Abstract

BackgroundIn recent years, hyperspectral microscopy techniques such as infrared or Raman microscopy have been applied successfully for diagnostic purposes. In many of the corresponding studies, it is common practice to measure one and the same sample under different types of microscopes. Any joint analysis of the two image modalities requires to overlay the images, so that identical positions in the sample are located at the same coordinate in both images. This step, commonly referred to as image registration, has typically been performed manually in the lack of established automated computational registration tools.ResultsWe propose a corresponding registration algorithm that addresses this registration problem, and demonstrate the robustness of our approach in different constellations of microscopes. First, we deal with subregion registration of Fourier Transform Infrared (FTIR) microscopic images in whole-slide histopathological staining images. Second, we register FTIR imaged cores of tissue microarrays in their histopathologically stained counterparts, and finally perform registration of Coherent anti-Stokes Raman spectroscopic (CARS) images within histopathological staining images.ConclusionsOur validation involves a large variety of samples obtained from colon, bladder, and lung tissue on three different types of microscopes, and demonstrates that our proposed method works fully automated and highly robust in different constellations of microscopes involving diverse types of tissue samples.Electronic supplementary materialThe online version of this article (doi:10.1186/s12859-015-0804-9) contains supplementary material, which is available to authorized users.

Highlights

  • Vibrational Microspectroscopy and Spectral Histopathology Several microscopy techniques have been established in recent years to capture spectra of molecular vibrations at high spatial resolution

  • We assessed its performance in subimage registration: We registered Fourier Transform Infrared (FTIR) images displaying subregions of histopathological slides, which were captured completely in the Hematoxylin and Eosin (H&E) image

  • We demonstrate the performance of our registration method in the registration of a Coherent AntiStokes Raman (CARS) microscopically imaged region of interest within an H&E image of the same sample

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Summary

Results

We propose a corresponding registration algorithm that addresses this registration problem, and demonstrate the robustness of our approach in different constellations of microscopes. We deal with subregion registration of Fourier Transform Infrared (FTIR) microscopic images in whole-slide histopathological staining images. We register FTIR imaged cores of tissue microarrays in their histopathologically stained counterparts, and perform registration of Coherent anti-Stokes Raman spectroscopic (CARS) images within histopathological staining images

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