首页> 外文期刊>Beni-Suef University Journal of Basic and Applied Sciences >Reconstruction of images in non-scanned confocal microscope (NSCM) using speckle imaging
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Reconstruction of images in non-scanned confocal microscope (NSCM) using speckle imaging

机译:使用散斑成像在非扫描共聚焦显微镜 (NSCM) 中重建图像

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摘要

Background The common formation of images in CSLM assumes mechanically scanned object placed in the common short focus of the objective lenses of the microscope, while in the arrangement under study, the scanning of the object is realized by placing a diffuser behind the collimating lens. A model is suggested in the formation of images in Confocal Scanning Laser Microscope (CSLM) using non-scanned object. Since the illumination and detection are coherent, the obtained image is constructed from the simple product of the Resultant Point Spread Function (RPSF) modulated by the diffuser spread over the object transparency. Hence, the product of the object and the image of the diffuser replace the mechanical scanning of the object. Results Reconstructed images using this novel arrangement of CNSM are presented using mammographic X-ray image. Conclusions Convolution of the RPSF and the object is realized by the spreading of the diffuser image over the object. A coherent detector captures the whole image affected by a noisy diffused function. It is noted that image processing is necessary to improve noisy images making use of filtration techniques.
机译:背景 CSLM中图像的常见形成假设机械扫描的物体放置在显微镜物镜的公共短焦中,而在所研究的布置中,物体的扫描是通过在准直透镜后面放置扩散器来实现的。建议在共聚焦扫描激光显微镜(CSLM)中使用非扫描物体形成图像的模型。由于照明和检测是相干的,因此获得的图像是由扩散器在物体透明度上扩散调制的合成点扩散函数(RPSF)的简单积构建的。因此,物体的乘积和扩散器的图像取代了物体的机械扫描。结果 使用乳腺X线摄影X射线图像呈现了使用这种新颖的CNSM排列的重建图像。结论 RPSF与物体的卷积是通过扩散图像在物体上扩散来实现的。相干检测器捕获受噪声漫反射功能影响的整个图像。需要注意的是,图像处理对于利用过滤技术改善嘈杂图像是必要的。

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