Istituto Scientifico Romagnolo per lo Studio e la Cura dei Tumori (IRST) IRCCS, Meldola, Italy.
Advanced Research Center on Electronic Systems for Information and Communication Technologies "E. De Castro" (ARCES), University of Bologna, Bologna, Italy.
Biomed Res Int. 2018 Jun 7;2018:7082154. doi: 10.1155/2018/7082154. eCollection 2018.
Image mosaicing permits achieving one high-resolution image, extending the visible area of the sample while keeping the same resolution. However, intensity inhomogeneity of the stitched images can alter measurements and the right perception of the original sample. The problem can be solved by flat-field correcting the images through the vignetting function. Vignetting correction has been widely addressed for grey-level images, but not for colour ones. In this work, a practical solution for the colour vignetting correction in microscopy, also facing the problem of saturated pixels, is described. In order to assess the quality of the proposed approach, five different tonal correction approaches were quantitatively compared using state-of-the-art metrics and seven pairs of partially overlapping images of seven different samples. The results obtained proved that the proposed approach allows obtaining high quality colour flat-field corrected images and seamless mosaics without employing any blending adjustment. In order to give the opportunity to easily obtain seamless mosaics ready for quantitative analysis, the described vignetting correction method has been implemented in an upgraded release of (version ), an open-source software specifically designed to automatically obtain mosaics of partially overlapped images.
图像拼接可以实现一张高分辨率的图像,在保持相同分辨率的同时扩展样本的可见区域。然而,拼接图像的强度不均匀性会改变测量结果和对原始样本的正确感知。可以通过使用渐晕函数对图像进行平场校正来解决这个问题。渐晕校正已经广泛应用于灰度图像,但不适用于彩色图像。在这项工作中,描述了一种用于显微镜的实用的彩色渐晕校正方法,同时也解决了像素饱和的问题。为了评估所提出方法的质量,使用最先进的指标和七个不同样本的七对部分重叠图像对五种不同的色调校正方法进行了定量比较。结果表明,所提出的方法可以在不使用任何混合调整的情况下获得高质量的彩色平场校正图像和无缝拼接。为了方便地获得可用于定量分析的无缝拼接,已在专门用于自动获取部分重叠图像拼接的开源软件(版本)的升级版本中实现了所描述的渐晕校正方法。