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Biomedical subjects

J F McCabe

Publications and source records attributed to J F McCabe.

At least 145 records · Page 8Linked to original sources

Factors influencing the bond strength between glass polyalkenoate (ionomer) cements and dentine.

A series of investigations have been performed to study some factors influencing the tensile bond strength of glass polyalkenoate cements to dentine. The measured bond strength was affected by the method of storage of the teeth prior to testing, the nature of the dentine and the type of cement used for the tests. The most consistent results for bond strength measurements were obtained with teeth stored in neutral buffered formalin for more than 1 month after extraction, and then stored in distilled water for 4 weeks prior to bond strength determinations. The mean value obtained with this storage regime (1.62 MPa) was not different from that obtained using freshly extracted teeth (1.74 MPa). The bond strength to deciduous dentine (0.72 MPa) was significantly less than that to permanent dentine (1.62 MPa). There were significant differences between the measured bond strengths of the three materials tested, with Ketac-Fil giving the lowest result (1.62 MPa), then Ketac-Silver (2.41 MPa), ChemFil II formed the strongest bonds (4.65 MPa).

Buffers↗

Dynamic creep of dental amalgam as a function of stress and number of applied stress cycles.

Dynamic creep tests on specimens of dental amalgam gave a relationship between creep (epsilon), applied dynamic stress (sigma), and number of applied stress cycles (N) as epsilon = AN (m sigma + c) where A, m, and c are constants. This equation can be used to predict creep of amalgam at low levels of stress and extended times. The pattern of results produced for different types of amalgam indicates that the creep process is multifactorial in nature.

Chemical Phenomena↗

Particle spallation induced by blood pumps in hemodialysis tubing sets.

The repeated flexion and compression of pump segments by the rollers of peristaltic pumps results in cracking and abrasion of the inner surfaces of the pump segment, leading to shedding of particles into the extracorporeal circuit. A series of studies to assess the rate of particle release from silicone rubber, polyvinyl chloride (PVC), and Pivipol, a coextruded polyurethane-coated PVC tubing, when these materials were used with blood pumps of the type found in hemodialysis units, was undertaken. The studies show that with all tubing/pump combinations there is an overall increase in the total number of particles released, but an analysis of the particle size distribution indicates that the majority of the particles are less than 16 micron in diameter. The rate of increase may be reduced, however, by decreasing the occlusion pressure.

Analysis of Variance↗