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从二维到三维:用于从全景X光片检测牙根形状和位置的三维参数模型构建——初步报告

From 2D to 3D: Construction of a 3D Parametric Model for Detection of Dental Roots Shape and Position from a Panoramic Radiograph-A Preliminary Report.

作者信息

Mazzotta Laura, Cozzani Mauro, Razionale Armando, Mutinelli Sabrina, Castaldo Attilio, Silvestrini-Biavati Armando

机构信息

Università di Genova, Via Fontevivo 21N, 19125 La Spezia, Italy.

出版信息

Int J Dent. 2013;2013:964631. doi: 10.1155/2013/964631. Epub 2013 Mar 11.

Abstract

Objectives. To build a 3D parametric model to detect shape and volume of dental roots, from a panoramic radiograph (PAN) of the patient. Materials and Methods. A PAN and a cone beam computed tomography (CBCT) of a patient were acquired. For each tooth, various parameters were considered (coronal and root lengths and widths): these were measured from the CBCT and from the PAN. Measures were compared to evaluate the accuracy level of PAN measurements. By using a CAD software, parametric models of an incisor and of a molar were constructed employing B-spline curves and free-form surfaces. PAN measures of teeth 2.1 and 3.6 were assigned to the parametric models; the same two teeth were segmented from CBCT. The two models were superimposed to assess the accuracy of the parametric model. Results. PAN measures resulted to be accurate and comparable with all other measurements. From model superimposition the maximum error resulted was 1.1 mm on the incisor crown and 2 mm on the molar furcation. Conclusion. This study shows that it is possible to build a 3D parametric model starting from 2D information with a clinically valid accuracy level. This can ultimately lead to a crown-root movement simulation.

摘要

目的。从患者的全景X线片(PAN)构建一个三维参数模型,以检测牙根的形状和体积。材料与方法。获取了一名患者的一张PAN和一张锥形束计算机断层扫描(CBCT)图像。对于每颗牙齿,考虑了各种参数(冠部和根部的长度及宽度):这些参数从CBCT和PAN上进行测量。对测量结果进行比较,以评估PAN测量的准确程度。通过使用计算机辅助设计(CAD)软件,采用B样条曲线和自由曲面构建了一颗切牙和一颗磨牙的参数模型。将牙齿2.1和3.6的PAN测量值赋予参数模型;从CBCT中分割出相同的两颗牙齿。将这两个模型进行叠加,以评估参数模型的准确性。结果。PAN测量结果准确,且与所有其他测量结果具有可比性。通过模型叠加,切牙冠部的最大误差为1.1毫米,磨牙分叉处的最大误差为2毫米。结论。本研究表明,从二维信息出发构建具有临床有效准确程度的三维参数模型是可行的。这最终可能会实现冠根移动模拟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5d3/3608259/f16901bfa5e6/IJD2013-964631.001.jpg

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