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由于传统的显微镜成像需要精确的光学聚焦过程,很难检测到在水体中运动的肝吸虫尾蚴,更难以对其进行连续的动态观测.针对此问题,提出了利用单光束同轴数字全息视频技术对在水体中运动的肝吸虫尾蚴进行连续动态观测的方法,研究了其中的动态跟踪聚焦算法和视频处理算法.利用上一帧再现像中尾蚴的中心位置作为下一帧全息再现中聚焦窗口的中心位置,使聚焦窗口始终跟随观测的尾蚴移动,从而保证处理全息视频时每一帧再现像都能准确自动聚焦,使再现视频中肝吸虫尾蚴始终处于清晰状态.进行了肝吸虫尾蚴观测实验,得到肝吸虫尾蚴在水体中运动的全息再现视频,并对其运动轨迹进行了跟踪,总结了肝吸虫尾蚴在水体中的运动规律.实验结果表明,利用数字全息技术拍摄一张数字全息图即可观察到水体中不同位置的肝吸虫尾蚴,检测更加方便高效;本文提出的数字全息视频成像技术能实现对水体中的肝吸虫尾蚴或其它浮游生物进行连续动态观测.  相似文献   
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In this paper, we demonstrate that thermal stress is the main mechanism in the process of paint removal by Q-switched Nd:YAG laser (λ = 1064 nm, τ = 10 ns). A theoretical model ofpaint removal by short-pulse laser is established from the perspective of thermal stress. Thermal stress is generated by thermal expansion, and the temperatures of different samples are calculated according to the one-dimensional (1D) heat conduction equation. The theoretical cleaning threshold can be obtained by comparing thermal stress with the adhesion of paint, and the theoretical damage threshold is obtained by calculating the temperature. Moreover, the theoretical calculations are verified by experimental results. It is shown that the thermal stress model of the laser cleaning is very useful to choose the appropriate laser fluence in the practical applications of paint removal by Q-switched Nd: YAG laser because our model can validly balance the efficiency of laser cleaning and the safety of the substrate.  相似文献   
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