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Multidirectional four-dimensional shape measurement system

机译:多向四维形状测量系统

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Currently, a lot of different scanning techniques are used for 3D imaging of human body. Most of existing systems are based on static registration of internal structures using MRI or CT techniques as well as 3D scanning of outer surface of human body by laser triangulation or structured light methods. On the other hand there is an existing mature 4D method based on tracking in time the position of retro-reflective markers attached to human body. There are two main drawbacks of this solution: markers are attached to skin (no real skeleton movement is registered) and it gives (x, y, z, t) coordinates only in those points (not for the whole surface). In this paper we present a novel multidirectional structured light measurement system that is capable of measuring 3D shape of human body surface with frequency reaching 60Hz. The developed system consists of two spectrally separated and hardware-synchronized 4D measurement heads. The principle of the measurement is based on single frame analysis. Projected frame is composed from sine-modulated intensity pattern and a special stripe allowing absolute phase measurement. Several different geometrical set-ups will be proposed depending on type of movements that are to be registered.
机译:当前,许多不同的扫描技术被用于人体的3D成像。现有的大多数系统基于使用MRI或CT技术对内部结构进行静态配准,以及通过激光三角测量或结构光方法对人体外表面进行3D扫描。另一方面,现有的成熟的4D方法是基于及时跟踪附着在人体上的回射标记的位置。该解决方案有两个主要缺点:标记附着在皮肤上(没有记录实际的骨骼运动),并且标记仅在这些点(而不是整个表面)上给出(x,y,z,t)坐标。在本文中,我们提出了一种新颖的多向结构光测量系统,该系统能够以60Hz的频率测量人体表面的3D形状。所开发的系统由两个光谱分离且硬件同步的4D测量头组成。测量原理基于单帧分析。投影帧由正弦调制强度图案和允许绝对相位测量的特殊条纹组成。根据要记录的运动类型,将提出几种不同的几何结构。

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