FE Röntgenphysik, Universität Göttingen, Germany.
IEEE Trans Image Process. 1998;7(2):258-63. doi: 10.1109/83.661006.
In this work, we show that digital image processing methods can be applied to enhance the quality of X-ray microscopic images. One application of X-ray microscopy is imaging of biological specimens in their natural aqueous environment. Since X radiation can introduce structural changes in these objects when observing them at room temperature, it is sometimes necessary to take images with short exposure time. The image quality can thus be reduced due to low signal-to-noise ratio (SNR). Digital image processing methods can be applied to reduce image degradation caused by noise. Another example of a digital image processing method we applied to X-ray microscopy images is contrast enhancement of structures near the resolution limit of the microscope. Structures of 20 nm in size, which show weak contrast in the original image, become more clearly visible after restoration. Since image restoration methods are based on the knowledge of the optical transfer function (OTF) or the point spread function (PSF), a handy method for quick PSF determination is presented. An iterative image-restoration method was applied to pictures obtained with the Gottingen transmission X-ray microscope at BESSY. Results of image quality enhancement by this method are shown for images of polytene chromosomes of Chironomus Thummi larvae, test-structures and in situ hybridization on Xist RNA using biotinilated DNA probe.
在这项工作中,我们展示了数字图像处理方法可用于提高 X 射线显微镜图像的质量。X 射线显微镜的一个应用是在其自然水环境中对生物样本进行成像。由于 X 射线在室温下观察这些物体时会引入结构变化,因此有时需要拍摄短曝光时间的图像。由于信噪比(SNR)低,图像质量可能会降低。数字图像处理方法可用于减少噪声引起的图像退化。我们应用于 X 射线显微镜图像的另一种数字图像处理方法是增强接近显微镜分辨率极限的结构的对比度。在原始图像中对比度较弱的 20nm 大小的结构在修复后变得更加清晰可见。由于图像恢复方法基于光学传递函数(OTF)或点扩散函数(PSF)的知识,因此提出了一种用于快速确定 PSF 的便捷方法。迭代图像恢复方法应用于在 BESSY 的哥廷根透射 X 射线显微镜获得的图像,结果显示了用生物素化 DNA 探针进行多线染色体、测试结构和原位杂交的 Chironomus Thummi 幼虫的图像质量增强。