Vincenzo Manca

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32ranked-venue papers
15as first author
3since 2021 · last 2021
0000-0002-1304-0277ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Theory of computation · 17 · 11 first-author · 3 since 2021Artificial intelligence and machine learning · 11 · 3 first-authorApplied, interdisciplinary, general and emerging computing · 4 · 1 first-author
YearPublicationVenuePosition
2021 Spectral concepts in genome informational analysis
Vincenzo Bonnici, Giuditta Franco, Vincenzo Manca
Theor. Comput. Sci.3
2021 Emergence of random selections in evolution of biological populations
Giuditta Franco, Vincenzo Manca, Marco Andreolli, Silvia Lampis
Theor. Comput. Sci.2
2021 Explaining DNA structure
Vincenzo Manca, Giuseppe Scollo
Theor. Comput. Sci.1
2017 The principles of informational genomics
Vincenzo Manca
Theor. Comput. Sci.1
2015 MP-GeneticSynth: inferring biological network regulations from time series
abstract
MP-GeneticSynth is a Java tool for discovering the logic and regulation mechanisms responsible for observed biological dynamics in terms of finite difference recurrent equations. The software makes use of: (i) metabolic P systems as a modeling framework, (ii) an evolutionary approach to discover flux regulation functions as linear combinations of given primitive functions, (iii) a suitable reformulation of the least squares method to estimate function parameters considering simultaneously all the reactions involved in complex dynamics. The tool is available as a plugin for the virtual laboratory MetaPlab. It has graphical and interactive interfaces for data preparation, a priori knowledge integration, and flux regulator analysis. Availability and implementation: Source code, binaries, documentation (including quick start guide and videos) and case studies are freely available at http://mplab.sci.univr.it/plugins/mpgs/index.html.
Alberto Castellini, Daniele Paltrinieri, Vincenzo Manca
Bioinform.3
2015 MpTheory Java library: a multi-platform Java library for systems biology based on the Metabolic P theory
abstract
UNLABELLED: MpTheory Java library is an open-source project collecting a set of objects and algorithms for modeling observed dynamics by means of the Metabolic P (MP) theory, that is, a mathematical theory introduced in 2004 for modeling biological dynamics. By means of the library, it is possible to model biological systems both at continuous and at discrete time. Moreover, the library comprises a set of regression algorithms for inferring MP models starting from time series of observations. To enhance the modeling experience, beside a pure Java usage, the library can be directly used within the most popular computing environments, such as MATLAB, GNU Octave, Mathematica and R. AVAILABILITY AND IMPLEMENTATION: The library is open-source and licensed under the GNU Lesser General Public License (LGPL) Version 3.0. Source code, binaries and complete documentation are available at http://mptheory.scienze.univr.it. CONTACT: [email protected], [email protected] SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.
Luca Marchetti, Vincenzo Manca
Bioinform.2
2015 An evolutionary procedure for inferring MP systems regulation functions of biological networks
Alberto Castellini, Vincenzo Manca, Mauro Zucchelli
Nat. Comput.2
2014 On the inference of deterministic chaos: Evolutionary algorithm and metabolic P system approaches
abstract
This paper shows the possibility of using Metabolic P systems (MP systems) for chaotic system identification-reconstruction and it compares presented results with previous ones obtained by evolutionary algorithms. An important potentiality of MP theory is given by its powerful computational chaos generation that can be also used as an internal module of evolutionary algorithms by increasing their ability in specific cases of their application. Reported numerical experiments are discussed at the end.
Luca Marchetti, Vincenzo Manca, Ivan Zelinka
IEEE Congress on Evolutionary Computation2
2014 Modeling time-dependent transcription effects of HER2 oncogene and discovery of a role for E2F2 in breast cancer cell-matrix adhesion
abstract
MOTIVATION: Oncogenes are known drivers of cancer phenotypes and targets of molecular therapies; however, the complex and diverse signaling mechanisms regulated by oncogenes and potential routes to targeted therapy resistance remain to be fully understood. To this end, we present an approach to infer regulatory mechanisms downstream of the HER2 driver oncogene in SUM-225 metastatic breast cancer cells from dynamic gene expression patterns using a succession of analytical techniques, including a novel MP grammars method to mathematically model putative regulatory interactions among sets of clustered genes. RESULTS: Our method highlighted regulatory interactions previously identified in the cell line and a novel finding that the HER2 oncogene, as opposed to the proto-oncogene, upregulates expression of the E2F2 transcription factor. By targeted gene knockdown we show the significance of this, demonstrating that cancer cell-matrix adhesion and outgrowth were markedly inhibited when E2F2 levels were reduced. Thus, validating in this context that upregulation of E2F2 represents a key intermediate event in a HER2 oncogene-directed gene expression-based signaling circuit. This work demonstrates how predictive modeling of longitudinal gene expression data combined with multiple systems-level analyses can be used to accurately predict downstream signaling pathways. Here, our integrated method was applied to reveal insights as to how the HER2 oncogene drives a specific cancer cell phenotype, but it is adaptable to investigate other oncogenes and model systems. AVAILABILITY AND IMPLEMENTATION: Accessibility of various tools is listed in methods; the Log-Gain Stoichiometric Stepwise algorithm is accessible at http://www.cbmc.it/software/Software.php.
Aliccia Bollig-Fischer, Luca Marchetti, Cristina Mitrea, Jiusheng Wu, Adéle Kruger, Vincenzo Manca, Sorin Draghici
Bioinform.6
2014 Morphogenesis through moving membranes
Vincenzo Manca, Giovanni Pardini
Nat. Comput.1
2011 Algorithmic applications of XPCR
Giuditta Franco, Vincenzo Manca
Nat. Comput.2
2010 Hybrid Functional Petri Nets as MP systems
Alberto Castellini, Giuditta Franco, Vincenzo Manca
Nat. Comput.3
2010 Deterministic and stochastic P systems for modelling cellular processes
Marian Gheorghe 0001, Vincenzo Manca, Francisco José Romero-Campero
Nat. Comput.2
2009 XML Representation of Metabolic P Systems
abstract
Metabolic P systems (MP systems) are a special class of P systems introduced for expressing biological metabolic phenomena. The graphical formalism of MP graphs represents, in a simple and intuitive way, the structure of these systems. However, there are some cases in which they would be better specified by semi-structured textual documents, especially for information exchanging between different computational tools elaborating on different biological aspects. The aim of this paper is to define such a way of exportation from MP graphs to XML documents. It turns out that all properties which guarantee the correctness of MP graphs can be formally described by means of logical formulae on trees, and completely expressed as XML constraints in XSD (XML Schema Definition), a W3C standard for XML validation.
Vincenzo Manca, Luca Marchetti
IEEE Congress on Evolutionary Computation1
2009 Learning regulation functions of metabolic systems by artificial neural networks
abstract
Metabolic P systems, also called MP systems, are discrete dynamical systems which proved to be effective for modeling biological systems. Their dynamics is generated by means of a metabolic algorithm based on "flux regulation functions". A significant problem related to the generation of MP models from experimental data concerns the synthesis of these functions. In this paper we introduce a new approach to the synthesis of MP fluxes relying on neural networks as universal function approximators, and on evolutionary algorithms as learning techniques. This methodology is successfully tested in the case study of mitotic oscillator in early amphibian embryos.
Alberto Castellini, Vincenzo Manca
GECCO2
2009 A photosynthetic process modelled by a metabolic P system
Vincenzo Manca, Roberto Pagliarini, Simone Zorzan
Nat. Comput.1
2008 The metabolic algorithm for P systems: Principles and applications
Vincenzo Manca
Theor. Comput. Sci.1
2007 Psim: a simulator for biomolecular dynamics based on P systems
abstract
Metabolic P systems, shortly MP systems, are a special class of P systems, introduced for expressing biological metabolism. Their dynamics is computed by metabolic algorithms which transform populations of objects according to a mass partition principle, based on suitable generalizations of chemical laws. The basic principles of MP systems are discussed and Psim, a simulation tool we developed in this context to discretely compute systems dynamics, is highlighted in its basic features. A concrete example is reported as well including a real simulation experiment by means of Psim.
Luca Bianco, Vincenzo Manca, Luca Marchetti, Michele Petterlini
IEEE Congress on Evolutionary Computation2
2007 Discrete Simulations of Biochemical Dynamics
Vincenzo Manca
DNA1
2007 Discrete solutions to differential equations by metabolic P systems
Federico Fontana, Vincenzo Manca
Theor. Comput. Sci.2
2006 Superposition Based on Watson-Crick-Like Complementarity
Paolo Bottoni, Anna Labella, Vincenzo Manca, Victor Mitrana
Theory Comput. Syst.3
2006 Iterated sequential transducers as language generating devices
Henning Bordihn, Henning Fernau, Markus Holzer 0001, Vincenzo Manca, Carlos Martín-Vide
Theor. Comput. Sci.4
2005 On P Systems and Almost Periodicity
Francesco Bernardini, Marian Gheorghe 0001, Vincenzo Manca
Fundam. Informaticae3
2005 On the Logic and Geometry of Bilinear Forms
Vincenzo Manca
Fundam. Informaticae1
2005 An algorithmic analysis of DNA structure
Giuditta Franco, Vincenzo Manca
Soft Comput.2
2002 DNA and Membrane Algorithms for SAT
Vincenzo Manca
Fundam. Informaticae1
2001 Logical string rewriting
Vincenzo Manca
Theor. Comput. Sci.1
1992 Soundness and Completeness of the Birkhoff Equational Calculus for Many-Sorted Algebras with Possibly Empty Carrier Sets
Vincenzo Manca, Antonino Salibra
Theor. Comput. Sci.1
1990 Equational Calculi for Many-Sorted Algebras with Empty Carrier Sets
Vincenzo Manca, Antonino Salibra
MFCS1
1990 Equational Type Logic
Vincenzo Manca, Antonino Salibra, Giuseppe Scollo
Theor. Comput. Sci.1
1989 On the Nature of TELLUS (a Typed Equational Logic Look over Uniform Specification)
Vincenzo Manca, Antonino Salibra, Giuseppe Scollo
MFCS1
1981 Computational formalism: abstract combinatory view-point and related first order logical framework
Vincenzo Manca
Fundam. Informaticae1