F Prima
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Explore the profile of F Prima including associated specialties, affiliations and a list of published articles.
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Articles
11
Citations
66
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Recent Articles
1.
Mantri S, Sun F, Choudhuri D, Alam T, Gwalani B, Prima F, et al.
Sci Rep
. 2019 Feb;
9(1):1334.
PMID: 30718639
Hierarchical twinning, at multiple length scales, was noted in a metastable body-centered cubic (bcc) β-titanium alloy on tensile deformation. Site-specific characterization within the deformation bands, carried out using EBSD and...
2.
Bai Y, Hao Y, Li S, Hao Y, Yang R, Prima F
Mater Sci Eng C Mater Biol Appl
. 2013 Mar;
33(4):2159-67.
PMID: 23498244
Corrosion behavior of a multifunctional biomedical titanium alloy Ti-24Nb-4Zr-8Sn (wt.%) in 0.9% NaCl, Hank's solution and artificial saliva at 37 °C was investigated using open circuit potential, impedance spectroscopy and...
3.
Elmay W, Prima F, Gloriant T, Bolle B, Zhong Y, Patoor E, et al.
J Mech Behav Biomed Mater
. 2012 Dec;
18:47-56.
PMID: 23246554
Thermomechanical treatments have been proved to be an efficient way to improve superelastic properties of metastable β type titanium alloys through several studies. In this paper, this treatment routes, already...
4.
Ramarolahy A, Castany P, Prima F, Laheurte P, Peron I, Gloriant T
J Mech Behav Biomed Mater
. 2012 Apr;
9:83-90.
PMID: 22498286
In this study, the microstructure and the mechanical properties of two new biocompatible superelastic alloys, Ti-24Nb-0.5O and Ti-24Nb-0.5N (at.%), were investigated. Special attention was focused on the role of O...
5.
Sun F, Hao Y, Nowak S, Gloriant T, Laheurte P, Prima F
J Mech Behav Biomed Mater
. 2011 Nov;
4(8):1864-72.
PMID: 22098885
A flash-thermal treatment technique has been developed very recently to improve both the critical stress to induce the martensitic transformation (MT) and the recoverable deformation of the metastable β type...
6.
Laheurte P, Prima F, Eberhardt A, Gloriant T, Wary M, Patoor E
J Mech Behav Biomed Mater
. 2010 Sep;
3(8):565-73.
PMID: 20826362
Titanium alloys dedicated to biomedical applications may display both clinical and mechanical biocompatibility. Based on nontoxic elements such as Ti, Zr, Nb, Ta, they should combine high mechanical resistance with...
7.
Moravej M, Prima F, Fiset M, Mantovani D
Acta Biomater
. 2010 Jan;
6(5):1726-35.
PMID: 20085829
An electroforming technique was developed for fabricating iron foils targeted for application as biodegradable cardiovascular stent material. The microstructure, mechanical properties and corrosion of electroformed iron (E-Fe) foils were evaluated...
8.
Lefaix H, Asselin A, Vermaut P, Sautier J, Berdal A, Portier R, et al.
J Mater Sci Mater Med
. 2007 Oct;
19(5):1861-9.
PMID: 17914625
Titanium and its alloys are frequently used as dental and orthopaedic implants due to their high mechanical strength, low elastic modulus and biocompatibility. However, as these materials have a poor...
9.
Guillemot F, Prima F, Bareille R, Gordin D, Gloriant T, Porte-Durrieu M, et al.
Med Biol Eng Comput
. 2004 Feb;
42(1):137-41.
PMID: 14977235
Parallel to the biofunctionalisation of existing materials, innovation in biomaterials engineering has led to the specific design of titanium alloys for medical applications. Studies of the biological behaviour of metallic...
10.
Crama P, Prima F, Oddoze C, Branchereau A, Gouin F, Auffray J
Ann Fr Anesth Reanim
. 1997 Jan;
16(8):950-4.
PMID: 9750643
Objective: To compare the incidence of myocardial damages diagnosed following vascular surgery using the cardiac troponin I measurement technique and conventional methods. Study Design: Prospective epidemiological study. Patients: Fifty-four patients...