BARBERI, Emmanuele

BARBERI, Emmanuele  

Dipartimento di Ingegneria  

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Risultati 1 - 11 di 11 (tempo di esecuzione: 0.029 secondi).
Titolo Data di pubblicazione Autore(i) File
A Deep Learning Model for the Prediction of Complications After EVAR Based on Pre-operative Aneurysm Morphology 1-gen-2022 Spinelli, Domenico; La Corte, Francesco; Cucinotta, Filippo; Barberi, Emmanuele; Benedetto, Filippo
A Differential Entropy-Based Method for Reverse Engineering Quality Assessment 1-gen-2024 Barberi, Emmanuele; Cucinotta, Filippo; Forssén, Per-Erik; Raffaele, Marcello; Salmeri, Fabio
A hollowing algorithm for a parametric optimisation method of structural components 1-gen-2023 Barberi, E.; Chillemi, M.; Cucinotta, F.; Raffaele, M.; Salmeri, F.
A Hollowing Topology Optimization Method for Additive and Traditional Manufacturing Technologies 1-gen-2022 Barberi, Emmanuele; Cucinotta, Filippo; Raffaele, Marcello; Salmeri, Fabio
A New Method of Point Clouds Processing for Forensic Comparison of Cartridge Cases 1-gen-2024 Barberi, Emmanuele; Cucinotta, Filippo; Guglielmino, Eugenio; Salici, Angelo; Sfravara, Felice
A Novel Quality Assessment Method for the Clinical Reproduction of Orthodontic Attachments Based on Differential Entropy 1-gen-2023 Salmeri, Fabio; Barberi, Emmanuele; Lipari, Frank; Nicita, Fabiana
A Review on Navigating Sustainable Naval Design: LCA and Innovations in Energy and Fuel Choices 1-gen-2024 Cucinotta, Filippo; Barberi, Emmanuele; Salmeri, Fabio
Differential entropy-based analysis of point clouds: novel applications and methods 20-dic-2023 Barberi, Emmanuele
Fast Three-Dimensional Posture Reconstruction of Motorcyclists Using OpenPose and a Custom MATLAB Script 1-gen-2023 Barberi, Emmanuele; Chillemi, Massimiliano; Cucinotta, Filippo; Sfravara, Felice
Identificazione di situazioni di rischio durante la navigazione negli stretti mediante algoritmi di Machine Learning allenati sui dati AIS 1-gen-2022 Barberi, Emmanuele; Cucinotta, Filippo; Guglielmino, Eugenio
Posture Interactive Self Evaluation Algorithm Based on Computer Vision 1-gen-2023 Barberi, E.; Chillemi, M.; Cucinotta, F.; Milardi, D.; Raffaele, M.; Salmeri, F.; Sfravara, F.