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Pharmaceutical Research|March 1, 1990
Transport mechanisms in iontophoresis. II. Electroosmotic flow and transference number measurements for hairless mouse skinM J Pikal, S ShahPharmaceutical Research|March 1, 1991
Study of the mechanisms of flux enhancement through hairless mouse skin by pulsed DC iontophoresisM J Pikal, S ShahDevelopments in Biological Standardization|January 1, 1992
Moisture transfer from stopper to product and resulting stability implicationsM J Pikal, S ShahPDA Journal of Pharmaceutical Science and Technology|January 1, 1997
Intravial distribution of moisture during the secondary drying stage of freeze dryingM J Pikal, S ShahPharmaceutical Research|March 1, 1990
Transport mechanisms in iontophoresis. III. An experimental study of the contributions of electroosmotic flow and permeability change in transport of low and high molecular weight solutesM J Pikal, S ShahJournal of Pharmaceutical Sciences|September 1, 1984
Mass and heat transfer in vial freeze-drying of pharmaceuticals: role of the vialM J Pikal, M L Roy, S ShahJournal of Pharmaceutical Sciences|June 1, 1983
Physical chemistry of freeze-drying: measurement of sublimation rates for frozen aqueous solutions by a microbalance techniqueM J Pikal, S Shah, D Senior, et al.Advanced Drug Delivery Reviews|March 22, 2001
The role of electroosmotic flow in transdermal iontophoresisM J PikalPharmaceutical Research|February 1, 1990
Transport mechanisms in iontophoresis. I. A theoretical model for the effect of electroosmotic flow on flux enhancement in transdermal iontophoresisM J PikalPharmaceutical Research|November 14, 1997
The stability of insulin in crystalline and amorphous solids: observation of greater stability for the amorphous formM J Pikal, D R RigsbeePageof 449