improper manipulation of a given luting agent than exist between different types of cements. One study listed loss of retention as the third-leading cause of prosthetic replacement, with failure occurring after only 5.8 years in service. The primary purpose of the luting procedure is to achieve a durable bond and to have good marginal adaptation of the luting material to the restoration and tooth. Conventional cements have always relied upon retention and resistance forms in tooth preparations; Adhesive-type luting agents offer the clinician an added advantage by bonding to the tooth structure. Three main types of conventional "cements" are commonly used, zinc phosphate and the polyelectrolyte cements polycarboxylate, and glass ionomer cements. Because of its long history of successful clinical use, zinc phosphate is considered the gold standard against which all other luting agents are compared because of its long clinical history of successful use. Currently, two additional types of luting agents have gained considerable popularity. These include the resin-modified glass ionomer cements and resin cements. The resin cement category includes light-cured, dual-cured and chemically cured agents. The purpose of this article is to discuss the ideal attributes of a luting agent and make clinical recommendations for their use.

Adhesiveness↗

Anterior composite resins and veneers: treatment planning, preparation, and finishing.

Today's esthetic dental restorations are limited only by the practitioner's artistic ability and imagination. Less invasive procedures such as bleaching, bonding, and veneer placement are useful adjuncts and economic alternatives to more extensive procedures such as crown placement, orthodontic treatment, and orthognathic surgery. In addition to a discussion of the considerations when planning esthetic restorative treatment, technique and material selection, tooth preparation, material placement, and finishing are presented.

Composite Resins↗

Advantages and limitations in the use of porcelain veneer restorations.

Porcelain veneer restorations including preparations, impression materials, cast materials, refractory casts, handling of porcelain, the try-in, and the final luting are discussed. Techniques are described to increase marginal accuracy, establish predictable natural polychromatic color within the porcelain, establish good contours and surface textures, and shorten final placement time. Tooth preparation is routinely recommended, as is the combination of epoxy dies, refractory casts, and anatomic buildup techniques. Emphasis is placed on a close working relationship and communication among the dentist, dental technician, and patient.

Dental Bonding↗

The extracted tooth pontic--provisional replacement during bone graft and implant healing.

When tooth extraction is required, a provisional restoration may be utilized as an interim prosthesis during bone graft and implant healing. The selection of provisional replacement of the anterior teeth following extraction may have a direct influence on the success of the definitive tooth replacement. This article describes a technique for using the extracted tooth or a denture tooth as an interim prosthesis during bone graft and implant healing. This method of provisionalization offers several advantages, including no adjacent tooth preparation, natural appearance, and retention of the papillae.

Adult↗

Osseointegrated dental implants as alternative therapy to bridge construction or orthodontics in young patients: seven years of clinical experience.

Young patients often require fixed bridgework or orthodontic therapy in cases of traumatic tooth loss or congenitally missing teeth. Dental implants represent an alternative to the more conventional treatment methods. We report positive experience over a seven-year period with 42 titanium Ha-Ti implants in 34 patients aged 9 to 18 years. Fourteen implants were placed into prepared tooth sockets immediately after traumatic luxation of anterior teeth in 12 patients aged 9 to 18 years (median age 16). An additional 22 patients (median age 15.5, range 11 to 18) also received implants (N = 28), but these were placed only after healing of extraction sites, or as substitutes for congenitally missing teeth. Implants remained in situ for an average of 7.7 months before loading. During the healing period, three implants were lost due to additional trauma and one became infected. The 38 remaining implants osseointegrated and since have been loaded for five to 79 months in successful function. There was no difference between immediate and delayed implants in clinical success. These experiences demonstrate that appropriate, versatile, osseointegrated implants can provide a successful treatment method for young patients, without damaging adjacent teeth.

Adolescent↗

[Bond strength of newer dentine adhesive systems].

Introduction of new dentine bonding agents in a practice of dentistry, variety of results on their crucial characteristics in foreign literature and lack of information in our literature led to a necessity to conduct own scientific research on dentine adhesives in order to facilitate the choice of available products. The purpose of this study was to estimate the adhesive strength of different dentine bonding agents to a treated human dentine immediately after light curing of a compatible composite material. Shear and tensile bond strength of Tripton, Gluma, Scotchbond-2 and Dentin Protector was measured. Control material was glass-ionomer base-cement Vitrabond. Human extracted premolars from both jaws were prepared to a flat surface from either occlusal or buccal aspect, and materials were applied, respectively. The results showed: a) values of shear bond strength ranged from 2.01-3.92 MPa with no statistical differences between tested systems; b) tensile bond strength varied from 13.7-26-84 MPa; the highest value showed Scotchbond-2, following by Gluma, but significantly lower values showed Tripton and Dentin Protector; c) the aspect of prepared tooth crown had no significant effect on bond strength with the exception of shear bond strength for Gluma-system, when applied on buccal surface showed significantly higher values than applied occlusally; d) dentine-bonding agents which dissolve smear layer with acid components and remove it from prepared dentine surface showed stronger adhesion than agents which leave this debris on a dentin surface.

Adhesiveness↗

Marginal contraction gap formation of light-cured glass ionomers.

The capability of dental restorative materials to effectively seal the margins of tooth preparations is critical. The adhesive properties of the conventional chemically-cured glass ionomer cements have provided a potential for sealing cavity margins, but recently light-cured versions of the glass ionomer cements have been introduced. This study examined the adhesion to dentin of two new light-cured glass ionomer cement restorative materials, Fuji II LC and VariGlass VLC. Gap formation at the tooth/restoration interface in dentin cavities was recorded as a measure of the sealing ability of the materials. Cylindrical cavities were prepared in dentin of extracted teeth and randomly assigned to three equal groups. The control group of specimens was restored with a chemically-cured glass ionomer, Fuji Cap II, while the experimental groups were restored with one of the two light-cured materials. All specimens were subjected to thermocycling. The sealing of each material to dentin was evaluated by measuring the gap between the restoration and tooth structure. The control group registered mean gaps of 26 microns while the experimental groups registered mean gaps of 8 microns (Fuji II LC) and 10 microns (VariGlass VLC). The light-cured materials displayed substantially better adaptation to the cavity preparations than the conventional materials (P < 0.005), with no significant difference between the two experimental groups.

Acrylic Resins↗

Air abrasion: an old technology reborn.

Recently, air abrasion has experienced a rebirth in restorative dentistry. Originally developed in the late 1940s, the principle of air abrasion is the imparting of kinetic energy to tiny aluminum oxide particles that are projected by a stream of compressed air or gas and expelled from a small nozzle. The force generated by the relatively hard particles striking a relatively hard surface is sufficient to cut into that surface. In the last decade, more than a dozen models of air abrasion units have been introduced into the marketplace and more are on the way. Manufacturers have developed air abrasion instruments that offer a broad range of features, from small table-top units to self-contained systems with compressors, vacuums, and curing lights. The costs range dramatically--from $1,000 to $20,000 or more--depending on the complexity of the features and attachments. Manufacturers make a variety of claims to support the value of this technology to the practicing dentist. A term often used to describe one of the benefits of air abrasion is microdentistry. The claim is that smaller, less invasive tooth preparations may be accomplished using air abrasion than with a traditional bur and air turbine. This may be true in some instances, but it would certainly depend on the operator's experience and ability to visually discern fine detail. Other claims about air abrasion are that it can be used to cut into tooth structure without local anesthesia and that it should be used on all stained grooves or fissures to determine if incipient carious lesions are present. Despite the limited number of clinical studies, the popularity of air abrasion continues to grow. To gain additional insight about these claims and to see what might be on the horizon for this technology, I spoke with three highly respected educators who are recognized for their expertise in air abrasion. What they said should give the reader a better understanding of how air abrasion might augment restorative dentistry procedures and techniques.

Air Abrasion, Dental↗

Microleakage of class V glass ionomer restorations after conventional and Er:YAG laser preparation.

OBJECTIVE: The aim of this study was to investigate the microleakage in class V cavities following Er:YAG laser or conventional preparation restored with two conventional glass ionomer cements (cGIC) and to evaluate the effect of conditioning on laser-prepared surfaces. BACKGROUND DATA: Information on this topic related to cGIC is scarce. METHODS: Sixty class V cavities were assigned to six groups: I and IV were Er:YAG-lased, II and V Er:YAG-lased and conditioned, and III and VI conventionally prepared and conditioned. Groups I, II, and III, were restored with Ketac Fil Plus Applicap; groups IV, V, and VI were restored with Fuji IX GP Capsule. Then, teeth were stored in distilled water (37 degrees C, 24 h), thermal cycled 1500 times (5-55 degrees C), placed in a 2% aqueous solution of methylene blue (37 degrees C, 24 h), embedded in acrylic resin, sectioned oro-facially, and analyzed for leakage. RESULTS: Statistically significant differences between occlusal and cervical regions were observed (p < 0.05). Group III showed significantly more microleakage at the occlusal margin compared to group II (p = 0.022). Group V showed significantly more microleakage at the gingival margin than group VI (p = 0.022). Leakage on the occlusal margins was significantly higher in group III than in group VI (p = 0.038). Scanning electron microscopy indicated that conditioning of laser-prepared dentin with Ketac conditioner partially closed the tubules' orifices, whereas the use of GC conditioner completely obliterated the tubules. CONCLUSION: The application of Ketac Fil Plus to laser-prepared enamel and dentin resulted in a better and more reproducible seal compared to conventionally prepared tooth surfaces. When using the more viscous Fuji IX application, Er:YAG lasing did not improve marginal adaptation.

Dental Cavity Preparation↗