Peters O A, Laib A, Rüegsegger P, Barbakow F
Department of Preventive Dentistry, Cariology and Periodontology, University of Zürich, Switzerland.
J Dent Res. 2000 Jun;79(6):1405-9. doi: 10.1177/00220345000790060901.
A detailed understanding of the complexity of root canal systems is imperative to ensure successful root canal preparation. The aim of this study was to evaluate the potential and accuracy of a three-dimensional, non-destructive technique for detailing root canal geometry by means of high-resolution tomography. The anatomy of root canals in 12 extracted human maxillary molars was analyzed by means of a micro-computed tomography scanner (microCT, cubic resolution 34 microm). A special mounting device facilitated repeated precise repositioning of the teeth in the microCT. Surface areas and volumes of each canal were calculated by triangulation, and means were determined. Model-independent methods were used to evaluate the canals' diameters and configuration. The calculated and measured volumes and the areas of artificial root canals, produced by the drilling of precision holes into dentin disks, were well-correlated. Semi-automated repositioning of specimens resulted in near-perfect matching (< 1 voxel) when outer canal contours were assessed. Root canal geometry was accurately assessed by this innovative technique; therefore, variables and indices presented may serve as a basis for further analyses of root canal anatomy in experimental endodontology.
深入了解根管系统的复杂性对于确保根管预备的成功至关重要。本研究的目的是评估一种三维无损技术通过高分辨率断层扫描详细显示根管形态的潜力和准确性。通过微型计算机断层扫描仪(microCT,立方分辨率34微米)分析了12颗拔除的人类上颌磨牙的根管解剖结构。一种特殊的固定装置便于在微型计算机断层扫描仪中对牙齿进行重复精确的重新定位。通过三角测量法计算每条根管的表面积和体积,并确定其平均值。使用与模型无关的方法评估根管的直径和形态。通过在牙本质盘中钻精密孔制作的人工根管的计算体积和测量体积以及面积具有良好的相关性。当评估根管外轮廓时,标本的半自动重新定位导致近乎完美的匹配(<1体素)。通过这种创新技术可以准确评估根管形态;因此,所呈现的变量和指标可作为进一步分析实验性牙髓病学中根管解剖结构的基础。