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Adaptive position calibration technique for an optical micro-scanning thermal microscope imaging system

机译:光学微扫描热显微镜成像系统的自适应位置校准技术

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摘要

In order to improve the spatial resolution of an optical micro-scanning thermal microscope system, the micro-scanning position must be accurately calibrated. An adaptive calibration method based on image registration and plane coordinate system is proposed. The meaning of calibration is given, and the principle and method of point calibration are introduced in detail and experiments using the real system were done. Different reconstruction methods were applied to reconstruct the visible light image and the real thermal microscope image, and the evaluation scores are given. Results of simulation and real thermal imaging processing show that the method can successfully calibrate the micro-scanning position. The method can significantly improve the oversampled reconstructed image quality, thus enhancing the spatial resolution of the system. This method can also be used in other electro-optical imaging systems.
机译:为了提高光学微扫描热显微镜系统的空间分辨率,必须精确校准微扫描位置。 提出了一种基于图像配准和平面坐标系的自适应校准方法。 给出了校准的含义,并详细介绍了点校准的原理和方法,并完成了使用真实系统的实验。 应用不同的重建方法来重建可见光图像和真实热显微镜图像,并给出评估分数。 仿真结果和实际热成像处理表明该方法可以成功校准微扫描位置。 该方法可以显着提高过采样的重建图像质量,从而提高系统的空间分辨率。 该方法也可以用于其他电光成像系统中。

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