共 32 条
[1]
Ford, Rubinstein, Hogan, Formulation of sustained release promethazine hydrochloride tablets using hydroxypropyl methylcellulose matrices, Int. J. Pharm., 24, pp. 327-338, (1985)
[2]
Lapidus, Lordi, Some factors affecting the release of a water-soluble drug from a compressed hydrophilic matrix, J. Pharm. Sci., 55, pp. 840-843, (1966)
[3]
Lapidus, Lordi, Drug release from compressed hydrophilic matrices, J. Pharm. Sci., 55, pp. 1292-1301, (1966)
[4]
Alderman, A review of cellulose ethers in hydrophilic matrices for oral controlled-release dosage forms, Int. J. Pharm. Technol. Prod. Manuf., 5, pp. 1-9, (1984)
[5]
Ford, Rubinstein, Hogan, Propranolol hydrochloride and aminophylline release from matrix tablets containing hydroxypropyl methylcellulose, Int. J. Pharm., 24, pp. 339-350, (1985)
[6]
Huber, Dale, Christenson, Utilization of hydrophilic gums for the control of drug release from tablet formulations I: Disintegration and dissolution behavior, J. Pharm. Sci., 55, pp. 974-977, (1966)
[7]
Ford, Rubinstein, Hogan, Dissolution of a poorly water soluble drug indomethacin from hydroxypropyl methylcellulose controlled release tablets, Journal of Pharmacy and Pharmacology, 37, (1986)
[8]
Ford, Rubinstein, Changela, Hogan, Influence of pH on the dissolution of promethazine hydrochloride from hydroxypropyl methylcellulose controlled release tablets, Journal of Pharmacy and Pharmacology, 37, (1986)
[9]
Huber, Christenson, Utilization of hydrophilic gums for the control of drug substance release from tablet formulations II: Influence of tablet hardness and density on dissolution behavior, J. Pharm. Sci., 57, pp. 164-166, (1968)
[10]
Korsmeyer, Gurny, Doelker, Buri, Peppas, Mechanisms of potassium chloride release from compressed, hydrophilic, polymeric matrices: Effect of entrapped air, J. Pharm. Sci., 72, pp. 1189-1191, (1983)