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Alberto Foletti

Showing results (11-20 of 23) with videos related to

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Electromagnetic Biology and Medicine|August 17, 2010
Calcium ion cyclotron resonance (ICR), 7.0 Hz, 9.2 microT magnetic field exposure initiates differentiation of pituitary corticotrope-derived AtT20 D16V cellsAlberto Foletti, Mario Ledda, Flavia De Carlo, et al.
Electromagnetic Biology and Medicine|April 2, 2009
Cellular ELF signals as a possible tool in informative medicineAlberto Foletti, Antonella Lisi, Mario Ledda, et al.
Electromagnetic Biology and Medicine|July 14, 2017
Electromagnetic information transfer through aqueous systemAlberto Foletti, Mario Ledda, Maria Grazia Lolli, et al.
Electromagnetic Biology and Medicine|January 18, 2013
Bioelectromagnetic medicine: the role of resonance signalingAlberto Foletti, Settimio Grimaldi, Antonella Lisi, et al.
Pharmaceuticals (Basel, Switzerland)|October 6, 2015
Mitochondrial Dysfunction and Disturbed Coherence: Gate to CancerJiří Pokorný, Jan Pokorný, Alberto Foletti, et al.
Tissue Engineering. Part C, Methods|August 5, 2014
Nonpulsed sinusoidal electromagnetic fields as a noninvasive strategy in bone repair: the effect on human mesenchymal stem cell osteogenic differentiationMario Ledda, Enrico D'Emilia, Livio Giuliani, et al.
Electromagnetic Biology and Medicine|December 21, 2006
Extremely low frequency 7 Hz 100 microT electromagnetic radiation promotes differentiation in the human epithelial cell line HaCaTAntonella Lisi, Alberto Foletti, Mario Ledda, et al.
Electromagnetic Biology and Medicine|September 30, 2008
Calcium ion cyclotron resonance (ICR) transfers information to living systems: effects on human epithelial cell differentiationAntonella Lisi, Mario Ledda, Flavia De Carlo, et al.
Bioelectromagnetics|July 14, 2006
Extremely low frequency electromagnetic field exposure promotes differentiation of pituitary corticotrope-derived AtT20 D16V cellsAntonella Lisi, Mario Ledda, Emanuela Rosola, et al.
Thescientificworldjournal|July 12, 2013
Biophysical insights into cancer transformation and treatmentJiří Pokorný, Alberto Foletti, Jitka Kobilková, et al.
Pageof 3

Showing results (11-20 of 23) with videos related to

Sort By:
Pageof 3
Electromagnetic Biology and Medicine|August 17, 2010
Calcium ion cyclotron resonance (ICR), 7.0 Hz, 9.2 microT magnetic field exposure initiates differentiation of pituitary corticotrope-derived AtT20 D16V cellsAlberto Foletti, Mario Ledda, Flavia De Carlo, et al.
Electromagnetic Biology and Medicine|April 2, 2009
Cellular ELF signals as a possible tool in informative medicineAlberto Foletti, Antonella Lisi, Mario Ledda, et al.
Electromagnetic Biology and Medicine|July 14, 2017
Electromagnetic information transfer through aqueous systemAlberto Foletti, Mario Ledda, Maria Grazia Lolli, et al.
Electromagnetic Biology and Medicine|January 18, 2013
Bioelectromagnetic medicine: the role of resonance signalingAlberto Foletti, Settimio Grimaldi, Antonella Lisi, et al.
Pharmaceuticals (Basel, Switzerland)|October 6, 2015
Mitochondrial Dysfunction and Disturbed Coherence: Gate to CancerJiří Pokorný, Jan Pokorný, Alberto Foletti, et al.
Tissue Engineering. Part C, Methods|August 5, 2014
Nonpulsed sinusoidal electromagnetic fields as a noninvasive strategy in bone repair: the effect on human mesenchymal stem cell osteogenic differentiationMario Ledda, Enrico D'Emilia, Livio Giuliani, et al.
Electromagnetic Biology and Medicine|December 21, 2006
Extremely low frequency 7 Hz 100 microT electromagnetic radiation promotes differentiation in the human epithelial cell line HaCaTAntonella Lisi, Alberto Foletti, Mario Ledda, et al.
Electromagnetic Biology and Medicine|September 30, 2008
Calcium ion cyclotron resonance (ICR) transfers information to living systems: effects on human epithelial cell differentiationAntonella Lisi, Mario Ledda, Flavia De Carlo, et al.
Bioelectromagnetics|July 14, 2006
Extremely low frequency electromagnetic field exposure promotes differentiation of pituitary corticotrope-derived AtT20 D16V cellsAntonella Lisi, Mario Ledda, Emanuela Rosola, et al.
Thescientificworldjournal|July 12, 2013
Biophysical insights into cancer transformation and treatmentJiří Pokorný, Alberto Foletti, Jitka Kobilková, et al.
Pageof 3