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Biomedical subjects

R W Phillips

Publications and source records attributed to R W Phillips.

At least 55 records · Page 3Linked to original sources

Animals in biomedical space research.

The use of experimental animals has been a major component of biomedical research progress. Using animals in space presents special problems, but also provides special opportunities. Rat and squirrel monkeys experiments have been planned in concert with human experiments to help answer fundamental questions concerning the effect of weightlessness on mammalian function. For the most part, these experiments focus on identified changes noted in humans during space flight. Utilizing space laboratory facilities, manipulative experiments can be completed while animals are still in orbit. Other experiments are designed to study changes in gravity receptor structure and function and the effect of weightlessness on early vertebrate development. Following these preliminary animals experiments on Spacelab Shuttle flights, longer term programs of animal investigation will be conducted on Space Station.

Animals↗

Marginal fracture of posterior composite resins.

This study assesses the early cavomarginal breakdown of the newer posterior composite resin restorations compared with that of amalgam restorations. A total of 432 posterior composite restorations and 73 amalgam restorations were examined: 121 composite restorations (28%) and 44 amalgam restorations (60%) clinically showed a marginal crevice at some point on the cavosurface margin of the restoration at 6-month, 1-year, and 2-year recalls. The largest single reason for poor marginal adaptation was marginal fracture. Up to 2 years, the marginal integrity of the studied posterior composites was superior to that of an amalgam alloy. It was determined that smaller cavities, greater bulk of resin at the margin (especially at functional cusp areas), and well-finished margins without overfiling seem to reduce the occurrence of marginal fracture on composite resin restorations.

Composite Resins↗

Tensile bond strength between glass ionomer cements and composite resins.

Etching or roughening the surface of glass ionomer cement before use of composite resins and bond agents produces bond strengths comparable to the bond strength between glass ionomers and dentin. Bond failure at such surfaces occurs within the glass ionomer. Adequate washing with water after acid etching the glass ionomer is essential to obtain optimal bond strength. Apparently, some combinations of ionomer cements and resins are more effective than are others in providing a good bond in the "sandwich technique".

Acid Etching, Dental↗

Margin quality and microleakage of Class II composite resin restorations.

Margin quality and isotope microleakage analyses of Class II restorations placed in extracted human molars were compared using various composite resins and placement techniques. At occlusal margins, the traditional (experimental) composite resin restoration placed by the incremental technique showed less microleakage than did the traditional (commercial) [corrected] composite resin restoration placed by the bulk technique. In each group, the occlusal and proximal adaptations had significantly higher "excellent margin" than did the cervical adaptation. Thus, the marginal adaptation at the cervical aspect of conventional Class II composite resin restorations may present a problem with respect to microleakage.

Calcium Radioisotopes↗

In vivo disintegration of luting cements.

The in vivo disintegration of luting cements was determined at 6- and 12-month intervals in two test series of 20 participants each. Four cements were inserted in the wells located in the mesial and distal surfaces of cast crowns. Glass ionomer, silicophosphate, polycarboxylate, and zinc phosphate cements prepared with recommended powder/liquid ratios are discussed, and are ranked with respect to disintegration at 6 and 12 months.

Chemical Phenomena↗

Era of new biomaterials in esthetic dentistry.

Many exciting developments are occurring in esthetic, restorative materials. Today, materials are considered in terms of their biologic effects and tests to predict in vivo behavior are needed. Recently, more nondental manufacturers have begun to introduce products and the number of foreign products has also increased. Dentists and materials scientists are currently interested in: microleakage, bonding mechanisms, dentin-bonding agents, polyacrylic acid systems, and composite resins.

Acrylic Resins↗

Antimicrobial alternatives for calf diarrhea: enteric responses to Escherichia coli, deferoxamine, or gallium in neonatal calves.

Intestinal malabsorption or transferable resistance in enteric bacteria are potentially serious complications of routine oral administrations of antibiotics. On the basis of reports on antimicrobial effects of host iron sequestration and on synthetic iron chelators or competitors in vitro, 2 iron antagonists were studied for their potential as alternative antimicrobials for Escherichia coli diarrhea. Deferoxamine, a fungal iron chelator used to treat acute iron intoxication, and elemental gallium, a competitive inhibitor of iron activity in metabolic enzyme systems, were examined for their effects on enteric morphology and function in neonatal calves. Twelve male calves were allotted to 4 groups: (1) given nonpathogenic E coli (control); (2) given enterotoxigenic B44 E coli; (3) given deferoxamine (50 mg/kg, twice a day); and (4) given gallium (4 mg/kg, twice a day). Calves were studied for 8 days, including the conduct of oral glucose and lactose tolerance tests on days 1, 3, and 7. By day 7, according to oral glucose and lactose tolerance tests, peak plasma glucose concentrations in all calves of groups 2, 3, and 4 were lower than those values in controls. The frequency of diarrhea was significant in all treated calves, and disease was most severe in the deferoxamine-treated calves. Quantitative cultural examination on day 8 showed significant numerical increases of jejunal and ileal E coli and ileal lactobacilli in deferoxamine-treated calves (group 3) and of ileal streptococci in gallium-treated calves (group 4) and showed jejunal and ileal overgrowths of Saccharomyces yeast in deferoxamine-treated calves.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Antimicrobial alternatives for calf diarrhea: sera trace element responses to Escherichia coli-, deferoxamine-, or gallium-induced diarrhea.

Aseptic and septic inflammatory diseases often are associated with marked changes in tissue and sera trace element kinetics. Iron and zinc sequestration by the host may serve as a protective effect against microbial proliferation, but may deprive host tissues of these necessary elements as well. Conversely, systemic iron administration has been shown to increase susceptibility to, and severity of, infectious diseases, although deficient iron stores may be repleted. Escherichia coli enteritis in calves provides a model wherein the effects of enteric iron antagonism and parenteral iron supplementation may be studied simultaneously. Male calves (n = 12) were given (IM injection) 300 mg of iron-dextran after base-line blood samples were obtained, then the calves were allotted to 4 groups (each of 3 calves): group 1 (control)--orally given nonpathogenic E coli; group 2--orally given enterotoxigenic B44 E coli; group 3--orally given deferoxamine (50 mg/kg, twice a day); group 4--orally given gallium (4 mg/kg; twice a day). Calves were studied for 8 days; blood samples were obtained each day (day 1 through day 8) for hematologic and serum biochemical analyses. There were significant increases in serum iron concentration and % saturation in all calves within 24 hours of iron-dextran administration, which returned to base-line values in all but group 4 (given gallium) within 3 days. In the exceptional group (4), total iron-binding capacity decreased with time, as in the other groups, but serum iron concentration remained significantly increased, implying gallium interference with systemic iron assimilation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Acute changes in pancreatic insulin secretion and hepatic glucose kinetics in endotoxemic miniature pigs.

We have proposed a misinformed B-cell hypothesis to describe the effects of increased glucose flux across the pancreatic B cell early in endotoxemia, whereby those cells might misinterpret the true glycemic state and thus induce increased insulin release. This hypothesis was supported by the observations that [6-3H]glucose-derived rates of glucose disappearance increased before systemic hyperinsulinemia appeared in endotoxemic Yucatan miniature pigs. Reevaluation of this hypothesis later showed that pancreatic insulin secretion increased before any changes in systemic glucose disappearance or insulin concentrations and, because of significant increases in hepatic insulin extraction, may have led to some local effects of insulin on hepatic carbohydrate metabolism. The present study was conducted with more frequent sampling periods early during endotoxemia to further characterize the effects of this initial acute increase in pancreatic insulin secretion on hepatic glucose uptake, concomitant to net hepatic glucose production, as well as to further clarify the temporal relationships between pancreatic insulin release and the onset of hypoglycemia. We found that an increase in pancreatic insulin secretion is, indeed, the first event to occur, 30 minutes after initiation of endotoxin infusion, coincidental to the onset of significant decreases in portal and hepatic venous blood flow. [3(3)H]Glucose-derived rate of glucose disappearance first increased significantly at 60 minutes, and net hepatic glucose output increased significantly after 80 minutes of endotoxin infusion. Net [3(-3)H]glucose uptake by the liver occurred through 50 minutes of endotoxin infusion. After this, there was a significant reversal in transhepatic isotope kinetics, resulting in net release of [3(-3)H]glucose from the liver for the duration of endotoxin infusion (140 minutes).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Evaluation of commercial oral replacement formulas in healthy neonatal calves.

Effects of 5 commercial oral replacement formulas on hematologic and plasma biochemical values, body weight, and prevalence of diarrhea were studied in healthy neonatal calves. Products were fed according to manufacturers' recommendations beginning at 3 to 7 days of age for 3 days. Whole milk, diluted 1:1 with commercial formulas, was fed for 3 days thereafter. There were no consistently significant (P greater than 0.05) effects of commercial product feeding with time or by treatment, as compared with those in whole milk-fed controls, on the hematologic or biochemical values of PCV, leukocyte count, platelet count, or plasma K, Cl, glucose, and lactic acid concentrations. Plasma Na concentrations decreased significantly (P less than 0.05) with age in all groups. After 2 weeks, milk-fed calves had gained 2.09 +/- 0.96 kg, and calves fed all but 2 hypertonic energy-dense products 1 and 5 had significant (P less than 0.05) weight losses (up to 2.95 +/- 1.34 kg). Transition to a diet of whole milk and commercial product at one half each of their standard doses resulted in a significant (P less than 0.05) occurrence of diarrhea. Seemingly, such formulas should not be fed to healthy calves on a long term basis. The product with the lowest osmolal and caloric content was associated with the greatest weight loss.

Animal Feed↗