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NDT Webinar | Multiscale Integration of Magnetic, Gravity, and GPR Data for Subsurface Imaging

18 May 2026
15:00 (CEST)
Online

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Prof. Dr. Maurizio Fedi

Prof. Dr. Maurizio Fedi

Department of Earth, Environmental and Resources Science (DiSTAR), University of Naples Federico II, Naples, Italy;
Prof. Dr. Maurizio Fedi is Full Professor of Applied Geophysics at the University of Naples Federico II. His research has developed on physical modeling in applied geophysics, particularly algorithms, theory, and applications in potential fields for planetary, geological, environmental, and cultural heritage studies. Head of the Doctorate at the University of Naples Federico II, he has been Tutor for 23 PhD theses and 7 PostDocs at Italian and foreign universities. He was Deputy Editor of "Geophysical Prospecting” (Wiley) and Editor in Chief of “Journal of Applied Geophysics” (Elsevier), LAC member of International Conferences (Near Surface, EAGE, EEG, IUGG, OMC, AGIC), General Chairman of EGM 2007, EGM 2010, EAGE 2008; 2016, Convener for EGU (2014 to 2025) and IUGG (2019; 2023). Served at Ministry MIUR, Italy, as ANVUR GEV (Group Expert Evaluator) and ASN MEMBER (National Scientific Qualification) and was member of CIRM, Ministry MISE, Italy. Since 2003 he has been the Director of the Archaeogeophysics Lab (INNOVA). He has authored/co-authored over 400 research publications and has given numerous keynotes and invited lectures. He has received international awards: CSIR Distinguished Foreign Scientist Award (INDIA, 2009); Loránd Eötvös Award (EAGE, 2010), Christiaan Huygens Medal (EGU, 2023).

Sponsors and Partners

Organizer


NDTMDPIThe Faringdon Research Centre for Non-Destructive Testing and Remote Sensing (FCNDT&RS)
Webinar Content

10th Webinar on NDT

Multiscale Integration of Magnetic, Gravity, and GPR Data for Subsurface Imaging

In this Webinar were presented the in vitro, experimental animal and human histological studies, and human radiologic and clinical short term and long term results using Morse-Taper connection implants. All this studies, performed in several Laboratories and Clinical Centers all around the World, have consistently demonstrated the highest sealing capability of this type of implant-abutment connection, with the lowest amount of bacterial leakage at the level of the microgap of the implant-abutment connection. Experimental animal and human histologic studies have always shown the presence of newly-formed bone over the implant shoulder, while clinical and radiographical studies, some of them with long-term results, have shown a very low amount of resorption of the marginal crestal bone. The use, moreover of a biconometric technique, i.e. the use also of a conometric connection between the abutment and the prosthetic cap, and the use of Dynamic Navigation Surgery could help the cliniciand to obtain excellent results.

In this section, you will find the recordings of this webinar to watch, re-watch and share with your colleagues!

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