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Paolo Nenzi

Explore the profile of Paolo Nenzi including associated specialties, affiliations and a list of published articles. Areas
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Articles 8
Citations 36
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Recent Articles
1.
Giovannini D, Antonelli F, Casciati A, De Angelis C, Denise Astorino M, Bazzano G, et al.
Radiother Oncol . 2024 Apr; 195:110267. PMID: 38614282
Background And Purpose: Medulloblastoma (MB) is a common primary brain cancer in children. Proton therapy in pediatric MB is intensively studied and widely adopted. Compared to photon, proton radiations offer...
2.
Montereali R, Nigro V, Piccinini M, Vincenti M, Ampollini A, Nenzi P, et al.
Sensors (Basel) . 2023 Jul; 23(10). PMID: 37430693
Lithium fluoride (LiF) crystals and thin films are utilized as radiation detectors for energy diagnostics of proton beams. This is achieved by analyzing the Bragg curves in LiF obtained by...
3.
Giovannini D, De Angelis C, Denise Astorino M, Fratini E, Cisbani E, Bazzano G, et al.
Int J Mol Sci . 2023 May; 24(9). PMID: 37175984
Protons are now increasingly used to treat pediatric medulloblastoma (MB) patients. We designed and characterized a setup to deliver proton beams for in vivo radiobiology experiments at a TOP-IMPLART facility,...
4.
Mayerhofer M, Bergmaier A, Datzmann G, Hagn H, Helm R, Mitteneder J, et al.
PLoS One . 2021 Oct; 16(10):e0258477. PMID: 34634079
To demonstrate the large potential of proton minibeam radiotherapy (pMBRT) as a new method to treat tumor diseases, a preclinical proton minibeam radiation facility was designed. It is based on...
5.
De Amicis A, De Sanctis S, Di Cristofaro S, Franchini V, Lista F, Regalbuto E, et al.
Mutat Res Genet Toxicol Environ Mutagen . 2015 Nov; 793:150-60. PMID: 26520385
In recent years, terahertz (THz) radiation has been widely used in a variety of applications: medical, security, telecommunications and military areas. However, few data are available on the biological effects...
6.
Bandarenka H, Redko S, Nenzi P, Balucani M, Bondarenko V
J Nanosci Nanotechnol . 2013 Feb; 12(11):8725-31. PMID: 23421274
Copper (II) sulfate was used as a source of copper to achieve uniform distribution of Cu particles deposited on porous silicon. Layers of the porous silicon were formed by electrochemical...
7.
Bandarenka H, Prischepa S, Fittipaldi R, Vecchione A, Nenzi P, Balucani M, et al.
Nanoscale Res Lett . 2013 Feb; 8(1):85. PMID: 23414073
Initial stages of Cu immersion deposition in the presence of hydrofluoric acid on bulk and porous silicon were studied. Cu was found to deposit both on bulk and porous silicon...
8.
Bandarenka H, Redko S, Smirnov A, Panarin A, Terekhov S, Nenzi P, et al.
Nanoscale Res Lett . 2012 Aug; 7(1):477. PMID: 22916840
The application of porous silicon as a template for the fabrication of nanosized copper objects is reported. Three different types of nanostructures were formed by displacement deposition of copper on...