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Investigating inlay permeability by means of labelled atoms

Abstract

An isotope method was used in the study of marginal space permeability (space between cavity walls and obturation) and its relation to the qualities of cementing material. To this end, V class cavities were elaborated and microdentures preprared under unified conditions for recently extracted intact human teeth. The inlays were adjusted by being riveted at first and then cemented. Microdentures were fixed with ''Adhesor'' phosphate cement, zinc-eugenol paste or adhesive wax, applied upon the phase and part of the cavity wall. Twenty four hours later the teeth were covered with wax. The inlay and a strip around it remained uncovered and immersed in iodine 125 solution of sulphur 35-methionine. The teeth were then washed and incorporated in epoxide resin. Longitudinal incisions were made through the inlay and, after appropriate processing, autoradiography of the sections was made. The marginal space was shown to be permeable in a different degree, depending on the fixing material: whereas wax gluing makes it impermeable for either isotope, gluing with zinc-eugenol paste allows minor permeability for sulphur 35 and a rather high one for iodine 125. With phosphate cement gluing, iodine 125 reaches the cavity bottom, while penetration of sulphur 35 is rather limited.
Publication Date:
Jan 01, 1979
Product Type:
Journal Article
Reference Number:
AIX-11-554952; EDB-80-129951
Resource Relation:
Journal Name: Probl. Stomatol.; (Bulgaria); Journal Volume: 7
Subject:
62 RADIOLOGY AND NUCLEAR MEDICINE; DENTISTRY; TRACER TECHNIQUES; IODINE 125; SULFUR 35; TEETH; PERMEABILITY; BONDING; CARIES; CEMENTS; COMPARATIVE EVALUATIONS; DEFECTS; IN VITRO; WAXES; BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; BUILDING MATERIALS; DAYS LIVING RADIOISOTOPES; DIGESTIVE SYSTEM; DISEASES; ELECTRON CAPTURE RADIOISOTOPES; EVEN-ODD NUCLEI; FABRICATION; INTERMEDIATE MASS NUCLEI; IODINE ISOTOPES; ISOTOPE APPLICATIONS; ISOTOPES; JOINING; LIGHT NUCLEI; MATERIALS; MEDICINE; NUCLEI; ODD-EVEN NUCLEI; ORAL CAVITY; ORGANIC COMPOUNDS; OTHER ORGANIC COMPOUNDS; PATHOLOGICAL CHANGES; RADIOISOTOPES; SULFUR ISOTOPES; 550601* - Medicine- Unsealed Radionuclides in Diagnostics
OSTI ID:
7099210
Country of Origin:
Bulgaria
Language:
Bulgarian
Other Identifying Numbers:
Journal ID: CODEN: PSMLA
Submitting Site:
INIS
Size:
Pages: 77-80
Announcement Date:
Oct 01, 1980

Citation Formats

Rajchev, L, and Chakmakov, D. Investigating inlay permeability by means of labelled atoms. Bulgaria: N. p., 1979. Web.
Rajchev, L, & Chakmakov, D. Investigating inlay permeability by means of labelled atoms. Bulgaria.
Rajchev, L, and Chakmakov, D. 1979. "Investigating inlay permeability by means of labelled atoms." Bulgaria.
@misc{etde_7099210,
title = {Investigating inlay permeability by means of labelled atoms}
author = {Rajchev, L, and Chakmakov, D}
abstractNote = {An isotope method was used in the study of marginal space permeability (space between cavity walls and obturation) and its relation to the qualities of cementing material. To this end, V class cavities were elaborated and microdentures preprared under unified conditions for recently extracted intact human teeth. The inlays were adjusted by being riveted at first and then cemented. Microdentures were fixed with ''Adhesor'' phosphate cement, zinc-eugenol paste or adhesive wax, applied upon the phase and part of the cavity wall. Twenty four hours later the teeth were covered with wax. The inlay and a strip around it remained uncovered and immersed in iodine 125 solution of sulphur 35-methionine. The teeth were then washed and incorporated in epoxide resin. Longitudinal incisions were made through the inlay and, after appropriate processing, autoradiography of the sections was made. The marginal space was shown to be permeable in a different degree, depending on the fixing material: whereas wax gluing makes it impermeable for either isotope, gluing with zinc-eugenol paste allows minor permeability for sulphur 35 and a rather high one for iodine 125. With phosphate cement gluing, iodine 125 reaches the cavity bottom, while penetration of sulphur 35 is rather limited.}
journal = []
volume = {7}
journal type = {AC}
place = {Bulgaria}
year = {1979}
month = {Jan}
}