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Biomedical subjects

J Vahl

Publications and source records attributed to J Vahl.

At least 55 records · Page 3Linked to original sources

[Sealing dental enamel by means of photopolymerisable adhesives under exposure lasers light].

Electronmicroscopic examinations - analogous to those of the previous investigation [4] - suggest a relatively good interlocking of the adhesive with the conditioned dental enamel. In the demineralized microsections, clear differences are found among the strands of resin, in the light microscope. While they reach a length of 10 to 20 mum after UV light polymerisation, they become 100 to 200 mum long after exposure to laser light. First advantages resulting from these experiments are explained and critically discussed.

Dental Enamel↗

[Therapeutic possibilities in the changing dentition in generalized developmental disorders of the hard substance, ultrastructurally diagnosed I].

Three 5 to 14-year old patients with generalized developmental disturbances of dental hard substance--clinical diagnosis: dentinogenesis imperfecta--are used as examples of age-specific therapy groups in order to demonstrate the various courses of therapy. Early therapy of permanent teeth consists of treating enamel defects with UV hardening resin of the Nuva system. To evaluate adhesion of dental hard substances to resin, it is proposed to use adhesive matrices.

Adolescent↗

The ultrastructure of topical cutaneous calcinosis.

Mineralized plaques, which develop at the site of repeated subcutaneous injections of 100 mug KMnO4/0.2 H2O in rats, were investigated by electron microscopy. The newly formed, delineated, white plaque tissue at the injection site consisted of numerous, mostly unaltered fibroblasts and collagen fibers, without participation of inflammatory cells. Some signs of cell injury were found in the center of the lesions. Numerous, irregularly distributed, small, mineralized foci were seen near the fibroblasts. These were formed by aggregation of small needle-like units (50 A in diameter and 0.05-2.0 mum long). These needle-shaped units were found either in vesicular, cell derived structures, considered to be shed cell fragments, or on collagen fibers. Intramitochondrial deposits of such needle like units were seen frequently. Fusion of smaller mineralized foci to larger plaques occured and then needle-shaped units were seen at the periphery of the electron-dense lesions. Hypotheses concerning the mechanism of experimental cutaneous calcinosis (soft tissue mineralization) are discussed and related to the findings of this study. Probable intracellular crystal deposition and mineralization in cell-derived structures were shown for the first time in topical cutaneous calcinosis.

Animals↗