McIvor, M.J.; Ó Maolmhuaidh, F.; Meenagh, A.; Hussain, S.; Bhattacharya, G.; Fishlock, S.; Ward, J.; McFerran, A.; Acheson, J.G.; Cahill, P.A.;
et al. 3D Fabrication and Characterisation of Electrically Receptive PCL-Graphene Scaffolds for Bioengineered In Vitro Tissue Models. Materials 2022, 15, 9030.
https://doi.org/10.3390/ma15249030
AMA Style
McIvor MJ, Ó Maolmhuaidh F, Meenagh A, Hussain S, Bhattacharya G, Fishlock S, Ward J, McFerran A, Acheson JG, Cahill PA,
et al. 3D Fabrication and Characterisation of Electrically Receptive PCL-Graphene Scaffolds for Bioengineered In Vitro Tissue Models. Materials. 2022; 15(24):9030.
https://doi.org/10.3390/ma15249030
Chicago/Turabian Style
McIvor, Mary Josephine, Fionn Ó Maolmhuaidh, Aidan Meenagh, Shahzad Hussain, Gourav Bhattacharya, Sam Fishlock, Joanna Ward, Aoife McFerran, Jonathan G. Acheson, Paul A. Cahill,
and et al. 2022. "3D Fabrication and Characterisation of Electrically Receptive PCL-Graphene Scaffolds for Bioengineered In Vitro Tissue Models" Materials 15, no. 24: 9030.
https://doi.org/10.3390/ma15249030
APA Style
McIvor, M. J., Ó Maolmhuaidh, F., Meenagh, A., Hussain, S., Bhattacharya, G., Fishlock, S., Ward, J., McFerran, A., Acheson, J. G., Cahill, P. A., Forster, R., McEneaney, D. J., Boyd, A. R., & Meenan, B. J.
(2022). 3D Fabrication and Characterisation of Electrically Receptive PCL-Graphene Scaffolds for Bioengineered In Vitro Tissue Models. Materials, 15(24), 9030.
https://doi.org/10.3390/ma15249030