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Caries Research|January 1, 1991
In vivo use of a dual acid etch biopsy for the evaluation of lead profiles in human surface enamelR Cleymaet, P Bottenberg, D H Retief, et al.Calcified Tissue International|May 1, 1983
Ultrastructural cytochemistry of complex carbohydrates in osteoblasts, osteoid, and bone matrixM Takagi, R T Parmley, Y Toda, et al.The Journal of Histochemistry and Cytochemistry : Official Journal of the Histochemistry Society|June 1, 1983
Ultrastructural visualization of complex carbohydrates in epiphyseal cartilage with the tannic acid-metal salt methodsM Takagi, R T Parmley, F R Denys, et al.Laboratory Investigation; a Journal of Technical Methods and Pathology|March 1, 1982
Extracellular and intracellular digestion of complex carbohydrates by osteoclastsM Takagi, R T Parmley, Y Toda, et al.Journal of Dental Research|October 1, 1984
Fluoride-treated roots and viability and attachment of human gingival fibroblastsW A Al-Joburi, F R Denys, R B CogenJournal of Endodontics|August 1, 1990
Effects of calcium hydroxide paste as an intracanal medicament on apical sealP Porkaew, D H Retief, R D Barfield, et al.Journal of Toxicology and Environmental Health|February 1, 1991
Model for assessment of lead content in human surface enamelR Cleymaet, E Quartier, D Slop, et al.Journal of Dental Research|April 1, 1981
In vivo enamel fluoride uptake from and caries inhibition by topical fluoride agentsM Gibbs, D H Retief, E L Bradley, et al.American Journal of Dentistry|June 1, 1993
Natural and induced radiation caries: A SEM studyJ Jansma, A Vissink, W L Jongebloed, et al.Journal of Dental Research|March 1, 1980
In vitro fluoride uptake, distribution and retention by human enamel after 1- and 24-hour application of various topical fluoride agentsD H Retief, P G Sorvas, E L Bradley, et al.Pageof 18