Authors:
Goldstein, AS
Amory, JK
Martin, SM
Vernon, C
Matsumoto, A
Yager, P
Citation: As. Goldstein et al., Testosterone delivery using glutamide-based complex high axial ratio nficrostructures, BIO MED CH, 9(11), 2001, pp. 2819-2825
Citation: As. Goldstein et al., Continuous and highly variable rate controlled release of model drugs fromsphingolipid-based complex high axial ratio microstructures, J CONTR REL, 70(1-2), 2001, pp. 125-138
Authors:
Goldstein, AS
Juarez, TM
Helmke, CD
Gustin, MC
Mikos, AG
Citation: As. Goldstein et al., Effect of convection on osteoblastic cell growth and function in biodegradable polymer foam scaffolds, BIOMATERIAL, 22(11), 2001, pp. 1279-1288
Citation: As. Goldstein et al., The relationship between the structure of the headgroup of sphingolipids and their ability to form complex high axial ratio microstructures, CHEM PHYS L, 109(1), 2001, pp. 1-14
Citation: Dp. Jorgensen et al., A dual-pulse repetition frequency scheme for mitigating velocity ambiguities of the NOAA P-3 airborne Doppler radar, J ATMOSP OC, 17(5), 2000, pp. 585-594
Citation: As. Goldstein et Mh. Gelb, An alternate preparation of thioester resin linkers for solid-phase synthesis of peptide C-terminal thioacids, TETRAHEDR L, 41(16), 2000, pp. 2797-2800
Authors:
Lee, KC
Carlson, PA
Goldstein, AS
Yager, P
Gelb, MH
Citation: Kc. Lee et al., Protection of a decapeptide from proteolytic cleavage by lipidation and self-assembly into high-axial-ratio microstructures: A kinetic and structuralstudy, LANGMUIR, 15(17), 1999, pp. 5500-5508