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-===================================== ===================================== =====================================
-:Author: Clément Maria :Introduced in: GUDHI PYTHON 1.4.0 :Copyright: GPL v3
-===================================== ===================================== =====================================
-
-+---------------------------------------------+----------------------------------------------------------------------+
-| .. image:: | The theory of homology consists in attaching to a topological space |
-| img/3DTorus_poch.png | a sequence of (homology) groups, capturing global topological |
-| | features like connected components, holes, cavities, etc. Persistent |
-| | homology studies the evolution -- birth, life and death -- of these |
-| | features when the topological space is changing. Consequently, the |
-| | theory is essentially composed of three elements: topological spaces,|
-| | their homology groups and an evolution scheme. |
-| | |
-| | Computation of persistent cohomology using the algorithm of |
-| | :cite:`DBLP:journals/dcg/SilvaMV11` and |
-| | :cite:`DBLP:journals/corr/abs-1208-5018` and the Compressed |
-| | Annotation Matrix implementation of |
-| | :cite:`DBLP:conf/esa/BoissonnatDM13`. |
-| | |
-+---------------------------------------------+----------------------------------------------------------------------+
-| :doc:`persistent_cohomology_user` | Please refer to each data structure that contains persistence |
-| | feature for reference: |
-| | |
-| | * :doc:`alpha_complex_ref` |
-| | * :doc:`cubical_complex_ref` |
-| | * :doc:`simplex_tree_ref` |
-| | * :doc:`witness_complex_ref` |
-+---------------------------------------------+----------------------------------------------------------------------+