In Vitro Effect of Air-abrasion Operating Parameters on Dynamic Cutting Characteristics of Alumina and Bio-active Glass Powders

Author:

Milly H1,Austin RS2,Thompson I3,Banerjee A4

Affiliation:

1. Hussam Milly, BDS, DipOS, MSc, Biomaterials, Biomimetics & Biophotonics Research Group, King's College London Dental Institute at Guy's Hospital, King's Health Partners, London, United Kingdom

2. Rupert S Austin, BDS, PhD, Unit of Prosthodontics, King's College London Dental Institute at Guy's Hospital, King's Health Partners, London, United Kingdom

3. Ian Thompson, B.Eng, PhD, Biomaterials, Biomimetics & Biophotonics Research Group, King's College London Dental Institute at Guy's Hospital, King's Health Partners, London, United Kingdom

4. Avijit Banerjee, BDS, MSc, PhD, FDS (Rest Dent) FDS RCS (Eng) FHEA, Unit of Conservative Dentistry , Biomaterials, Biomimetics & Biophotonics Research Group, King's College London Dental Institute at Guy's Hospital, King's Health Partners, London, United Kingdom

Abstract

SUMMARY Minimally invasive dentistry advocates the maintenance of all repairable tooth structures during operative caries management in combination with remineralization strategies. This study evaluated the effect of air-abrasion operating parameters on its cutting efficiency/pattern using bio-active glass (BAG) powder and alumina powder as a control in order to develop its use as a minimally invasive operative technique. The cutting efficiency/pattern assessment on an enamel analogue, Macor, was preceded by studying the powder flow rate (PFR) of two different commercial intraoral air-abrasion units with differing powder-air admix systems. The parameters tested included air pressure, powder flow rate, nozzle-substrate distance, nozzle angle, shrouding the air stream with a curtain of water, and the chemistry of abrasive powder. The abraded troughs were scanned and analyzed using confocal white light profilometry and MountainsMap surface analysis software. Data were analyzed statistically using one-way and repeated-measures analysis of variance tests (p=0.05). The air-abrasion unit using a vibration mechanism to admix the abrasive powder with the air stream exhibited a constant PFR regardless of the set air pressure. Significant differences in cutting efficiency were observed according to the tested parameters (p<0.05). Alumina powder removed significantly more material than did BAG powder. Using low air pressure and suitable consideration of the effect of air-abrasion parameters on cutting efficiency/patterns can improve the ultraconservative cutting characteristics of BAG air-abrasion, thereby allowing an introduction of this technology for the controlled cleaning/removal of enamel, where it is indicated clinically.

Publisher

Operative Dentistry

Subject

General Dentistry

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