Quantitative NMR imaging study of the mechanism of drug release from swelling hydroxypropylmethylcellulose tablets
Fyfe C.A., Blazek-Welsh A.I. Quantitative NMR imaging study of the mechanism of drug release from swelling hydroxypropylmethylcellulose tablets. J. Control. Release. 68(3):2000;313-333
Swelling of hydroxypropyl methylcellulose matrix tablets: 1. Characterization of swelling using a novel optical imaging method
Gao P., Meury R.H. Swelling of hydroxypropyl methylcellulose matrix tablets: 1. Characterization of swelling using a novel optical imaging method. J. Pharm. Sci. 85(7):1996;725-731
Observation of swelling process and diffusion front position during swelling in hydroxypropyl methyl cellulose (HPMC) matrices containing a soluble drug
Colombo P., Bettini R., Peppas N.A. Observation of swelling process and diffusion front position during swelling in hydroxypropyl methyl cellulose (HPMC) matrices containing a soluble drug. J. Control. Release. 61(1-2):1999;83-91
The use of FT-IR imaging as an analytical tool for the characterization of drug delivery systems
Coutts-Lendon C.A., Wright N.A., Mieso E.V., Koenig J.L. The use of FT-IR imaging as an analytical tool for the characterization of drug delivery systems. J. Control. Release. 93(3):2003;223-248
New opportunities in micro- and macro-attenuated total reflection infrared spectroscopic imaging: Spatial resolution and sampling versatility
Chan K.L.A., Kazarian S.G. New opportunities in micro- and macro-attenuated total reflection infrared spectroscopic imaging: spatial resolution and sampling versatility. Appl. Spectrosc. 57(4):2003;381-389
An innovative design of compaction cell for in situ FT-IR imaging of tablet dissolution
van der Weerd J., Chan K.L.A., Kazarian S.G. An innovative design of compaction cell for in situ FT-IR imaging of tablet dissolution. Vib. Spectrosc. 35:2004;9-13
Modeling of drug release from delivery systems based on hydroxypropyl methylcellulose (HPMC)
Siepmann J., Peppas N.A. Modeling of drug release from delivery systems based on hydroxypropyl methylcellulose (HPMC). Adv. Drug Deliv. Rev. 48(2-3):2001;139-157