Publications

Export 6 results:
Sort by: [ Author  (Asc)] Title Type Year
A B [C] D E F G H I J K L M N O P Q R S T U V W X Y Z   [Show ALL]
C
Cabanelas, P., J. Cruz, M. Fonseca, A. Henriques, F. Louren{\c c}o, H. Lu{\'ıs, J. Machado, Pires J. Ribeiro, A. M. Sánchez-Ben{\'ıtez, P. Teubig, P. Velho, M. Zarza-Moreno, D. Galaviz, and A. P. Jesus. "{Cross sections for proton induced high energy $\gamma$-ray emission (PIGE) in reaction F(p,$\gamma$)O at incident proton energies between 1.5 and 4 MeV}." Nuclear Inst. and Methods in Physics Research, B. 381 (2016): 110-113. AbstractWebsite
n/a
Carvalho, Patr{\'ıcia M. S., Sofia Pessanha, Jorge Machado, Ana Lu{\'ısa Silva, João Veloso, Diogo Casal, Diogo Pais, and José Paulo Santos. "{Energy dispersive X-ray fluorescence quantitative analysis of biological samples with the external standard method}." Spectrochimica Acta Part B: Atomic Spectroscopy. 174 (2020): 105991. AbstractWebsite
n/a
Carvalho, Patrícia M., Eva Marguí, Aldona Kubala-Kukuś, Dariusz Banaś, Jorge Machado, Diogo Casal, Diogo Pais, José Paulo Santos, and Sofia Pessanha. "Evaluation of different analytical approaches using total reflection X-ray fluorescence systems for multielemental analysis of human tissues with different adipose content." Spectrochimica Acta - Part B Atomic Spectroscopy. 198 (2022). Abstract

Elemental content plays an important role in biological processes, and so, the multielemental analysis of human tissue samples is required in biomedical research. Still, the small amount of available biological samples and the adipose content of the samples can be major setbacks for the accurate determination of elemental content. In this study, we explored the potential of several analytical approaches combined with total reflection X-ray fluorescence spectrometry (TXRF) for multielemental analysis of human tissues with different adipose content (colon, heart, liver, lung, muscle, intestine, skin, stomach, uterus, bladder and aorta). The capabilities and limitations of different sample treatment procedures (suspension and acidic digestion) and two TXRF systems with different anode configurations (Mo and W X-ray tubes) have been evaluated for such purpose. Results showed that for tissues with a higher fat content (e.g., skin, and intestine) the best strategy was the acidic digestion of the sample before TXRF analysis. However, for other tissues, acceptable results were obtained by suspending 20 mg of powdered material in 1 mL of 2 M nitric acid. A further enhancement of the limits of detection and accuracy of the results was achieved if using Mo-TXRF systems, especially for the determination of low Z elements (e.g., K, and Ca) and of elements present at low concentrations (e.g., Cu) in the human tissues. Finally, results by TXRF analysis were compared with those obtained with μ-EDXRF and ICP-OES, and a good agreement was obtained.

Chiari, M., E. Alves, Bogdanović I. Radović, J. Cruz, L. Csedreki, M. Fonseca, D. Galaviz, A. Henriques, M. Jak{\v s}ić, A. P. Jesus, O. Kakuee, Á. Z. Kiss, A. Lagoyannis, F. Louren{\c c}o, H. Lu{\'ıs, J. Machado, B. Melon, C. K. Nuviadenu, L. Salvestrini, N. Sharifzadeh, Z. Siketić, G. Á. Sz{\'ıki, Z. Szikszai, P. Teubig, P. Velho, I. Zamboni, and M. Zarza. "{Measurement of proton induced $\gamma$-ray emission cross sections on Na from 1.0 to 4.1 MeV}." Nuclear Inst. and Methods in Physics Research, B (2017): 1-11. AbstractWebsite
n/a
Cruz, J., M. Fonseca, D. Galaviz, A. Henriques, H. Lu{\'ıs, J. Machado, P. Teubig, P. Velho, V. Manteigas, and A. P. Jesus. "{Fluorine depth profiling based on the 19F(p,p’$\gamma$)19F excitation function}." The European Physical Journal Plus. 136 (2021): 1-12. AbstractWebsite

Ion beam analysis of fluorine has applications in research on teeth and bones, materials science, geochemistry and archaeometry. A novel PIGE (particle induced gamma-ray emission) standard free methodology for fluorine content determination for in-depth heterogeneous samples based on the excitation function of the 19F(p,p’$\gamma$)19F nuclear reaction is presented. New precise cross section measurements of this reaction in the proton energy range 2.1 to 4.1 MeV have been performed. In addition, the ERYA-Profiling code, a computer program specially developed for PIGE analysis of in-depth heterogeneous samples, employed this new excitation function in a case study where different fluorine simulated depth profiles probed the capability of insight into fluorine distributions in a given sample, showing the potential of PIGE analysis.