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Biomedical subjects

C L Davidson

Publications and source records attributed to C L Davidson.

At least 73 records · Page 4Linked to original sources

Dual cure luting composites--Part II: Clinically related properties.

Thirteen dual cure luting composites were compared in function of film thickness, consistency, and working time by using the American National Standard/American Dental Association (ANS/ADA) specifications for zinc phosphate cement and direct filling resins. The effect of temperature and setting reaction on the film thickness was also evaluated for some representative products. All three clinically related properties varied widely among the products investigated. A strong linear correlation was found between film thickness and consistency. This relation is supported by the temperature dependence of film thickness of dual cure luting composites. Cooling of the material increased the consistency, resulting in a larger film thickness, while heating reduced the film thickness because of the lower consistency. However, one product with a rather short working time at room temperature occasionally exhibited a dramatically enlarged film thickness after heating, probably caused by accelerated chemical polymerization. No correlation emerged between film thickness and maximum filler size or between consistency and filler weight content. Maximum filler size and filler weight content had been measured previously in Part I of this study. Scanning electron microscope (SEM) analysis of the cured film thickness samples revealed that the largest filler particles had been crushed under the heavy load pressure during film thickness measurement. The lack of correlation between consistency and filler weight content can be explained by the multifactorial determination of the consistency. It is concluded that the great diversity in the currently available luting composites makes clear specifications with regard to the optimum composition of luting composites urgently needed. Furthermore, more adequate methods for testing the film thickness of luting composites are also required.

American Dental Association↗

[Amalgam. XIX. Final: a reply to opponents and some guidelines].

Opponents of the use of dental amalgam fillings often hold specific views on health and illness. Their doubts about the safety of amalgam are based upon unproven theories and results obtained with invalidated diagnostic methods and case-histories. It is contended here that case-histories cannot be accepted as scientific evidence and do not warrant over-simplified and idle, yet threatening statements. Almost superfluously, the improbability (not identical to impossibility!) of toxic symptoms and the rare manifestation of allergic reactions are summarized, prior to the description of some measures to diminish the release of mercury from amalgam restorations. Guidelines are presented how to deal with patients with health complaints attributed by them to amalgam.

Anecdotes as Topic↗

Effect of occlusal load cycling on the marginal integrity of adhesive Class V restorations.

The objective of this study was to evaluate the gingival wall marginal integrity of adhesive Class V restorations subjected to occlusal load cycling. Extracted lower first and second molar teeth were used. For each tooth, a Class V cavity was prepared in the buccal or lingual surface with the gingival margin in the cementum. The cavities were restored with eight different adhesive systems: (1) Ketac-Fil; (2) Fuji II LC; (3) Ketac-Bond/Pertac; (4) Photac-Bond/Pertac; (5) Scotchbond 2/P50; (6) Scotchbond Multi-Purpose/P50; (7) Clearfil Liner Bond/Clearfil Photo Posterior; and (8) OptiBond/Herculite XR. For each material-combination, three test procedures were carried out: no loading (control), loading at 125 N and at 250 N. Six specimens were prepared for each procedure. The samples were loaded for 5000 cycles in a dye solution and kept in the dye for 24 hours after loading. Control samples were stored in the dye for the same period. All teeth were sectioned and dye penetration at the gingival wall was scored from 0 to 4. Under control condition, only groups 2, 6, 7 and 8 showed perfect marginal integrity. After loading at 125 N, groups 1, 3 and 5 showed significant increase in leakage (P < 0.05). Increasing the load to 250 N resulted in significant deterioration in the marginal adaptation of all test groups, except 6 and 7. This study indicates that the marginal integrity of occlusally stressed adhesive Class V restorations can only be preserved by a few products.

Bisphenol A-Glycidyl Methacrylate↗

Dermatomyositis occurring during psoralen A (PUVA) therapy.

Dermatomyositis (DM) developed in a 35-year-old woman after 2 months of psoralen ultraviolet-A (PUVA) therapy for presumed psoriasis. Her disease was characterized by symmetrical proximal muscle weakness and cutaneous lesions compatible with DM. In addition, laboratory abnormalities included a positive antinuclear antibody, and elevated levels of creatine kinase and aldolase. This is the first report of DM developing during PUVA therapy.

Adult↗

Expression of a human homeobox-containing gene is regulated by 1,25(OH)2D3 in bone cells.

The murine msh-like homeobox-containing gene Msx-2 (Hox-8) has a multiphasic pattern of embryonic expression which includes the developing skull bones and teeth. In order to determine whether this gene might be expressed in adult mineralizing tissues, an adult human bone cell (osteoblastic) cDNA library was screened with a murine Msx-2 probe. One of the positive clones obtained was sequenced in full and shown to be highly homologous to the murine Msx-2 gene. Expression of this gene, MSX2, was studied in human bone-derived cells, where a low level of expression was detected which was greatly induced by stimulation with 1,25(OH)2D3. Little or no increase in expression was detected with retinoic acid or TPA stimulation. In cultures of skin fibroblasts no stimulation of expression with 1,25(OH)2D3 was detected. MSX2 is the first homeobox-containing gene to be shown to be regulated by 1,25(OH)2D3 and to be expressed in adult human bone cells. These results suggest a possible role for MSX2 in bone cell differentiation and/or calcium homeostasis.

Amino Acid Sequence↗

Setting stresses in composites for two different curing modes.

As a continuation of a study into the development of the polymerization shrinkage stress of chemically initiated composites (CC), the development of the polymerization shrinkage stress of light-initiated composites (LC) in relation to the configuration-factor was determined. During setting, the LC composites generated a higher polymerization shrinkage stress, developed higher cohesive strength to resist this stress and showed less flow than their CC analogues. Trying to find a comprehensive explanation for the differences in behavior of stress development in LC and CC composites, the effect of mixing-in of porosity was also investigated on LC composites. Mixing-in of porosity slowed down and decreased the shrinkage stress development. This was attributed to either oxygen inhibition due to admixed air or to an increase of free surface from the presence of pores within the bulk of the composite.

Composite Resins↗

True linear polymerization shrinkage of unfilled resins and composites determined with a linometer.

A device, which was given the name "linometer", has been developed for measuring linear polymerization shrinkage of both unfilled resins and composites. The results were in agreement with those obtained with the mercury dilatometer. The present method is simple, fast, insensitive to temperature fluctuations, is operational at any temperature and, if desired, samples can be maintained in a 100% relative humidity environment. The linometer offers an easy means for routine polymerization shrinkage determinations and therefore may be useful in evaluating new monomer systems for dental composites. The linear polymerization shrinkage for several unfilled resins and composites was measured with this device.

Acrylic Resins↗

Derangement of composite filler distribution inside syringe-type delivery systems.

Used and almost emptied syringes of two brands of composites contained material close to the pestle-head that appeared to be more granular and dry, as compared to the composite obtained from unused syringes. The present results suggest that a derangement of filler and matrix phases occurred inside the used syringes when compared to unused controls. Stress imposed on the composite material inside the unused syringes resulted in a comparable derangement of filler and matrix phases. Although this derangement was limited, the effect could contribute to intra- and interlaboratory scattering of data.

Analysis of Variance↗

Polymerization contraction and conversion of light-curing BisGMA-based methacrylate resins.

The aim of this study was to investigate the polymerization contraction and the conversion of light-curing methacrylate resins based on bisphenol-A bis(2-hydroxypropyl)methacrylate (BisGMA) diluted with triethylene glycol dimethyacrylate (TEGDMA), methyl methacrylate (MMA), hydroxypropyl methacrylate (HPMA) or (+/-)-2-ethylhexyl methacrylate (EHMA). The contraction measurements were carried out with a linometer, a simple device to determine true linear polymerization contraction of liquid monomers at ambient temperature. The contraction increased with the amount of diluting monomer. The estimated conversion of the BisGMA-TEGDMA, calculated using the contraction, is consistent with literature values. The BisGMA-HPMA mixtures showed high conversions at moderate contraction.

Composite Resins↗

Comparison of the marginal integrity of in vivo and in vitro Class II composite restorations.

In the present study Class II resin composite restorations were placed under in vivo and in vitro conditions. For the in vivo part. Class II preparations were cut in teeth destined for extraction for orthodontic reasons. The preparations were completed with the gingival margin in enamel and restored using six different combinations restorative techniques and materials. The teeth were extracted after 4-6 weeks. In the in vitro part similar preparations were cut in extracted teeth and restored using the selected material-technique combinations. The in vitro specimens were thermocycled and mechanically loaded at 125 N for a total of 4000 cycles. All in vivo and in vitro samples were stored in a dye solution, sectioned and inspected for microleakage. Microleakage was observed in all the in vivo specimens with only 60% of the in vitro specimens demonstrating microleakage. These results indicate the limitation of laboratory investigations in predicting the microleakage performance of Class II composite resin restorations under clinical circumstances.

Acid Etching, Dental↗

Comparison of the marginal and axial wall integrity of in vivo and in vitro made adhesive class V restorations.

For several different procedures and material combinations adhesive Class V composite restorations were made under clinical and under laboratory conditions. Marginal discrepancy and gap formation at the floor of the cavity was recorded by way of SEM on replicas. Only weak correlation could be demonstrated between results obtained from in vivo and in vitro placed restorations. In general the hydrophobic resinous bonding systems performed better under laboratory conditions while the hydrophilic glass ionomer lining led to a better marginal integrity under clinical circumstances.

Acid Etching, Dental↗

An investigation into the quality of dentine bonding systems for accomplishing a durable bond.

For a wide variety of dentine bonding systems the bond strength before and after thermocycling was determined on dentine with and without hydraulic tubular pressure. The importance of the hydrophilic nature of several bonding systems could be demonstrated. The dentine smear layer could not prevent a negative effect of water in the tubulus on hydrophobic systems. Removal of the smear layer had a positive effect on the durability of the bond. When loaded until fracture, some bonding systems resisted adhesive failure.

Composite Resins↗

Influence of shearing action of food on contact stress and subsequent wear of stress-bearing composites.

The influence of sliding action of the antagonist on occlusal three-body wear of composites and an amalgam was investigated in vitro by gradual change in the distance between the opposing substrates. When the distance was decreased from 10 microns to approximately 3 microns, wear increased significantly by a factor of two to three and was exclusively of erosive nature. At a slurry-film thickness of approximately 1 micron, direct contacts between the antagonist and protruding composite filler particles started to occur. This consequently slowed the erosive wear. Ultimately, direct contact phenomena predominated, decreasing the wear rate of the various materials to different degrees. Loss of material due to subsurface fatigue could not be demonstrated with a contact pressure of 45 MPa at which the experiments were performed. From this study, it can be concluded that minor alterations of the food-film thickness at the contact areas result in considerable changes in wear rates and wear-rate ranking of composite materials, which may partly explain inconsistencies among clinical trials.

Composite Resins↗

[Amalgam. III. Mercury release from amalgam restorations].

Patients are exposed to mercury during dental treatment. The major source of exposure to mercury is, however the release of mercury both as vapour and as dissolved mercury, from amalgam restorations. With regard to the dissolution in saliva, corrosion of the restorations appears to be of importance. The modern amalgams have a lower corrosion rate than older ones but emit probably more mercury vapour. Different measurement methods show a rather varying amount of mercury release. The amount of mercury in the tracheal air is of more significance than that in the mouth air. It has been stated that from restorations made of old brands of amalgam 73% of the mercury is disappeared, but according to our estimation utmost 2% will disappear from a large restoration of modern brands.

Absorption↗

Shear bond strength and microleakage of new dentin bonding systems.

The aim of this study was to evaluate the shear bond strength and microleakage of three new bonding agents. Eight specimens were prepared from each material and shear bond strength was measured using a universal testing machine at crosshead speed of 0.5 mm/minute. Fracture pattern was studied by stereomicroscope and scanning electron microscope (SEM). For the microleakage test, Class V cavities were prepared in the buccal or lingual surface of extracted lower molar teeth and restored with resin composites after application of the accompanying adhesives. The restored teeth were loaded at 125 N for 5000 cycles in a dye solution, sectioned and inspected for microleakage. Bond strengths of 17.7 +/- 4.1, 16.3 +/- 3.8, 15.7 +/- 5.8 MPa were measured for Scotchbond Multi-Purpose, Clearfil Liner Bond and Optibond respectively. Restorations of Scotchbond MP and Clearfil LB showed no leakage, while those of OptiBond showed leakage in only one out of eight fillings.

Analysis of Variance↗