Search PubMed⌕ Search

Biomedical subjects

T Kashiwada

Publications and source records attributed to T Kashiwada.

5 recordsLinked to original sources

New restoration and direct pulp capping systems using adhesive composite resin.

There have been many arguments on the irritating mechanisms of the composite resin on the dental pulp. While the direct irritative effect of the resin has been preferred, some authors considered that the marginal microleakage and the resulting bacterial infection play a more important role in inducing the complicating pulp irritation. We developed a new filling technique, called the direct inlay restoration method, which could prevent the marginal leakage associated with the polymerization shrinkage of the adhesive composite resin. In this study, we tried to apply our method clinically. None of the 440 cases which were filled with the adhesive composite resin and 60 cases out of 64 cases in which the pulps were directly capped with the adhesive composite resin developed any signs and symptoms of pulp irritation. The other 4 cases developed signs of pulp irritation. Two of those 4 cases were pulpectomized due to spontaneous pain and the other 2 cases turned out to be well after re-restoration. With the informed consent of the patients, the direct pulp capping using the adhesive composite resin was experimentally performed on 6 caries-free 3rd molars and the histopathological examination of these capped molars revealed that neither significant degenerative nor inflammatory changes were brought about in the dental pulp. These clinical and histopathological observation suggest that the dental pulp irritation after resin filling is not induced by the composite resin itself.

Adolescent↗

[Physical properties of resins for veneer crown. (Part 2) Bending strength and retention force of opaque resins (author's transl)].

The retention force of 9 kinds of resins for veneer crown, physical properties and retention force of 7 kinds of opaque resins were determined. Retention force and their physical properties were closely related on resins for veneer crown, that is stronger and more tough resins have larger retention force. The opaque resins containing larger quantity of filler and hydrophilic monomers showed extra-ordinary young's modulus afteter drying. But young's modulus and strength decreased after immersed in water and thermal cycling and the retention force also decreased to the smallest level after immersed in water and thermal cycling. The hydrohobic opaque resins that have good coupling effect to filler showed large retention force even after immersed in water and thermal cycling in spite of large filler content. The opaque resins containing MMA with scanty filler showed large elongation and breaking strength and their retention force were also large after immersed in water and thermal cycling.

Color↗

[Physical properties of resins for veneer crown. (Part 1) Bending strength of thermosetting methacrylic resins (author's transl)].

The physical properties of thermosetting methacrylic resins contain a kind or more than two kinds of cross linking agents were investigated. Knoop hardness and bending strength after drying, water sorption and thermal cycling were listed in table 4 and 5. Hydrophilic resins absorbed water about 3 times as much as hydrophobic resins. The materials contain a small amount of hydrophobic cross linking agents in MMA indicate comparatively excellent properties after drying, water sorption and thermal cycling. Knoop hardness of resins generally reduced by water sorption, especially in the case of the resin contains a large amount of triethylene glycol dimethacrylate.

Absorption↗