Published in

Oxford University Press, Bioinformatics, 11(33), p. 1712-1720, 2017

DOI: 10.1093/bioinformatics/btx035

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Extracting morphologies from third harmonic generation images of structurally normal human brain tissue

Journal article published in 2017 by Zhiqing Zhang, Nikolay V. Kuzmin, Marie Louise Groot ORCID, Jan C. de Munck
This paper was not found in any repository, but could be made available legally by the author.
This paper was not found in any repository, but could be made available legally by the author.

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Abstract

Abstract Motivation The morphologies contained in 3D third harmonic generation (THG) images of human brain tissue can report on the pathological state of the tissue. However, the complexity of THG brain images makes the usage of modern image processing tools, especially those of image filtering, segmentation and validation, to extract this information challenging. Results We developed a salient edge-enhancing model of anisotropic diffusion for image filtering, based on higher order statistics. We split the intrinsic 3-phase segmentation problem into two 2-phase segmentation problems, each of which we solved with a dedicated model, active contour weighted by prior extreme. We applied the novel proposed algorithms to THG images of structurally normal ex-vivo human brain tissue, revealing key tissue components—brain cells, microvessels and neuropil, enabling statistical characterization of these components. Comprehensive comparison to manually delineated ground truth validated the proposed algorithms. Quantitative comparison to second harmonic generation/auto-fluorescence images, acquired simultaneously from the same tissue area, confirmed the correctness of the main THG features detected. Availability and Implementation The software and test datasets are available from the authors. Supplementary information Supplementary data are available at Bioinformatics online.