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Digital fringe projection for hand surface coordinate variation analysis caused by osteoarthritis

机译:用于手工坐标变异分析的数字边缘投影骨关节炎

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Hand osteoarthritis is one of the most common forms of arthritis which impact millions of people worldwide. The disabling problem occurs when the protective cartilage on the boundaries of bones wear off over time. Currently, in order to identify hand osteoarthritis, special instruments namely X-ray scanning and MRI are used for the detection but it also has its limitations such as radiation exposure and can be quite costly. In this work, an optical metrology system based on digital fringe projection which comprises of an LCD projector, CCD camera and a personal computer has been developed to anticipate abnormal growth or deformation on the joints of the hand which are common symptoms of osteoarthritis. The main concept of this optical metrology system is to apply structured light as imaging source for surface change detection. The imaging source utilizes fringe patterns generated by C++ programming and is shifted by 3 phase shifts based on the 3 steps 2 shifts method. Phase wrapping technique and analysis were applied in order to detect the deformation of live subjects. The result has demonstrated a successful method of hand deformation detection based on the pixel tracking differences of a normal and deformed state.
机译:手骨关节炎是最常见的关节炎形式之一,影响全世界数百万人。当骨骼边界上的保护软骨随着时间的推移磨损的界限时,会发生禁用问题。目前,为了识别手骨关节炎,特殊仪器即X射线扫描和MRI用于检测,但它也具有其局限性,如辐射曝光,并且可以是昂贵的。在这项工作中,它包括一个液晶投影仪,CCD相机和个人计算机的基于数字条纹投影光学计量系统已经发展到预期的手的关节,其是骨关节炎的常见症状异常生长或变形。该光学计量系统的主要概念是将结构化光作为成像源应用于表面变化检测。成像源利用由C ++编程生成的条纹图案,并基于3步2换档方法偏移3相移。应用相包装技术和分析,以检测实时受试者的变形。结果证明了基于正常和变形状态的像素跟踪差异的手动变形检测方法。

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