Showing results (1-10 of 80) with videos related to
Sort By:
Pageof 8
Biophysical Journal|June 4, 1999
Biological effects due to weak electric and magnetic fields: the temperature variation thresholdJ C Weaver, T E Vaughan, G T MartinMethods in Molecular Medicine|March 30, 2011
Mechanism of transdermal drug delivery by electroporationT E Vaughan, J C WeaverBiophysical Journal|August 1, 1996
Energetic constraints on the creation of cell membrane pores by magnetic particlesT E Vaughan, J C WeaverThe Journal of Investigative Dermatology. Symposium Proceedings|September 12, 1998
Theory of skin electroporation: implications of straight-through aqueous pathway segments that connect adjacent corneocytesJ C Weaver, T E Vaughan, Y ChizmadzhevNature|June 23, 2000
Biological sensing of small field differences by magnetically sensitive chemical reactionsJ C Weaver, T E Vaughan, R D AstumianBiochemical and Biophysical Research Communications|May 29, 1997
Heparin alters transdermal transport associated with electroporationJ C Weaver, R Vanbever, T E Vaughan, et al.Journal of Controlled Release : Official Journal of the Controlled Release Society|June 17, 1999
Spatially constrained localized transport regions due to skin electroporationT R Gowrishankar, T O Herndon, T E Vaughan, et al.Biophysical Journal|October 28, 1998
Theoretical limits on the threshold for the response of long cells to weak extremely low frequency electric fields due to ionic and molecular flux rectificationJ C Weaver, T E Vaughan, R K Adair, et al.The Journal of Investigative Dermatology|February 13, 2001
Microfabrication of individual 200 microm diameter transdermal microconduits using high voltage pulsing in salicylic acid and benzoic acidL Ilic, T R Gowrishankar, T E Vaughan, et al.Journal of Controlled Release : Official Journal of the Controlled Release Society|September 2, 1999
Spatially constrained skin electroporation with sodium thiosulfate and urea creates transdermal microconduitsL Ilic, T R Gowrishankar, T E Vaughan, et al.Pageof 8