Detection of Marginal Leakage of Class V Restorations In Vitro by Micro–Computed Tomography

Author:

Zhao XY1,Li SB2,Gu LJ3,Li Y2

Affiliation:

1. Xin-yi Zhao, PhD, School of Stomatology, the Fourth Military Medical University, Xi'an, Shaanxi, China

2. Shi-bao Li, PhD, School of Stomatology, the Fourth Military Medical University, Xi'an, Shaanxi, China

3. Lin-juan Gu, MSD, School of Stomatology, the Fourth Military Medical University, Xi'an, Shaanxi, China

Abstract

SUMMARY This in vitro study evaluated the efficacy of micro–computed tomography (CT) in marginal leakage detection of Class V restorations. Standardized Class V preparations with cervical margins in dentin and occlusal margins in enamel were made in 20 extracted human molars and restored with dental bonding agents and resin composite. All teeth were then immersed in 50% ammoniacal silver nitrate solution for 12 hours, followed by a developing solution for eight hours. Each restoration was scanned by micro-CT, the depth of marginal silver leakage in the central scanning section was measured, and the three-dimensional images of the silver leakage around each restoration were reconstructed. Afterward, all restorations were cut through the center and examined for leakage depth using a microscope. The silver leakage depth of each restoration obtained by the micro-CT and the microscope were compared for equivalency. The silver leakage depth in cervical walls observed by micro-CT and microscope showed no significant difference; however, in certain cases the judgment of leakage depth in the occlusal wall in micro-CT image was affected by adjacent enamel structure, providing less leakage depth than was observed with the microscope (p<0.01). Micro-CT displayed the three-dimensional image of the leakage around the Class V restorations with clear borders only in the dentin region. It can be concluded that micro-CT can detect nondestructively the leakage around a resin composite restoration in two and three dimensions, with accuracy comparable to that of the conventional microscope method in the dentin region but with inferior accuracy in the enamel region.

Publisher

Operative Dentistry

Subject

General Dentistry

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