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1 n that in the case of a simply mixed colloid-bacterial suspension.
2 tivation activity retained after washing the bacterial suspension.
3 esence of available complex carbohydrates in bacterial suspension.
4 lated intranasally with the initial doses of bacterial suspension.
5 ting of self-propelled particles, like dense bacterial suspensions.
6 0-fold less active, respectively, than whole bacterial suspensions.
7 ully applied to detect sortase A activity in bacterial suspensions.
8 ) in solution when adding humic acid (HA) to bacterial suspensions.
9 on the membrane surface and its exposure to bacterial suspensions.
10 le systems, which are representative of some bacterial suspensions, a hitherto unknown static structu
11 ficantly longer than in mice challenged with bacterial suspensions alone but also required prolonged
12 rnally driven particles such as bird flocks, bacterial suspension and their artificial analogues.
14 metastomal flaps regulate the flow of dense bacterial suspensions and exclude excessively large part
15 eir ability to recover Brucella DNA from PBS bacterial suspensions and from swab specimens and, thus,
17 observations of a droplet passing through a bacterial suspension at ecologically relevant length and
19 rical behaviour of single bacterial cell and bacterial suspension for the study of AST is also discus
20 ugh the contraction of the worm's pharynx, a bacterial suspension is sucked into the pharynx's lumen.
23 ial suspensions were consistently present in bacterial suspensions of buffer/tryptic soy broth (posit
25 stant strains) and the H37Rv strain by using bacterial suspensions prepared directly from solid media
26 lts and cryoprotectant (e.g., glycerol) from bacterial suspensions, the significant osmotic pressures
27 y screen possible inhibitors of sortase A in bacterial suspensions, thereby aiding in the development
30 the expression of thymosin beta-10, whereas bacterial suspensions upregulated thymosin beta-10 expre
31 A combined ultrasound and ozone treatment of bacterial suspensions using a commercial system affords
32 ow this phenomenon depends on system size in bacterial suspensions using bulk rheometry and particle-
35 on interactions between single stimulus and bacterial suspension, we emphasize on compounding effect
36 iomarkers from direct MALDI analysis of pure bacterial suspensions were consistently present in bacte
39 bacterial cells per microwire in 1000 CFU/mL bacterial suspensions when the electric field generated
40 esulted in superior levels of detection from bacterial suspensions, while the MasterPure kit and MagN