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Modeling and measurement of root canal using stereo digital radiography

机译:立体数字射线照相的根管建模与测量

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Determining root canal length is a crucial step in success of root canal treatment. Root canal length is commonly estimated based on pre-operation intraoral radiography. 2D depiction of a 3D object is the primary source of error in this approach. Techniques based on impedance measurement are more accurate than radiographic approaches, but do not offer a method for depicting the shape of canal. In this study, we investigated a stererotactic approach for modeling and measurement of root canal of human dentition. A weakly perspective model approximated the projectional geometry. A series of computer-simulated objects was used to test accuracy of this model as the first step. The, to assess the clinical viability of such an approach, endodontic files inserted in the root canal phantoms were fixed on an adjustable platform between a radiographic cone and an image receptor. Parameters of projection matrix were computed based on the relative positions of image receptors, focal spot, and test objects. Rotating the specimen platform from 0 to 980 degrees at 5-degree intervals set relative angulations for stereo images. Root canal is defined as the intersection of two surfaces defined by each projection. Computation of error for length measurement indicates that for angulations greater than 40 degrees the error is within clinically acceptable ranges.
机译:确定根部管长是根管治疗成功的关键步骤。基于预操作前的内部射线照相术语,省略根管长度。图2D描绘了3D对象是该方法中的主要错误源。基于阻抗测量的技术比射线照相方法更准确,但不提供描绘运河形状的方法。在这项研究中,我们研究了用于人类牙列根管的模拟和测量的甾体术方法。弱透视模型近似突出几何形状。一系列计算机模拟对象用于测试该模型的准确性作为第一步。该方法,评估这种方法的临床活力,将插入根管谱系中的牙髓文件固定在放射线锥和图像受体之间的可调平台上。基于图像受体,焦点和测试对象的相对位置来计算投影矩阵的参数。以5度间隔将样本平台从0到980度旋转,设置立体图像的相对角度。根管被定义为每个投影定义的两个表面的交叉点。长度测量误差的计算表示,对于大于40度的角度,误差在临床上可接受的范围内。

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