Silva Alessandro A L S, Franco Ademir, Fernandes Ângela, Costa Claudio, Barbosa Jorge S, Westphalen Fernando H
Departamento de Odontologia, Escola de Ciências da Vida, Pontifícia Universidade Católica do Paraná/PUCPR, Rua Imaculada Conceição, 1155, Prado Velho, 80215-901 Curitiba, PR, Brazil.
Departamento de Educação Tecnológica, Centro Universitário de Várzea Grande/UNIVAG, Av. Dom Orlando Chaves, 2655, Cristo Rei, 78118-900 Várzea Grande, MT, Brazil.
An Acad Bras Cienc. 2017 Oct-Dec;89(4):2865-2873. doi: 10.1590/0001-3765201720170227. Epub 2017 Dec 7.
The present study aimed to assess the accuracy of linear measurements performed with two software packages in multislice (MSCT) and cone beam (CBCT) computed tomography (CT) images. The sample consisted of 10 human mandibles marked standardly 8 times with metallic orthodontic wires. The mandibles underwent both MSCT and CBCT scanning and were measured linearly and digitally with two software packages, namely Studio 3.1® (Anne Solutions®, SP, Brazil) (ST) and Implant Viewer 2.817® (Anne Solutions®, SP, Brazil) (IV). The linear measurements were the mandibular height (MH) and width (MW), and the distance from the alveolar ridge to the mandibular canal (AC). To validate the measurements, the mandibles were sectioned in the marked regions and measured with a digital caliper. Statistically significant differences were not observed between the measurements (MH, MW, and AC) taken digitally with the two software packages from images obtained from the two scanning modalities (MSCT and CBCT) and the measurements taken manually with a digital caliper (p>0.05). MSCT and CBCT images measured digitally with ST and IV software packages resulted in reliable outcomes when compared to measurements obtained manually. Both software and imaging modalities are reliably useful for planning surgical procedure in the dental practice.
本研究旨在评估在多层螺旋计算机断层扫描(MSCT)和锥束计算机断层扫描(CBCT)图像中使用两个软件包进行线性测量的准确性。样本包括10个人类下颌骨,用金属正畸丝标准标记8次。对下颌骨进行了MSCT和CBCT扫描,并用两个软件包进行了线性和数字测量,这两个软件包分别是Studio 3.1®(Anne Solutions®,巴西圣保罗)(ST)和Implant Viewer 2.817®(Anne Solutions®,巴西圣保罗)(IV)。线性测量包括下颌高度(MH)、宽度(MW)以及牙槽嵴到下颌管的距离(AC)。为了验证测量结果,在下颌骨的标记区域进行切片,并用数字卡尺进行测量。在两种扫描方式(MSCT和CBCT)获得的图像上,使用这两个软件包进行数字测量(MH、MW和AC)与使用数字卡尺进行手动测量之间未观察到统计学上的显著差异(p>0.05)。与手动测量结果相比,使用ST和IV软件包对MSCT和CBCT图像进行数字测量得出了可靠的结果。在牙科实践中,软件和成像方式对于手术规划都具有可靠的实用性。