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2006 | 62 | 05 |

Tytuł artykułu

Obraz i umiejscowienie wybranych elementow organicznych w szkliwie zebow bydla

Warianty tytułu

EN
Pattern and location of selected organic elements in bovine teeth enamel

Języki publikacji

PL

Abstrakty

EN
Dental enamel exhibits a highly mineralised structure and contains not only mineral substances but also organic components. The fine organic elements in the enamel cannot be detected by clinical examinations and most frequently are recognised by in vitro studies. The aim of the present study was to assess selected organic elements of enamel: lamellae, tufts, spindles, bulbs and spheroids and to appraise the suitability of permanent bovine teeth as substitutes of permanent human teeth in dental studies. Examinations were performed on 205 permanent bovine teeth obtained from healthy 2.5- to 4.5-year-old individuals (of black-white lowland race). Tooth sections were obtained by cutting crowns, using a slow revolving diamond disc saw, cooled with distilled water. Following preliminary appraisal and within 24 hours, the sections were stained with various techniques, including azane, picric acid, hematoxylin + picric acid, hematoxylin, eosin, fuchsin, H+E according to Mallory and were then analysed under a Nikon Optiphot-2 light microscope. Variable distributions of the evaluated organic elements of enamel were noted but most of them were located in the projection of smooth surfaces, compared to their location in the projections of incisal margins or masticator surfaces in bovine teeth. Bovine permanent frontal teeth may provide a substitute for human teeth but bovine lateral teeth, however, seem to be of limited use in dental studies.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

62

Numer

05

Opis fizyczny

s.570-573,rys.,tab.,bibliogr.

Twórcy

autor
  • Akademia Medyczna, ul.Swiecickiego 6, 60-781 Poznan
autor

Bibliografia

  • 1.Amaecha B. T., Higham S. M., Edgar W. M.: Effect of sterilisation methods on the structural integrity of artificial enamel caries for intra-oral cariogenicity tests. J. Dent. 1999, 27, 313-316.
  • 2.Amizuka N., Uchida T., Fukae M., Yamada M., Ozawa H.: Ultrastructural and immunocytochemical studies of enamel tufts in human permanent teeth. Arch. Histol. Cytol. 1992, 55, 179-190.
  • 3.Andrews A. H.: Anatomy of the oral cavity, eruption, and developmental abnormalities in ruminants, [w:] Harvey C. E. (wyd.): Veterinary Dentistry. Saunders W. B. Co, Philadelphia 1985, 235-255.
  • 4.Arsenault A. L., Robinson B. W.: The dentino-enamel junction: a structural and microanalytical study of early mineralization. Calcif. Tissue Int. 1989, 45, 111-121.
  • 5.Block M., Cowell C. R.: The interpretation of scratches acquired on an enamel surface in vivo. Br. Dent. J. 1974, 136, 197-198.
  • 6.Czarnecka B., Miśkowiak B., Limanowska-Shaw H., Stopa J., Matthews-Brzozowska T.: Histological study on the effect of air inclusions on the bonding of dental biomaterials. J. Dent. Res. 2003, 82, 578.
  • 7.Emily P., Orsini P. G., Lobprise H. B., Wiggs R. B.: Oral and dental disease in large animals, [w:] Wiggs R. B., Lobprise H. B. (wyd.): Veterinary Dentistry. Principles&Practice. Lippincott-Raven Publishers, Philadelphia 1997, 576-578.
  • 8.Glimcher M. J., Bonar L. C., Daniel E. J.: The molecular structure the protein matrix of bovine dental enamel. J. Mol. Biol. 1961, 3, 541-546.
  • 9.Kaczmarek E., Matthews-Brzozowska T., Miśkowiak B.: Digital image analysis in dental research applied for treatment of fissures on oclusal surfaces of premolars. Ann. Biomed. Eng. 2003, 31, 931-936.
  • 10.Matthews-Brzozowska T., Miśkowiak B., Mehr K.: Stan szkliwa i zębiny bruzd powierzchni żującej zębów przedtrzonowych - badania histomorfometryczne. Czas. Stomatol. 2000, 53, 148-153.
  • 11.Matthews-Brzozowska T., Przybył J.: System łączący Prompt - połączenie z materiałem wypełniającym i strukturami zęba. Dent. Med. Probl. 2002, 39, 2, 223-226.
  • 12.Matthews-Brzozowska T., Stopa J.: Połączenie międzyfazowe tkanki zęba i materiału złożonego po zastosowaniu systemu łączącego nowej generacji. Czas. Stomatol. 2002, 55, 335-339.
  • 13.Mehr K.: Computer-assisted analysis in histomorphometric studies of third molar teeth. 3rd International Conference of PhD Students, 13-19 August 2001, University of Miscolc, Hungary, Medical Science, Innovation and Technology Transfer Centre 2001, s. 125-130.
  • 14.Nywad B., Fejerskov O., Josephsen K.: Organic structures of developmental origin in human surface enamel. Scand. J. Res. 1988, 96, 288-292.
  • 15.Piattelli A., Trisi P.: Morphodifferentiation and histodifferentiation of the dental hard tissues in compound odontoma: a study of undemineralized material. J. Oral Pathol. Med. 1992, 21, 340-342.
  • 16.Ragazzoni E., Martignoni M., Cocchia D.: Caratteristiche morfologiche ed istochimiche delle strutture interprismatiche dello smalto umano. Studio al microscopio ottico. Minerva Stomatol. 1994, 43, 493-499.
  • 17.Sato I., Sunohara M., Mikami A., Yoshida S., Sato T.: Comparison between decidous and permanent incisor teeth in morphology of bovine enamel. Okajimas Folia Anat. Jpn 1999, 76, 131-136.
  • 18.Stopa J., Kurhańska-Filsykowska A., Chmielnik M., Surdacka A., Matthews-Brzozowska T., Wąsik A.: Wykorzystanie zębów bydlęcych w badaniach stomatologicznych. Prz. Stomatol. Wieku Rozw. 1997, 18, 22-26.
  • 19.Travis D. F., Glimcher M. J.: The structure and organization of, and the relationship between the organic matrix and the inorganic crystals of embryonic bovine enamel. J. Cell Biol. 1964, 23, 447-497.
  • 20.Walker B. N., Makinson O. F., Peters M. C.: Enamel cracks. The role of enamel lamellae in caries initiation. Aust. Dent. J. 1998, 43, 110-116.
  • 21.Wąsik A.: Badania doświadczalne nad szczelnością brzeżną materiałów stosowanych jako podkłady izolacyjne. Czas. Stomatol. 1975, 28, 601-607.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-2098f83e-8087-4591-9e42-f90caece1146
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