Chiesura, G.; Luyckx, G.; Voet, E.; Lammens, N.; Van Paepegem, W.; Degrieck, J.; Dierick, M.; Van Hoorebeke, L.; Vanderniepen, P.; Sulejmani, S.;
et al. A Micro-Computed Tomography Technique to Study the Quality of Fibre Optics Embedded in Composite Materials. Sensors 2015, 15, 10852-10871.
https://doi.org/10.3390/s150510852
AMA Style
Chiesura G, Luyckx G, Voet E, Lammens N, Van Paepegem W, Degrieck J, Dierick M, Van Hoorebeke L, Vanderniepen P, Sulejmani S,
et al. A Micro-Computed Tomography Technique to Study the Quality of Fibre Optics Embedded in Composite Materials. Sensors. 2015; 15(5):10852-10871.
https://doi.org/10.3390/s150510852
Chicago/Turabian Style
Chiesura, Gabriele, Geert Luyckx, Eli Voet, Nicolas Lammens, Wim Van Paepegem, Joris Degrieck, Manuel Dierick, Luc Van Hoorebeke, Pieter Vanderniepen, Sanne Sulejmani,
and et al. 2015. "A Micro-Computed Tomography Technique to Study the Quality of Fibre Optics Embedded in Composite Materials" Sensors 15, no. 5: 10852-10871.
https://doi.org/10.3390/s150510852
APA Style
Chiesura, G., Luyckx, G., Voet, E., Lammens, N., Van Paepegem, W., Degrieck, J., Dierick, M., Van Hoorebeke, L., Vanderniepen, P., Sulejmani, S., Sonnenfeld, C., Geernaert, T., & Berghmans, F.
(2015). A Micro-Computed Tomography Technique to Study the Quality of Fibre Optics Embedded in Composite Materials. Sensors, 15(5), 10852-10871.
https://doi.org/10.3390/s150510852