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An automated technique for the generation of facial surface models as an aid in orthodontic and facial orthognathic research

机译:一种自动化技术,用于产生面部表面模型作为正畸和面部正畸研究的辅助

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A non-invasive technique for the automatic production of surface models from stereo imagery of human faces is described. The technique uses imagery in a digital format and is designed for use on a personal workstation, such as an IBM RS6000, Acorn R260 or Sun SPARC. Once the stereo imagery has been obtained it is correlated using a coarse-to-fine area based stereo matcher. This differs from many current stereo matching algorithms in that it is designed to correlate quasi continuous surfaces, such a faces, rather than isolated point or line features. The result is the production of a dense digital disparity model (DDM) covering the stereo extent of the imagery. The DDM produced may then be projected through a numerical geometrical model of the CCD sensors used to acquire the imagery, thus yielding a digital surface model of the face. The surface model produced may then be manipulated by medical and dental practitioners to study both quantitatively and qualitatively the facial soil tissue morphology and growth and the effects of orthodontic surgery on a patient's appearance.
机译:描述了一种来自人称立体图像的表面模型的非侵入性技术。该技术以数字格式使用图像,设计用于个人工作站,例如IBM RS6000,Acorn R260或Sun Sparc。一旦获得了立体图像,就使用基于粗大的区域的立体声匹配器来相关。这与许多当前立体声匹配算法不同,因为它被设计为与Quasi连续表面,这样的面,而不是隔离点或线特征相关。结果是生产密集的数字视差模型(DDM),涵盖图像的立体声范围。然后可以通过用于获取图像的CCD传感器的数值几何模型来投射所产生的DDM,从而产生面部的数字表面模型。然后可以通过医疗和牙科从业者制造的表面模型来定量和定性地研究面部土壤组织形态和生长以及正畸手术对患者外观的影响。

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