Adaptive Mathematical Morphology on Irregularly Sampled Signals in Two Dimensions
Author:
Affiliation:
1. Centre for Image Analysis, Vi2, Dept. IT , Uppsala University , Uppsala , Sweden .
2. Flagship Biosciences Inc ., Westminster, Colorado, USA .
3. Luleå University of Technology , Luleå , Sweden .
Abstract
Publisher
Walter de Gruyter GmbH
Subject
General Economics, Econometrics and Finance
Link
https://www.degruyter.com/document/doi/10.1515/mathm-2020-0104/pdf
Reference28 articles.
1. [1] T. Asplund, C. L. Luengo Hendriks, M. J. Thurley, and R. Strand. Estimating the gradient for images with missing samples using elliptical structuring elements. Submitted.
2. [2] T. Asplund, C. L. Luengo Hendriks, M. J. Thurley, and R. Strand. Mathematical morphology on irregularly sampled signals. In Asian Conference on Computer Vision - DGMM4CV Workshop, pages 506–520. Springer, 2016.
3. [3] T. Asplund, C. L. Luengo Hendriks, M. J. Thurley, and R. Strand. Mathematical morphology on irregularly sampled data in one dimension. Mathematical Morphology-Theory and Applications, 2(1):1–24, 2017.
4. [4] T. Asplund, A. Serna, B. Marcotegui, R. Strand, and C. L. L. Hendriks. Mathematical morphology on irregularly sampled data applied to segmentation of 3D point clouds of urban scenes. In International Symposium on Mathematical Morphology and Its Applications to Signal and Image Processing, pages 375–387. Springer, 2019.
5. [5] M. Breuß, B. Burgeth, and J. Weickert. Anisotropic continuous-scale morphology. In Iberian Conference on Pattern Recognition and Image Analysis, pages 515–522. Springer, 2007.
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1. Editorial — Special Issue: ISMM 2019;Mathematical Morphology - Theory and Applications;2020-01-01
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