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1.
Med Oral Patol Oral Cir Bucal ; 21(5): e608-13, 2016 Sep 01.
Article in English | MEDLINE | ID: mdl-27475687

ABSTRACT

BACKGROUND: Removing a tooth from the jaw results in the occurrence of oroantral communication in beneficial anatomic conditions or in the case of a iatrogenic effect. Popularized treatments of the oroantral communication have numerous faults. Large bone defect eliminates the chance to introduce an implant. Purpose of this work was assessment of the usefulness of autogenous bone graft and PRF in normal bone regeneration in the site of oroantral communication. MATERIAL AND METHODS: Bone regeneration in the site of oroantral communication was assessed in 20 patients. Bone defects were supplemented autogenous bone graft from mental protuberance in 14 cases and from oblique line in 6 cases. The graft was covered with a PRF membrane. RESULTS: In the study group in all cases closure of the oroantral communication was observed. The average width of the alveolar was 13 mm and the average height was 12.5 mm. In 3 patients an average increase of alveolar height of 1.5 mm was observed. CONCLUSIONS: This method may be the best option to prepare alveolar for new implant and prosthetic solutions.


Subject(s)
Bone Transplantation , Oroantral Fistula/therapy , Platelet-Rich Fibrin/physiology , Blood Platelets , Bone Regeneration , Fibrin , Humans
2.
J Photochem Photobiol B ; 64(2-3): 144-61, 2001 Nov 15.
Article in English | MEDLINE | ID: mdl-11744401

ABSTRACT

The retina represents a paradox, in that, while light and oxygen are essential for vision, these conditions also favour the formation of reactive oxygen species leading to photochemical damage to the retina. Such light damage seems to be multi-factorial and is dependent on the photoreactivity of a variety of chromophores (e.g., vitamin A metabolites, lipofuscin, melanin, flavins, porphyrins, carotenoids) endogenous to the retina. The aim of this article is to provide a detailed review of our current understanding of the photochemistry and photobiology of these chromophores and to consider how they may contribute to retinal ageing and pathology.


Subject(s)
Retina/injuries , Sunlight/adverse effects , Adaptation, Physiological , Animals , Flavins/metabolism , Humans , Lipofuscin/metabolism , Melanins/metabolism , Melanins/physiology , Porphyrins/metabolism , Retina/metabolism , Retina/physiology , Rhodopsin/metabolism , Vision, Ocular
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