Publications by authors named "S Potiron"

Article Synopsis
  • Proton Minibeam Radiation Therapy (pMBRT) is a unique technique that modulates radiation dose delivery to potentially enhance anti-tumor immune responses while impacting treatment outcomes through specific dosimetric parameters like peak and valley doses.* -
  • The study used an orthotopic rat model of glioblastoma to explore how different pMBRT configurations influence survival and immune response, finding that higher dose heterogeneity and maintaining a minimum valley dose improved overall outcomes.* -
  • Results indicated that optimizing both peak doses and valley doses led to better tumor eradication and less immunosuppression, contrasting with traditional proton therapy that usually creates uniform dose distributions.*
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In this study, microstructural characterization of Ti-6Al-4V alloy, subjected to the duplex surface mechanical attrition treatment (SMAT)/nitriding treatment, leading to improve its mechanical properties, was carried out through novel and original samples preparation methods. Instead of acid etching which is limited for morphological characterization by scanning electron microscopy (SEM), an original ion polishing method was developed. Moreover, for structural characterization by transmission electron microscopy (TEM), an ion milling method based with the use of two ions guns was also carried out for cross-section preparation.

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In this study, microstructural and mechanical properties of Ti-6Al-4V alloy, before and after the SMA treatment (SMAT) as well as the duplex SMAT/Nitriding process at different treatment conditions, were investigated in order to deepen the knowledge of these properties for biomedical devices. For that purpose, tribological (wear resistance, coefficient of friction) and mechanical (Vickers microhardness) tests were performed. To carry out the microstructural and surface topographical characterization of the samples, the scanning electron microscopy (SEM) and the 3D-SEM reconstruction from stereoscopic images have been used.

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Calcium-deficient hydroxyapatite (Ca-def-HAP) coatings on titanium alloy (Ti6Al4V) substrates are elaborated by pulsed electrodeposition. In vitro dissolution/precipitation process is investigated by immersion of the coated substrate into Dulbecco's Modified Eagle Medium (DMEM) from 1 h to 28 days. Calcium and phosphorus concentrations evolution in the biological liquid are determined by Induced Coupled Plasma-Atomic Emission Spectroscopy (ICP-AES) for each immersion time.

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