Authors:
Ramos, C
Licht, TR
Sternberg, C
Krogfelt, KA
Molin, S
Citation: C. Ramos et al., Monitoring bacterial growth activity in biofilms from laboratory flow chambers, plant rhizosphere, and animal intestine, METH ENZYM, 337, 2001, pp. 21-42
Citation: Mr. Millar et al., Use of a continuous culture system linked to a modified Robbins device or flow cell to study attachment of bacteria to surfaces, METH ENZYM, 337, 2001, pp. 43-62
Citation: J. Jass et al., Direct biofilm monitoring by a capacitance measurement probe in continuousculture chemostats, METH ENZYM, 337, 2001, pp. 63-70
Citation: Cm. Buswell et al., Use of continuous culture bioreactors for the study of pathogens such as Campylobacter jejuni and Escherichia coli O157 in biofilms, METH ENZYM, 337, 2001, pp. 70-78
Citation: S. Percival et Jt. Walker, Methods used to assess biofouling of material used in distribution and domestic water systems, METH ENZYM, 337, 2001, pp. 187-200
Citation: Ds. Smith et Eg. Ferris, Computational and experimental approaches to studying metal interactions with microbial biofilms, METH ENZYM, 337, 2001, pp. 225-242
Authors:
Paterson-Beedle, M
Nott, KP
Macaskie, LE
Hall, LD
Citation: M. Paterson-beedle et al., Study of biofilm within a packed-bed reactor by three-dimensional magneticresonance imaging, METH ENZYM, 337, 2001, pp. 285-305
Authors:
Stoodley, P
Hall-Stoodley, L
Lappin-Scott, HM
Citation: P. Stoodley et al., Detachment, surface migration, and other dynamic behavior in bacterial biofilms revealed by digital time-lapse imaging, METH ENZYM, 337, 2001, pp. 306-318
Citation: Z. Lewandowski et H. Beyenal, Limiting-current-type microelectrodes for quantifying mass transport dynamics in biofilms, METH ENZYM, 337, 2001, pp. 339-359
Authors:
Ceri, H
Olson, M
Morck, D
Storey, D
Read, R
Buret, A
Olson, B
Citation: H. Ceri et al., The MBEC assay system: Multiple equivalent biofilms for antibiotic and biocide susceptibility testing, METH ENZYM, 337, 2001, pp. 377-385