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Accuracy assessment of high frequency 3D ultrasound for digital impression-taking of prepared teeth

机译:高频3D超声对准备牙齿的数字印象的准确性评估

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Silicone based impression-taking of prepared teeth followed by plaster casting is well-established but potentially less reliable, error-prone and inefficient, particularly in combination with emerging techniques like computer aided design and manufacturing (CAD/CAM) of dental prosthesis. Intra-oral optical scanners for digital impression-taking have been introduced but until now some drawbacks still exist. Because optical waves can hardly penetrate liquids or soft-tissues, sub-gingival preparations still need to be uncovered invasively prior to scanning. High frequency ultrasound (HFUS) based micro-scanning has been recently investigated as an alternative to optical intra-oral scanning. Ultrasound is less sensitive against oral fluids and in principal able to penetrate gingiva without invasively exposing of sub-gingival preparations. Nevertheless, spatial resolution as well as digitization accuracy of an ultrasound based micro-scanning system remains a critical parameter because the ultrasound wavelength in water-like media such as gingiva is typically smaller than that of optical waves. In this contribution, the in-vitro accuracy of ultrasound based micro-scanning for tooth geometry reconstruction is being investigated and compared to its extra-oral optical counterpart. In order to increase the spatial resolution of the system, 2nd harmonic frequencies from a mechanically driven focused single element transducer were separated and corresponding 3D surface models were calculated for both fundamentals and 2nd harmonics. Measurements on phantoms, model teeth and human teeth were carried out for evaluation of spatial resolution and surface detection accuracy. Comparison of optical and ultrasound digital impression taking indicate that, in terms of accuracy, ultrasound based tooth digitization can be an alternative for optical impression-taking.
机译:基于硅氧烷的取模预备牙齿随后石膏铸件的是行之有效的,但可能不太可靠,易错且效率低,特别是在与像假牙的计算机辅助设计和制造(CAD / CAM)的新兴技术的组合。数字取模口腔内的光学扫描仪已经出台,但到现在为止一些缺点仍然存在。因为光波难以浸透的液体或软组织中,子牙龈制剂仍然需要被发现侵入之前扫描。高频超声(HFUS)基于微扫描最近已经研究了作为替代光学口腔扫描。超声是抗口腔流体较不敏感,并在主要能够穿透牙龈无侵入地暴露子牙龈制剂。然而,空间分辨率以及超声基于微扫描系统的数字化精度仍然是一个关键参数,因为在超声波波长的水状介质,诸如牙龈通常比光波的小。在这方面的贡献,基于超声的微扫描齿几何重建的体外精度正在被研究,并与它的口外光学对应。为了提高该系统的空间分辨率,从机械驱动的第二谐波频率集中分离,分别计算两个基本面和第二谐波对应的3D表面模型换能器单个元件。上模体,模型牙齿和人类牙齿测量为空间分辨率和表面检测精度的评价进行。的光学和超声数字印模取比较表明,在准确度方面,基于超声数字化齿可以是用于光取模的替代方案。

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