首页> 外文会议>Conference on Reliability, Packaging, Testing, and Characterization of MEMS/MOEMS >Confocal Microscopy Scanned by Digital Micromirror Devise with Stray Light Filters
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Confocal Microscopy Scanned by Digital Micromirror Devise with Stray Light Filters

机译:具有杂散灯过滤器的数字微镜装置扫描的共聚焦显微镜

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This research proposes a newly developed stray light filter, which might significantly eliminate the stray light and ghost image effect for the non-contact con-focal microscopy system handled by (Digital Micromirror Device, DMD) devise. DMD devise, which was introduced by Taxes instrument under advanced technology of Micro-Electro-Mechanical Systems, MEMS, could be the replacement of traditional scanning system. The employment of DMD system takes advantages of fast scanning rate, better resolution, simplifies optical system. However, traditional confocal microscopy system with pinhole will lead to light starving and potentially higher signal to noise ratio.Without pinhole, the stray light and ghost image effect might complicate the signal measurement. A newly developed stray light filter will be presented in this research in order to eliminate the potential stray light and ghost image without sacrifice of luminance. It indicated that not only optical system could be much simplified but also resolution could be one step higher because neither pinhole nor CCD camera lens will be employed in this system. Experimental results will be shown in this research demonstrating an increase in contrast up to 60%.
机译:该研究提出了一种新开发的杂散滤光片,这可能显着消除由(数字微镜器件,DMD)设计的非接触式孔隙焦显微镜系统的杂散光和鬼波图像效果。 DMD Devise,税务仪表在微机电系统,MEMS的先进技术下引入,可以是更换传统扫描系统。 DMD系统的就业采用快速扫描速率,更好的分辨率,简化了光学系统。然而,具有针孔的传统共聚焦显微镜系统将导致光线饥饿和可能更高的信噪比。散孔,杂散灯和鬼波图像效应可能会使信号测量复杂化。在该研究中展示了新开发的杂散滤光器,以消除潜在的杂散光和鬼图像而不会牺牲亮度。它表明,不仅光学系统可能会很大简化,而且还有一个步骤可以是更高的一步,因为该系统中都没有采用针孔和CCD相机镜头。实验结果将在本研究中显示,呈现对比度增加60%。

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