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Scientific Reports|October 3, 2019
Ultra-fast direct growth of metallic micro- and nano-structures by focused ion beam irradiationRosa Córdoba, Pablo Orús, Stefan Strohauer, et al.Bioinformatics (Oxford, England)|March 30, 2020
PolishEM: image enhancement in FIB-SEMJose-Jesus Fernandez, Teobaldo E Torres, Eva Martin-Solana, et al.Biomaterials|November 16, 2016
Magnetic hyperthermia enhances cell toxicity with respect to exogenous heatingBeatriz Sanz, M Pilar Calatayud, Teobaldo E Torres, et al.Scientific Reports|August 19, 2017
Cell damage produced by magnetic fluid hyperthermia on microglial BV2 cellsM Pilar Calatayud, Elisa Soler, Teobaldo E Torres, et al.Nanoscale|October 2, 2019
Effects of biological buffer solutions on the peroxidase-like catalytic activity of Fe3O4 nanoparticlesMariana Raineri, Elin L Winkler, Teobaldo E Torres, et al.Acta Neuropathologica Communications|June 5, 2024
Disruption of the mitochondrial network in a mouse model of Huntington's disease visualized by in-tissue multiscale 3D electron microscopyEva Martin-Solana, Laura Casado-Zueras, Teobaldo E Torres, et al.Advanced Biosystems|September 14, 2020
Enhanced Cellular Transduction of Nanoparticles Resistant to Rapidly Forming Plasma Protein CoronasLia A Blokpoel Ferreras, Daniel Scott, Saul Vazquez Reina, et al.Scientific Reports|March 10, 2019
The relevance of Brownian relaxation as power absorption mechanism in Magnetic HyperthermiaTeobaldo E Torres, Enio Lima, M Pilar Calatayud, et al.Journal of Materials Chemistry. B|April 9, 2020
Neuronal cells loaded with PEI-coated Fe3O4 nanoparticles for magnetically guided nerve regenerationM Pilar Calatayud, Cristina Riggio, Vittoria Raffa, et al.Nanomedicine : Nanotechnology, Biology, and Medicine|January 11, 2014
The orientation of the neuronal growth process can be directed via magnetic nanoparticles under an applied magnetic fieldCristina Riggio, M Pilar Calatayud, Martina Giannaccini, et al.Pageof 2