Rotational positioning method based on the microscopic vision

Yong Wang, Zhan Yang, Junhui Zhu, Yulong Zhu, Changhai Ru, Pengbo Wang
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引用次数: 1

Abstract

This paper reported a rotational positioning method based on the microscopic vision. Rotational positioning method has important applications in image scanning of biological tissue or cell injection experiments. A compact rotational stage driven by a stepper motor is utilized, and cross mark alignment method with unequal length is proposed to aid positioning. Feature tracking algorithm is utilized to track the target in real time. Combined with the X/Y stage of the inverted microscope and image-based visual servo controller, positioning the biological sample could be completed. The experiment shows that, after positioning the two cross marks' angle deviation is 0.462° and the position difference is 2~3 μm meeting with the biological operation requirements.
基于显微视觉的旋转定位方法
本文报道了一种基于显微视觉的旋转定位方法。旋转定位方法在生物组织图像扫描或细胞注射实验中有着重要的应用。采用步进电机驱动的紧凑旋转平台,采用不等长十字标记对中方法辅助定位。利用特征跟踪算法对目标进行实时跟踪。结合倒置显微镜的X/Y台和基于图像的视觉伺服控制器,即可完成生物样品的定位。实验表明,定位后两个十字标记的角度偏差为0.462°,位置差为2~3 μm,满足生物操作要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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