Commit 8f0a0794 authored by Edward Andò's avatar Edward Andò
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[skip-ci] adding links

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......@@ -161,6 +161,7 @@ The latter partially uses `meshio` [@meshio].
An estimation of an ellipse fitting of each particle is implemented with the algorithm from @ikeda:2000.
Tools for characterising inter-particle contacts based on the work of @wiebicke2017.
A wrapper for ITK's morphological watershed [@schroeder2003itk; @beare2006watershed] is also provided.
Please see label toolkit in [introduction](https://ttk.gricad-pages.univ-grenoble-alpes.fr/spam/intro.html#label-toolkit), [tutorial](https://ttk.gricad-pages.univ-grenoble-alpes.fr/spam/tutorial-03-labelToolkit.html), and [examples](https://ttk.gricad-pages.univ-grenoble-alpes.fr/spam/spam_examples/index.html#labeltoolkit-examples)
- `measurements`: toolkit implementing the measurement of covariance, porosity and global descriptors (volume, perimeter, surface area, and Euler characteristic).
......@@ -251,16 +252,16 @@ Compilation for Windows has not been attempted given the large number of depende
Spam has already enabled research progress on a number of fronts, resulting in the following publications:
- @roubin2016perco: Use of `excursions` toolkit to predict percolation threshold in n-dimensional Euclidean spaces.
- @stamati2018phase: Use of `filters` toolkit to identify aggregates in concrete.
- @stamati2018tensile: Use of `spam-ldic` and `spam-ddic` scripts to measure deformation in a concrete sample subjected to a tension test and `mesh` projection functions to conduct the FE analysis.
- @stavropoulou2019liquid: Use of `spam-ldic` script to measure deformation of a claystone.
- @wiebicke2019benchmark: Use of `kalisphera` and `label` toolkits to benchmark sand-grain contact measurements, provides an example script.
- @ando2019peek: Use of `spam-ddic` script and the `label` toolkit to measure small displacements in a creep test on sand.
- @roubin2019colours: Application of Multi Modal Registration to concrete.
- @hurley2019situ: Use of `deformation` toolkit to measure deformation in concrete.
- @wiebicke2020measuring: Use of `label` toolkit for the analysis of inter-particle contacts as well as the `plotting` toolkit to plot the distribution of orientations.
- @stavropoulou2020: Use of `spam-mmr` and `spam-gdic` scripts, and the `mesh` toolkit to measure water absorption in claystone.
- @roubin2018perco: Use of `excursions` toolkit to predict percolation threshold in n-dimensional Euclidean spaces, see Figures 1 and 2.
- @stamati2018phase: Use of `filters` toolkit to identify aggregates in concrete in Figure 5.
- @stamati2018tensile: Use of `spam-ldic` and `spam-ddic` scripts to measure deformation in a concrete sample subjected to a tension test (Figure 8) and `mesh` projection functions to conduct the FE analysis (Figure 2).
- @stavropoulou2019liquid: Use of `spam-ldic` script to measure deformation of a claystone (Figures 10 and 11).
- @wiebicke2020benchmark: Use of `kalisphera` (Figure 5) and `label` toolkits to benchmark sand-grain contact measurements (Figure 8 and others), provides an example script.
- @ando2019peek: Use of `spam-ddic` script and the `label` toolkit to measure small displacements in a creep test on sand, see Figure 4.
- @roubin2019colours: Application of Multi Modal Registration to concrete, see Figure 4 onwards.
- @hurley2019situ: Use of `deformation` toolkit to measure deformation in concrete (strain in Figure 2b).
- @wiebicke2020measuring: Use of `label` toolkit for the analysis of inter-particle contacts (Figure 1) as well as the `plotting` toolkit to plot the distribution of orientations (Figures 7 and 8).
- @stavropoulou2020: Use of `spam-mmr` and `spam-gdic` scripts (respectively Figures 2, 3, 4; and 7), and the `mesh` toolkit to measure water absorption in claystone (Figures 8 and 9).
# Acknowledgements
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