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Seamless stitching of tile scan microscope images

机译:瓷砖扫描显微镜图像的无缝拼接

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摘要

For diagnostic purposes, optical imaging techniques need to obtain high-resolution images of extended biological specimens in reasonable time. The field of view of an objective lens, however, is often smaller than the sample size. To image the whole sample, laser scanning microscopes acquire tile scans that are stitched into larger mosaics. The appearance of such image mosaics is affected by visible edge artefacts that arise from various optical aberrations which manifest in grey level jumps across tile boundaries. In this contribution, a technique for stitching tiles into a seamless mosaic is presented. The stitching algorithm operates by equilibrating neighbouring edges and forcing the brightness at corners to a common value. The corrected image mosaics appear to be free from stitching artefacts and are, therefore, suited for further image analysis procedures. The contribution presents a novel method to seamlessly stitch tiles captured by a laser scanning microscope into a large mosaic. The motivation for the work is the failure of currently existing methods for stitching nonlinear, multimodal images captured by our microscopic setups. Our method eliminates the visible edge artefacts that appear between neighbouring tiles by taking into account the overall illumination differences among tiles in such mosaics. The algorithm first corrects the nonuniform brightness that exists within each of the tiles. It then compensates for grey level differences across tile boundaries by equilibrating neighbouring edges and forcing the brightness at the corners to a common value. After these artefacts have been removed further image analysis procedures can be applied on the microscopic images. Even though the solution presented here is tailored for the aforementioned specific case, it could be easily adapted to other contexts where image tiles are assembled into mosaics such as in astronomical or satellite photos.
机译:为了诊断,光学成像技术需要在合理的时间内获得扩展的生物标本的高分辨率图像。但是,物镜的视场通常小于样本大小。为了对整个样品成像,激光扫描显微镜需要获取拼接成更大马赛克的瓷砖扫描图像。这种图像马赛克的外观受到可见边缘伪影的影响,这些伪影是由各种光学像差引起的,这些像差表现为跨越瓷砖边界的灰度级跃变。在此贡献中,提出了一种将瓷砖缝成无缝马赛克的技术。拼接算法通过平衡相邻边缘并强制拐角处的亮度为共同值来进行操作。校正后的图像马赛克似乎没有缝合伪影,因此适合于进一步的图像分析程序。该文稿提出了一种新颖的方法,可以将激光扫描显微镜捕获的瓷砖无缝拼接成大马赛克。进行这项工作的动机是当前现有的用于缝合由我们的显微装置捕获的非线性,多峰图像的方法的失败。我们的方法通过考虑此类马赛克中瓷砖之间的总体照明差异,消除了出现在相邻瓷砖之间的可见边缘伪影。该算法首先校正每个图块内存在的不均匀亮度。然后,它通过平衡相邻边缘并强制拐角处的亮度为一个公共值来补偿跨图块边界的灰度级差异。在去除这些伪影之后,可以在显微图像上应用进一步的图像分析程序。即使此处介绍的解决方案是针对上述特定情况而量身定制的,它也可以轻松地应用于将图像图块组装成马赛克的其他情况,例如天文或卫星照片。

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