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Study on the 3D non-contact measurement method of hyaloid and closed container

机译:舌骨和密闭容器的3D非接触式测量方法研究

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The research of microfluidic chip is a vital domain and the forefront of micro total analysis systems (μTAS). Compared with the development of microfluidic chip, the research of detecting systems for microfluidic chip is backward. The micro stereo vision system is a good solution for non-contact measurement of microfluidic chip. However, it often meets refraction of light and occlusion. In this paper, based on optical theory and digital image processing, the micro stereo imaging principle of stereo light microscope (SLM) is studied and the refraction correction and micro stereo occlusion correction algorithms are proposed to achieve microfluidic chip detection. These algorithms quantize the influence of cover plate and occlusion on the measurement accuracy, and realize nondestructive, non-contact and precise 3D measurement of a hyaloid and closed container.
机译:微流控芯片的研究是微全分析系统(μTAS)的重要领域和前沿。与微流控芯片的发展相比,微流控芯片检测系统的研究是落后的。微立体视觉系统是微流体芯片非接触式测量的良好解决方案。然而,它经常遇到光的折射和遮挡。本文基于光学理论和数字图像处理技术,研究了立体光学显微镜(SLM)的微立体成像原理,提出了折射校正和微立体遮挡校正算法,以实现微流控芯片的检测。这些算法量化了盖板和咬合对测量精度的影响,并实现了透明的,透明的,透明的容器的无损,无接触和精确的3D测量。

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