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Low Cost 3D Face Scanning Based on Landmarks and Photogrammetry A New Tool for a Surface Diagnosis in Orthodontics

机译:基于地标和摄影测量的低成本3D面部扫描:牙齿正畸表面诊断的新工具

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Anthropometry is an objective tool serving to evaluate the shape of the face and reveal changes observed in the subject over time, or among different subjects, analyzing quantitative and qualitative differences. It also permits the study of normal and abnormal growth, diagnosis of genetic or acquired malformations, planning and evaluation of surgical and/or orthodontic therapy, and verification of the treatment results by analyzing, measuring and comparing the face shape. Among 3D digitization technologies, photogrammetry shows great promise because it is a low cost, biocompatible, safe and non-invasive methodology, but it still suffers from a need for considerable human intervention. In previous research, the Authors illustrated a new approach based on a 3-Cameras photogrammetric system. After several tests, conducted to verify the validity of this methodology, the present experimental study was carried out using a re-engineered photogrammetric scanning system to obtain landmark-models of human faces, and comparing these results with those achieved with laser scanning, applied to a dummy face (in order to eliminate errors caused by breathing movements in a living subject). Two different, specifically designed experimental 3D photogrammetric setups have been developed and tested to enhance the performance. This research demonstrates the potential of low-cost photogrammetry for medical digitization; further research will be addressed to testing the use of the scanning system on humans to validate its clinical performance.
机译:人体测量学是一种客观工具,可用来评估脸部形状并揭示对象随时间推移或不同对象之间观察到的变化,分析定量和定性差异。它还允许研究正常和异常生长,遗传或后天畸形的诊断,外科和/或正畸治疗的计划和评估,以及通过分析,测量和比较面部形状来验证治疗结果。在3D数字化技术中,摄影测量法显示出了巨大的前景,因为它是一种低成本,生物相容性,安全且无创的方法,但是它仍然需要大量的人工干预。在先前的研究中,作者举例说明了一种基于3相机摄影测量系统的新方法。经过数次测试以验证该方法的有效性,使用重新设计的摄影测量扫描系统进行了本实验研究,以获得人脸的界标模型,并将这些结果与通过激光扫描获得的结果进行了比较,假人脸(以消除由于在活体中呼吸运动引起的错误)。已经开发并测试了两种不同的,经过专门设计的实验性3D摄影测量设置,以增强性能。这项研究证明了低成本摄影测量技术在医学数字化方面的潜力。将进行进一步的研究以测试扫描系统在人体上的使用,以验证其临床性能。

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