Update the bibliography.
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bibsource = {dblp computer science bibliography, https://dblp.org}
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bibsource = {dblp computer science bibliography, https://dblp.org}
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}
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@article{DBLP:journals/tcs/AlhazovFFGI23,
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author = {Artiom Alhazov and
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Vincent Ferrari{-}Dominguez and
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Rudolf Freund and
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Nicolas Glade and
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Sergiu Ivanov},
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title = {A {P} systems variant for reasoning about sequential controllability
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of Boolean networks},
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journal = {Theor. Comput. Sci.},
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volume = {970},
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pages = {114056},
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year = {2023},
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url = {https://doi.org/10.1016/j.tcs.2023.114056},
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doi = {10.1016/j.tcs.2023.114056},
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timestamp = {Thu, 31 Aug 2023 01:00:00 +0200},
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biburl = {https://dblp.org/rec/journals/tcs/AlhazovFFGI23.bib},
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bibsource = {dblp computer science bibliography, https://dblp.org}
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}
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@article{DBLP:journals/corr/abs-2303-00110,
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@article{DBLP:journals/corr/abs-2303-00110,
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author = {Artiom Alhazov and
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author = {Artiom Alhazov and
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Vincent Ferrari{-}Dominguez and
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Vincent Ferrari{-}Dominguez and
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@article{Alhazov2023,
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title = {Numerical networks of cells},
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journal = {Theoretical Computer Science},
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volume = {958},
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pages = {113873},
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year = {2023},
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issn = {0304-3975},
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doi = {https://doi.org/10.1016/j.tcs.2023.113873},
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url = {https://www.sciencedirect.com/science/article/pii/S030439752300186X},
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author = {Artiom Alhazov and Rudolf Freund and Sergiu Ivanov and Sergey Verlan},
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keywords = {Membrane computing, Natural computing, Numerical P systems, Reaction systems, Spiking neural P systems, Fuzzy P systems},
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abstract = {Numerical P systems (NPS) are a very particular class of P systems having important differences from most models in this area. The main particularity of the model is the usage of numerical variables whose values are shared among applicable rules, contrary to the concurrence for objects in the multiset for the traditional P systems case. In 2007, Freund and Verlan developed a formal framework for P systems to capture most of the essential features of P systems and to define their functioning in a formal way. Subsequent papers developed versions of this framework for the case of spiking neural P systems and P systems with dynamically evolving structure. These results permitted to obtain a different view on P systems giving a general framework to analyze, relate and extend different variants of P systems and other related models, like Petri nets or register machines. This paper aims to provide a similar generalization for the case of numerical P systems (NPS) and related variants like enzymatic or generalized NPS. We call the obtained model Numerical Networks of Cells (NNC). As in the case of the formal framework it allows to accurately describe NPS, as well as other types of P systems like those using fuzzy sets as computation support. Also, the new model generalizes other well-known models like Boolean networks or reaction systems and this can potentially help to bring bridges between P systems and these areas.}
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}
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@techreport{AlhazovFI2016,
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@techreport{AlhazovFI2016,
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author={Artiom Alhazov and Rudolf Freund and Sergiu Ivanov},
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author={Artiom Alhazov and Rudolf Freund and Sergiu Ivanov},
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title={Polymorphic P Systems: A Survey},
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title={Polymorphic P Systems: A Survey},
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\begin{refsection}[bib/sivanov-dblp.bib,bib/sivanov-extra.bib]
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\begin{refsection}[bib/sivanov-dblp.bib,bib/sivanov-extra.bib]
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\section{Publications et communications}
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\section{Publications et communications}
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J'ai rédigé ou participé à la
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J'ai rédigé ou participé à la
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rédaction de 76 publications, dont 37 dans des revues internationales
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rédaction de 77 publications, dont 38 dans des revues internationales
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et 28 à des manifestations internationales avec comité de sélection et
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et 28 à des manifestations internationales avec comité de sélection et
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publication des actes. Cette section contient une liste complète de
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publication des actes. Cette section contient une liste complète de
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mes publications, par catégorie.
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mes publications, par catégorie.
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