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1 ation and also mediates cell-cell adherence (flocculation).
2 tion in mating, invasion, filamentation, and flocculation.
3 ggregate in the calcium-dependent process of flocculation.
4 th in diploids, haploid invasive growth, and flocculation.
5 le size and were more stable against droplet flocculation.
6 due to cell-cell binding, a process known as flocculation.
7 ation, but was not involved in M. aeruginosa flocculation.
8 echanisms involved during MP coagulation and flocculation.
9 eins, which results in their aggregation and flocculation.
10 r layer-by-layer assembly or vacuum-assisted flocculation.
11  with surface-adsorbed trastuzumab exhibited flocculation.
12  lacking both CheB1 and CheR1 was delayed in flocculation.
13 particles from secondary- to primary-minimum flocculation.
14 ng these cellular functions directly affects flocculation, a cellular differentiation process initiat
15 to metabolic stress, indicating the onset of flocculation, a common feature observed in microbial sys
16 lution of cooperative behavior by revisiting flocculation, a self-adherence phenotype lacking in most
17 ocesses, typically does not possess inherent flocculation ability.
18    Visual and SEM observations confirmed the flocculation action of the mucilage as visible flocs for
19                            The highest 33.9% flocculation activity was observed with 60 mg L(-1) EPS
20 al advancements in the fields of coagulation/flocculation, adsorption, photocatalysis, and membrane f
21  significant microstructural changes in clay flocculation after K adsorption.
22 terlayer processes include diffusiophoresis, flocculation/aggregation, sedimentation, osmosis, and ch
23                                              Flocculation allows contaminants to accumulate at the se
24                               The reversible flocculation allows the conjugates to be readily separat
25 FLO1 in the laboratory strain S288C restores flocculation, an altered physiological state, reminiscen
26  addition, we found that Als1p mediates both flocculation and adherence of C. albicans to endothelial
27 e containing gelled W(1) exhibited extensive flocculation and coalescence.
28         Microparticles produced by depletion flocculation and film drying remain stable in acidic med
29 stance (EPS) content, resulting in increased flocculation and formation of MOS.
30  highly aggregated Fe(OH)(3), which promotes flocculation and gradual settling of the decomposed cyan
31         The brackish groundwater resulted in flocculation and immobilization of most particulate RAs.
32                                              Flocculation and sedimentation of a protein-rich biomass
33 eoxidation with chlorine dioxide followed by flocculation and settling have been shown to be effectiv
34  oil by the addition of n-alkane, leading to flocculation and subsequent filtration.
35 s when predicting diffusive contributions to flocculation and to single collector efficiency in media
36 tic of zinc-deficient cells, suggesting that flocculation and vacuolation serve homeostatic functions
37 istributions during the slow mixing stage in flocculation and, to some extent, their settling charact
38 oagulation simultaneously removed (via sweep flocculation) and inactivated a non-enveloped virus surr
39        Clumping precedes and is required for flocculation, and both processes appear to be independen
40 which was attributed to droplet coalescence, flocculation, and digestion.
41 sing lake water collected after coagulation, flocculation, and filtration at pH 6.5 and pH 8.5 with i
42 retreatment using ozonation and coagulation, flocculation, and filtration or the addition of H(2)O(2)
43 ethods including centrifugation, filtration, flocculation, and flotation are limited by intensive ene
44  exhibited the lowest levels of aggregation, flocculation, and free fatty acid release rate during in
45 recovery was accomplished using coagulation, flocculation, and sedimentation for removal of sulfide a
46                  In this study, coagulation, flocculation, and settling performances were investigate
47 functional groups include growth inhibition, flocculation, and the SRP/TIP1 family.
48                    Most analyses of Brownian flocculation apply to conditions where London-van der Wa
49 f the chromophoric DOM (CDOM) was removed by flocculation, approximately 4-5 mg L(-1) total organic c
50                    Our findings suggest that flocculation arises from the self-assembly of bisbenzimi
51 rowth and bud's site selection, clumping and flocculation, as well as increased sensitivity to a wide
52 rst step in the two-step synthesis process ("flocculation assembly").
53     Microstructure images revealed decreased flocculation at higher concentrations.
54       Microstructure images showed depletion flocculation at lower biopolymer concentrations, and thu
55         The P-O/W emulsions showed intensive flocculation at pH 5 and above 200 mM NaCl where the ele
56 , is significantly reduced by the effects of flocculation, background turbidity and internal tides.
57  charge neutralization contributed to kaolin flocculation, but was not involved in M. aeruginosa floc
58                                              Flocculation by alginate and CMC at pH = 4 showed 67% an
59 d to investigate the effect of turbulence on flocculation by capturing the time-evolution of individu
60                       However, because early flocculation can cause stuck/sluggish fermentations, thi
61 h electrostatic and steric effects, bridging-flocculation can occur in the presence of multivalent ca
62        Pretreatment of OSPW with coagulation-flocculation (CF) was investigated to determine the effe
63  ferric (Fe(III)) salt was investigated as a flocculation-coagulation system to remove arsenic (As) f
64    The study also revealed that the critical flocculation concentration of the system was 0.5 M of sa
65  binding isotherms, exchange rates, critical flocculation concentrations, and the composition of mixe
66                                          The flocculation conditions of EPS-1 were optimized, and the
67 ow disinfection rates necessitating extended flocculation/contact times to achieve significant log-in
68  a combination of low initial particle size, flocculation degree and steric hindrance promoted by the
69                          Derepression of the flocculation gene FLO1, which is normally repressed by t
70 nvolved in microplastic (MP) coagulation and flocculation have only been superficially investigated.
71 eoretical, laboratory and in-situ studies of flocculation have suggested that turbulence in the benth
72  diffusion in complex media, aggregation and flocculation, hindered behavior of particles in confined
73 ion of Che1 to the control of chemotaxis and flocculation in A. brasilense remains poorly understood.
74                Repression of FLO11-dependent flocculation in diploids is conferred by the mating-type
75 benzimidazole derivatives can rapidly induce flocculation in E. coli (K-12 MG1655) in a structure-dep
76 ht into the scale invariability of colloidal flocculation in forming hyperenriched gold deposits.
77 he addition of NaCl (300-400 mM) only caused flocculation in nanodispersion stabilized by SDS-Tween 8
78 of the gold as colloidal particles and their flocculation in nanoscale calcite veinlets.
79  expression and in sequence, suggesting that flocculation in S. cerevisiae is a dynamic, rapidly evol
80 nd how the membranes were stabilized against flocculation in salt water.
81 hollow spheres are theorized to form through flocculation, in which the charge-driven aggregation of
82     Mass spectrometric results revealed that flocculation induced substantial changes in the DOM and
83             We suggest intracellular biomass flocculation is a key mechanism of killing for cationic,
84                                    Bacterial flocculation is a process in which bacteria aggregate to
85                                              Flocculation is abolished when FLO11 is disrupted.
86                                Understanding flocculation is critical in accurately predicting sedime
87             In contrast, cell-cell adhesion (flocculation) is a desirable property of industrial Sacc
88 locculin because of its demonstrated role in flocculation, its structural similarity to other members
89 m were evaluated, including plug dispersion, flocculation kinetics, membrane degradation, and channel
90  toxoids vaccine (Td) containing 2 limits of flocculation (Lf) diphtheria toxoid was evaluated.
91                        Thus, organic-induced flocculation may have been more critical than deep-roote
92 rated from those associated with DOC using a flocculation method.
93 n its chemical speciation, and analyzed clay flocculation microstructures using transmission X-ray mi
94 PI-stabilized nanoemulsions were unstable to flocculation near the protein isoelectric point (pH 5.0)
95 veral minor components were identified after flocculation (nitrocellulose) or precipitation (sawdust,
96                                 In addition, flocculation of C. neoformans skn7 mutants suggests a po
97  Moreover, both the bases and ribose inhibit flocculation of decanoic acid by salt.
98                                              Flocculation of emulsion droplets occurred because of ch
99 ysiochemical characteristics of mucus induce flocculation of emulsion droplets, which could significa
100 ncomitant formation of exopolysaccharide and flocculation of heterotroph-methanogen cellular aggregat
101 esses remains unaddressed in coagulation and flocculation of insoluble precipitates (flocs), which pl
102                                        While flocculation of mud increases the settling velocity and
103  matter in metal-rich aquatic systems or the flocculation of organic matter in wastewater treatment p
104 observations suggest gelation occurs via the flocculation of semicrystalline colloidal particles, whi
105                             Emulsion droplet flocculation only occurred in emulsions at pH 7.0.
106 e alterations in phenotypes (e.g., adhesion, flocculation or biofilm formation).
107  multiple excitation wavelengths and similar flocculation or deposition methods in comparative analys
108  changes in SWNT bundling based on differing flocculation or deposition methods.
109 is sparse and can suffer from kinetic traps, flocculation, or difficult system integration protocols.
110        We focused on the characteristics and flocculation performance of EPS-1, especially with regar
111 myloid fibrils, validating their coagulation-flocculation performance under natural conditions.
112 ing an increase of droplet size and inducing flocculation phenomena; however, during storage, the pre
113 surement of target transcript levels and the flocculation phenotype characteristic of Zfs1 deletion.
114         Inhibition studies revealed that the flocculation phenotype induced by CAD1/AAF1 was similar
115 ell adherence in S. cerevisiae by inducing a flocculation phenotype.
116       S. cerevisiae expressing either of two flocculation phenotypes, Flo1 or NewFlo, adhered to endo
117            These results uncover an atypical flocculation process distinct from charge neutralisation
118 ew DBPs, which could not be prevented by the flocculation process.
119 ering experiments, which indicates a dynamic flocculation process.
120 idered iron sinks due to the coagulation and flocculation processes that occur at higher salinities.
121                                              Flocculation protects the FLO1 expressing cells from mul
122                                 Such gastric flocculation reduced the droplet surface area, overall l
123 ier were most suitable due to the absence of flocculation, reduced CO crystallization, and melting ab
124 ic-fungi binding, evidenced by a decrease in flocculation relative to that of wild-type Aspergillus f
125 s including vegetative trapping and particle flocculation, remains poorly defined for microplastics l
126 the membrane-solution interface by unsettled flocculation residuals.
127 ssed by approaches including nanofiltration, flocculation, reverse osmosis and adsorptive methods usi
128 tional water treatment involving coagulation-flocculation-sedimentation may be impeded by vascular pl
129                      Bench-scale coagulation/flocculation/sedimentation simulated conventional treatm
130 uble mutants demonstrated that the increased flocculation seen in zfs1Delta mutants is due, at least
131 on deposition occurs in areas where elevated flocculation settling velocities are [Formula: see text]
132       Using a transport model, we found that flocculation substantially increased mud deposition, res
133 he glasses were determined to estimate their flocculation tendency.
134    RF data, as assayed by both the bentonite flocculation test (BFT) and the sheep cell agglutination
135                                            A flocculation test demonstrated that neutralizing the ani
136 collisional analysis based on Smoluchowski's flocculation theory was employed to fit the kinetics of
137                                              Flocculation, therefore, is driven by one of a few known
138                             The influence of flocculation time and temperature emphasized the importa
139 ned by centrifuging wet sediment followed by flocculation to remove colloids.
140 ind have properties (e.g. growth inhibition, flocculation, vanadate resistance, stress response) that
141 were added to resting incubations; analogous flocculation was also observed in soil enrichments.
142 ence, the relationship between adherence and flocculation was examined.
143                                              Flocculation was only observed during exponential growth
144                                        Sweep flocculation was the primary virus destabilization mecha
145          The process kinetics of coagulation-flocculation were also explored.
146                       Bridging and depletion flocculation were mostly observed for P-O/W emulsions co
147       Viscosity, molecular interactions, and flocculation were the most important parameters controll
148  is known to increase cell-cell adhesion and flocculation when overexpressed.
149 ction between primary- and secondary-minimum flocculation when the interparticle potential curve refl
150 rated that 9c polyplexes had a low degree of flocculation, whereas 9a and 9b polyplexesd aggregate ra
151                                              Flocculation with carrageenan (0.45 g/L) at pH = 4 exhib
152    Tryptophan-costabilized emulsions induced flocculation with kappa-carrageenan via electrostatic ad
153 s were the most resistant to coagulation and flocculation, with 82% removal observed even under enhan

 
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