Biomedical Engineering Reference
In-Depth Information
Thiel V, Vilchez R, Sztajer H, Wagner-Dobler I, Schulz S (2009) Identification, quantification, and
determination of the absolute configuration of the bacterial quorum-sensing signal
autoinducer-2 by gas chromatography-mass spectrometry. Chembiochem 10:479-485
Tiratsoo JNH (1999) Pipeline pigging technology. Butterworth-Heinemann, Houston, TX
Traba C, Chen L, Liang JF (2013) Low power gas discharge plasma mediated inactivation and
removal of biofilms formed on biomaterials. Curr Appl Phys 13:S12-S18
Tribou M, Swain G (2010) The use of proactive in-water grooming to improve the performance of
ship hull antifouling coatings. Biofouling 26:47-56
Tsai AG, Williamson DF, Glick HA (2011) Direct medical cost of overweight and obesity in the
USA: a quantitative systematic review. Obes Rev 12:50-61
Umland TC, Schultz LW, MacDonald U, Beanan JM, Olson R & Russo TA (2012) In vivo-
validated essential genes identified in Acinetobacter baumannii by using human ascites overlap
poorly with essential genes detected on laboratory media. mBio 3
Usacheva MN, Teichert MC, Biel MA (2001) Comparison of the methylene blue and toluidine
blue photobactericidal efficacy against gram-positive and gram-negative microorganisms.
Lasers Surg Med 29:165-173
Vande Velde G, Kucharikova S, Schrevens S, Himmelreich U, Van Dijck P (2014) Towards
non-invasive monitoring of pathogen-host interactions during Candida albicans biofilm
formation using in vivo bioluminescence. Cell Microbiol 16(1):115-130
Vandevoorde L, Christiaens H, Verstraete W (1992) Prevalence of coaggregation reactions among
chicken lactobacilli. J Appl Bacteriol 72:214-219
Vornhagen J, Stevens M, McCormick DW, Dowd SE, Eisenberg JN, Boles BR, Rickard AH
(2013) Coaggregation occurs amongst bacteria within and between biofilms in domestic
showerheads. Biofouling 29:53-68
Walmsley AD, Laird WR, Lumley PJ (1992) Ultrasound in dentistry. Part 2-periodontology and
endodontics. J Dent 20:11-17
Wang X, Wood TK (2011) Toxin-antitoxin systems influence biofilm and persister cell formation
and the general stress response. Appl Environ Microbiol 77:5577-5583
Wang X, Liu LH, Ramstrom O, Yan M (2009) Engineering nanomaterial surfaces for biomedical
applications. Exp Biol Med 234:1128-1139
Watters C, Everett JA, Haley C, Clinton A, Rumbaugh KP (2013) Insulin treatment modulates the
host immune system to enhance Pseudomonas aeruginosa wound biofilms. Infect Immun 82
(1):92-100
Whitchurch CB, Tolker-Nielsen T, Ragas PC, Mattick JS (2002) Extracellular DNA required for
bacterial biofilm formation. Science 295:1487
Wilkinson LJ, White RJ, Chipman JK (2011) Silver and nanoparticles of silver in wound
dressings: a review of efficacy and safety. J Wound Care 20:543-549
Wilson M (2004) Lethal photosensitisation of oral bacteria and its potential application in the
photodynamic therapy of oral infections. Photochem Photobiol Sci 3:412-418
Wimpenny J (1996) Ecological determinants of biofilm formation. Biofouling 10:43-63
Wolcott R, Costerton JW, Raoult D, Cutler SJ (2013) The polymicrobial nature of biofilm
infection. Clin Microbiol Infect 19:107-112
Wong T-S, Kang SH, Tang SKY, Smythe EJ, Hatton BD, Grinthal A, Aizenberg J (2011)
Bioinspired self-repairing slippery surfaces with pressure-stable omniphobicity. Nature
477:443-447
Xavier KB, Bassler BL (2003) LuxS quorum sensing: more than just a numbers game. Curr Opin
Microbiol 6:191-197
Xu X, Stewart PS, Chen X (1996) Transport limitation of chlorine disinfection of Pseudomonas
aeruginosa entrapped in alginate beads. Biotechnol Bioeng 49:93-100
Younes JA, van der Mei HC, van den Heuvel E, Busscher HJ, Reid G (2012) Adhesion forces and
coaggregation between vaginal staphylococci and lactobacilli. PloS One 7:e36917
Yu T, de la Rosa C, Lu R (2004) Microsensor measurement of oxygen concentration in biofilms:
from one dimension to three dimensions. Water Sci Technol 49:353-358
Search WWH ::




Custom Search