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Biomedical subjects

D W Foreman

Publications and source records attributed to D W Foreman.

18 recordsLinked to original sources

Mechanical properties of sintered hydroxyapatite and tricalcium phosphate ceramic.

The ultimate values for compressive strength, Young's modulus, and toughness of cylindrical specimens of unitary aspect ratios and uniform grain-size distributions were extrapolated for hydroxyapatite (HAP) to 70 MPa, 9.2 GPa, and 0.36 J cm(-3), and for tricalcium phosphate (TCP), to 315 MPa, 21 GPa, and 2.34 J cm(-3). For total volume porosities of 50%, the corresponding values were determined: for HAP, 9.3 MPa, 1.2 GPa, 0.042 J cm(-3), for TCP, 13 MPa, 1.6 GP, 0.077 J cm(-3). Porosities of HAP specimens ranged from 3%-50%; TCP from 10%-70%. Two pore-size distributions were employed. Exponential dependencies of the mechanical properties were found upon porosity (p < 0.0001). No differences in measured mechanical properties, as determined in compression, could be attributed to pore size. The superiority of TCP increases with density and suggests that a larger or more selective pore-size distribution could be effectively employed in TCP biological implants. This work also suggests the dominant role of secondary calcium phosphates in increasing compressive strengths.

Journal Article↗

X-ray diffraction studies of as-cast high-palladium alloys.

OBJECTIVES: The purpose of this study was to use x-ray diffraction (XRD) to investigate four representative high-palladium alloys in the as-cast condition and obtain new information about the metallurgical phases. METHODS: Two Pd-Cu-Ga alloys and two Pd-Ga alloys were cast into plate-shaped specimens (20 mm x 1.5 mm) which were bench-cooled. Polished and etched specimens were analyzed using two different x-ray diffractometers and CuKa radiation. RESULTS: All four alloys exhibited strong XRD peaks for the face-centered cubic (fcc) palladium solid solution matrix, and variations in the lattice parameter were consistent with alloy compositions. Comparison of the relative peak intensities for the alloys and the pure palladium powder standard indicated that the as-cast microstructures had preferred crystallographic orientation. Because the two Pd-Cu-Ga alloys contained appreciable amounts of near-surface lamellar interdendritic or eutectic constituents, it was possible to determine previously unreported XRD peaks for the Pd2Ga phase in these alloys. Low-intensity peaks in the Pd-Ga alloys were attributed to small amounts of secondary phases observed in the microstructures. SIGNIFICANCE: Knowledge of the metallurgical structures of these high-palladium alloys can be important for interpretation of microstructural observations, mechanical properties, corrosion behavior and clinical performance.

Dental Alloys↗

Histologic evaluation of periodontal attachment apparatus following the insertion of a biodegradable copolymer barrier in humans.

The purpose of this study was to histologically evaluate the effectiveness of polylactide:polyglycolide 50:50 (DL-PLGA) as a barrier to prevent epithelial migration and to promote new connective tissue attachment. Mucoperiosteal flaps were performed on 17 human teeth. DL-PLGA membrane was placed over the roots and alveolar bone. DL-PLGA was not placed over control teeth. Ninety days following surgery, block sections were obtained and processed for histologic evaluation. All specimens revealed a mean length of epithelial attachment within physiologic limits and recession of the gingival margin. There was little or no reattachment of the connective tissue. It is concluded that this copolymer barrier did not prevent epithelial migration nor enhance connective tissue attachment to human roots with severe horizontal bone loss and active periodontal disease.

Adult↗

Physical chemical evidence of structural weakness in coronary arterial calcification.

Physical-chemical properties of calcified human coronary arteries were obtained through 857 electron probe microanalyses of samples of endarterectomy tissue from 12 patients and by X-ray and electron diffraction from separate samples. The calcific phase exhibited a weight percentage calcium to phosphorus ratio of 2.5 (SEM 0.15), a density of 2.95 (0.02) g.cm-3, and a crystalline unit cell volume of 530 (0.5) A3, or 53 (0.05) nm3. The phase has been characterised as a phosphorus deficient dahllite variant of apatite in which the crystal structure has been weakened by the incorporation of water molecules and tetrahedral hydroxyl groups in isomorphic substitution conforming with the McConnell-type defect. Isomorphic substitution within the apatitic cell appears sufficient to suggest that the crystal structure of the mineral deposit is weakened to the extent that means might be sought to attack the early formation of the pathological deposition.

Apatites↗

Crystallochemical characteristics of the inorganic phase of human calcific aortic valvar stenosis.

To determine the elemental composition of the mineral deposits found in human calcific aortic valvar stenosis and to verify by x ray diffraction crystal class previously reported by electron diffraction 138 quantitative energy dispersive analyses and x ray diffraction of pooled specimens were performed on samples of aortic valves excised from 12 patients. The principal components of the calcified portions of the valves were 38.15% calcium and 17.68% phosphorus. The weight percentage calcium to phosphorus ratio was 2.16 and an elemental distribution related to the simplest ideal unit cell formulation Ca10(PO4)6(OH)2 was determined as: (Ca0.952Mg0.044Na0.097K0.005)10 (P0.952S0.025C0.023)6O23.96(Cl0.0184O0. 982H)2. The hexagonal unit cell was found to have an a axis of 9.424 A(0.9424 nm); c axis of 6.787 A(0.6787 nm); volume of 522 A3(0.522 nm3); and density of 3.2 g.cm-3. On the bases of the composition, the axial dimensions, and the density the material was classified as the dahllite form of apatite. There was no evidence of crystalline cholesterol. Variations in elemental composition showed no significant correlation with age or sex of the patient; statistically, neither the cusp involved nor the location on the leaflet affected the mineral composition.

Aged↗

Periodontal evaluation of two mucoperiosteal flaps used in removing impacted mandibular third molars.

This study compared the results of two types of access flap used in removing impacted mandibular third molars. Fifteen patients were given periodontal examinations consisting of measurements of attachment level, level of the gingival margin, and width of the masticatory mucosa at three locations around the mandibular second molars. The examinations were done preoperatively, and two, six, and 12 weeks after removal of the impacted molars. Analyses of variance indicated that there was no significant difference between the two flap techniques and, therefore, the choice of flap technique is one of operator preference. There was a significant decrease in mean sulcus depth at all measured points for either flap technique, indicating a generally healthier condition around mandibular second molars 12 weeks after the surgical removal of mandibular third molars.

Adult↗

Diffusion of strontium from desensitizing agents into human dentin as determined by energy-dispersive analysis.

Strontium-containing desensitizing agents were applied to one set of tooth surfaces and were burnished onto another set of diametric surfaces. Concentration of strontium at dentin depth was determined by X-radiation dispersive analysis. Burnishing produced deeper strontium penetration. Fick's Second Law provided an estimate of relative effective time for equal strontium distributions by the two methods.

Dentin↗

Electron microscope comparison of freeze-substitution and conventional chemical fixation of undecalificied human dentin.

Within the stated limits of cell fine structure preservation and within the observed anatomical limits specified in the Results and Discussion sections, a freeze-substitution method using an ethylene glycol-Hank's solution eutectic mixture with a glutaraldehyde additive can be used to effectively prepare undecalcified human dentin for electron microscopy. The ultrastructual appearance of the odontoblast cell body and the odontoblastic process subjected to freeze-substitution differs from that seen with conventional chemical fixation. Artifacts produced by freeze-substitution differ in appearance and frequency of occurrence from those produced by glutaraldehyde-osmium tetroxide sequential double fixation. The cellular component of dentin shows greater structural preservation of protein when it is subjected to freeze-substitution that when it is prepared by conventional chemical fixation. The absence of ice crystal defects in the odontoblastic process in calcified dentin and the presence of ice crystal defects in the odontoblast cell body suggest that intracellular water in the odontoblastic process in the calcified dentin may exist in a more highly structured state than intracellular water in the odontoblast cell body. If intracellular water exists in a more highly structured state in the odontoblastic process of the calcified dentin than in the cell body, the ratio of protein molecules to cytoplasmic volume may be greater in the odontoblastic process than in the cell body. After glutaraldehyde-osmium tetroxide sequential double fixation, the use of graded alcohol dehydration obtained cell fine structure preservation and artifact control superior to that obtained by use of ethylene glycol cryodehydration. Further refinements of the freeze-substitution technique, as it applies to the preparation of undecalcified human dentin, are necessary to increase the amount of cellular preservation, to decrease the number of ice crystal artifacts, and to improve the overall quality of cell fine structure preservation.

Adolescent↗

Crystallographic characteristics of plasma-sprayed calcium phosphate coatings on Ti-6Al-4V.

The purpose of this study was to investigate the crystallographic characteristics of 3 sets of plasma-sprayed hydroxyapatite (HA) coatings prepared with different degrees of crystallinity on Ti-6Al-4V substrates. X-ray diffraction analyses were performed on the coatings to determine mean percent crystallinity, calcium phosphate phases present, average crystallite size, and residual strain. The mean percent crystallinity for the 3 sets of coatings ranged from 49 to 60%. The coatings that achieved the highest crystallinity consisted almost entirely of HA. As the coating crystallinity decreased, increasing amounts of alpha- and beta-tricalcium phosphate and tetracalcium phosphate were detected. The mean HA crystallite size for the 3 sets of coatings ranged from 0.02 to 0.05 micron. Differences in mean interplanar spacing for selected crystallographic planes of HA, compared with the pure ICDD (International Center for Diffraction Data) powder standards, implied that the coatings were in an uneven state of tensile strain.

Alloys↗