Cavecchia, Valter

Cavecchia, Valter  

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Risultati 1 - 13 di 13 (tempo di esecuzione: 0.019 secondi).
Titolo Anno di pubblicazione Autori Unitn File
Discovering Candidates for Gene Network Expansion by Distributed Volunteer Computing 1-gen-2015 Asnicar, FrancescoMasera, LucaArgentini, AndreaCavecchia, ValterMoser, ClaudioBlanzieri, Enrico +
Discovering causal relationships in grapevine expression data to expand gene networks. A case study: four networks related to climate change 1-gen-2018 Malacarne, GiuliaPilati, StefaniaValentini, SamuelAsnicar, FrancescoMasera, LucaCavecchia, ValterBlanzieri, EnricoMoser, Claudio +
Distributed Computing for Gene Network Expansion in R Environment 1-gen-2022 Blanzieri E.Cavecchia V. +
Evaluating the convergence of tabu enhanced hybrid quantum optimization 1-gen-2023 Blanzieri E.Pastorello D.Cavecchia V.Maltseva M. +
Learning adiabatic quantum algorithms over optimization problems 1-gen-2021 Pastorello, DavideBlanzieri, EnricoCavecchia Valter
NES2RA: Network expansion by stratified variable subsetting and ranking aggregation 1-gen-2018 Asnicar, FrancescoMasera, LucaColler, EmanuelaMorettin, PaoloErculiani, LucaMalacarne, GiuliaArgentini, AndreaCavecchia, ValterMoser, ClaudioBlanzieri, Enrico +
On Convergence of Tabu-Enhanced Quantum Annealing Algorithm 1-gen-2022 Pastorello, D.Blanzieri, E.Cavecchia, V. +
On distributed R computations over BOINC 1-gen-2017 Blanzieri, EnricoCavecchia, Valter +
OneGenE: Regulatory Gene Network Expansion via Distributed Volunteer Computing on BOINC 1-gen-2019 Asnicar, FrancescoMasera, LucaValentini, SamuelCavecchia, ValterBlanzieri, Enrico +
Parameter sweep experiments in hybrid computing systems with R language 1-gen-2019 Blanzieri, EnricoCavecchia, Valter +
Quantum annealing learning search implementations 1-gen-2022 Zardini, EnricoBlanzieri, EnricoCavecchia, ValterPastorello, Davide +
TN-Grid and gene@home Project: Volunteer Computing for Bioinformatics 1-gen-2015 Asnicar, FrancescoMasera, LucaMorettin, PaoloMoser, ClaudioBlanzieri, EnricoCavecchia, Valter +
Vitis OneGenE: A Causality-Based Approach to Generate Gene Networks in Vitis vinifera Sheds Light on the Laccase and Dirigent Gene Families 1-gen-2021 Pilati, StefaniaMalacarne, GiuliaTomè, GabrieleCavecchia, ValterMoser, ClaudioBlanzieri, Enrico +