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Sökning: WFRF:(Brand Henk S)

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1.
  • Said Yekta, Sareh, et al. (författare)
  • Evaluation of new injection and cavity preparation model in local anesthesia teaching
  • 2013
  • Ingår i: Journal of Dental Education. - 0022-0337. ; 77:1, s. 51-57
  • Tidskriftsartikel (refereegranskat)abstract
    • The aim of this study was to evaluate a recently developed preclinical injection and cavity preparation model in local anesthesia. Thirty-three dental students administered an inferior alveolar nerve block injection in the model, followed by preparation on a tooth. The injection was evaluated by three observers, and the feedback from the model was registered. After completion of the practical session, the opinion of the dental students was explored with a ten-item questionnaire. Thirty dental students (91 percent) performed the injection correctly according to the feedback of the model, and twenty-eight students (85 percent) did so according to the expert opinion. The agreement between feedback from the training model and the expert opinion was high. The students were very satisfied with the opportunity to practice with the training model, as indicated by the high scores on each item of the questionnaire. These results suggest that use of this preclinical training model in anesthesia teaching may have beneficial effects on the administration of local anesthetics by dental students.
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2.
  • Said Yekta, Sareh, et al. (författare)
  • Evaluation of new injection and cavity preparation model in local anesthesia teaching
  • 2013
  • Ingår i: Journal of Dental Education. - : American Dental Education Association. - 0022-0337 .- 1930-7837. ; 77:1, s. 51-57
  • Tidskriftsartikel (refereegranskat)abstract
    • The aim of this study was to evaluate a recently developed preclinical injection and cavity preparation model in local anesthesia. Thirty-three dental students administered an inferior alveolar nerve block injection in the model, followed by preparation on a tooth. The injection was evaluated by three observers, and the feedback from the model was registered. After completion of the practical session, the opinion of the dental students was explored with a ten-item questionnaire. Thirty dental students (91 percent) performed the injection correctly according to the feedback of the model, and twenty-eight students (85 percent) did so according to the expert opinion. The agreement between feedback from the training model and the expert opinion was high. The students were very satisfied with the opportunity to practice with the training model, as indicated by the high scores on each item of the questionnaire. These results suggest that use of this preclinical training model in anesthesia teaching may have beneficial effects on the administration of local anesthetics by dental students.
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3.
  • Valentijn-Benz, Marianne, et al. (författare)
  • Sphingoid Bases Inhibit Acid-Induced Demineralization of Hydroxyapatite
  • 2015
  • Ingår i: Caries Research. - : S. Karger. - 0008-6568 .- 1421-976X. ; 49:1, s. 9-17
  • Tidskriftsartikel (refereegranskat)abstract
    • Calcium hydroxyapatite (HAp), the main constituent of dental enamel, is inherently susceptible to the etching and dissolving action of acids, resulting in tooth decay such as dental caries and dental erosion. Since the prevalence of erosive wear is gradually increasing, there is urgent need for agents that protect the enamel against erosive attacks. In the present study we studied in vitro the anti-erosive effects of a number of sphingolipids and sphingoid bases, which form the backbone of sphingolipids. Pretreatment of HAp discs with sphingosine, phytosphingosine (PHS), PHS phosphate and sphinganine significantly protected these against acid-induced demineralization by 80 ± 17%, 78 ± 17%, 78 ± 7% and 81 ± 8%, respectively (p < 0.001). On the other hand, sphingomyelin, acetyl PHS, octanoyl PHS and stearoyl PHS had no anti-erosive effects. Atomic force measurement revealed that HAp discs treated with PHS were almost completely and homogeneously covered by patches of PHS. This suggests that PHS and other sphingoid bases form layers on the surface of HAp, which act as diffusion barriers against H+ ions. In principle, these anti-erosive properties make PHS and related sphingosines promising and attractive candidates as ingredients in oral care products.
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  • Resultat 1-3 av 3

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