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1 in-dependent rolling, but no firm adherence (sticking).
2 iding high dye photostability and low sample sticking.
3 ta-d-maltoside (DDM), which prevents protein sticking.
4 Vs), whereas naive T cells were incapable of sticking.
5  and predict the transition from bouncing to sticking.
6 receptor homologue did not reduce rolling or sticking.
7 ng of LNCs, and that LFA-1 was essential for sticking.
8 L showed a significant increase in leukocyte sticking and also produced larger thrombi that persisted
9 ep adhesion cascade, which involves rolling, sticking, and crawling of the leukemic cells on the endo
10 s, but also by triggering integrin-dependent sticking (arrest) of circulating lymphocytes at venular
11                     The particles spread via sticking, as a monolayer on the cylinder's surface.
12 in observations if the possibility of facile sticking at special sites (edges, point defects, etc.) o
13 t the arc operation unstable due to frequent sticking between two molten electrodes and formation of
14 on is more critical for the firm adhesion of sticking cells than for leukocyte rolling.
15 rolling (cells/mm2 endothelial surface/min), sticking (cells/mm2 endothelial surface), and infiltrati
16                                  The initial sticking coefficient for N(2) dissociative adsorption on
17 alistic modeling, whence the crucial role of sticking coefficients (catalyst precursors) as prebiotic
18                             Domain-dependent sticking coefficients are observed using temperature-pro
19 ach is used to simplify the species-specific sticking coefficients at empty active (substrate) sites
20 te specificity (chemical selectivity) of the sticking coefficients for active monomers.
21 r and develop a model to predict melting and sticking conditions for its global compositional range.
22 n contrast, pertussis toxin-sensitive B cell sticking does not require SLC or MIP-3beta signaling, an
23  In this latter case, a nanoparticle to clay sticking efficiency could be determined.
24 ch to the synthesis of dendrimers by simply "sticking" generation by generation together is achieved
25  second CCR7 ligand, CCL19, triggered T cell sticking in cremaster muscle venules, but failed to indu
26 er lymphocyte rolling and reduced lymphocyte sticking in HEV, accounting for the diminished lymphocyt
27 ot significantly reduce leukocyte rolling or sticking in iris vessels but blocked the cellular infilt
28 cant contribution to attachment, rolling, or sticking in resting PLNs.
29 showed that T(CM) rolled and firmly adhered (sticking) in high endothelial venules (HEVs), whereas na
30 ibody except for 1 preparation increased WBC sticking (mean number of WBCs ranged from 22.7 to 50.6)
31 collision is successful and occurs through a sticking mechanism.
32 mokine ligand 12, induced integrin-dependent sticking of GFP(+) cells.
33 itical elements in intravascular rolling and sticking of leukocytes during acute inflammation.
34 homing to peripheral lymph nodes and reduced sticking of lymphocytes along high endothelial venules.
35                                              Sticking of mononuclear cells to endothelial cells also
36 reveal the charge asymmetry to be due to the sticking of particles at the vertices of the oppositely
37 lassical trajectory (CT) calculations on the sticking of protons to the basal plane (0001) face of cr
38                                              Sticking of T(CM) in plt/plt HEVs was pertussis toxin se
39 omeric materials and a helix inner electrode sticking on a tube with the dielectric layer and outer e
40 terior of the cluster, with the CH(3)O group sticking out and the OH group immersed within the cluste
41 "sticky tape" with the last 3-4 carbon atoms sticking out into bulk solvent.
42  an increase of a polymer brush of molecules sticking out of the surface.
43 hile leaving the extended structural portion sticking out of the vestibule into the extracellular med
44 epletion force might be responsible for this sticking phenomenon.
45 with bulk properties of the metals and their sticking probabilities and film morphologies.
46 ues correlate well with the observed initial sticking probabilities and saturation island densities o
47                             In addition, the sticking probabilities calculated from our data are in g
48 ed in the chemically accurate calculation of sticking probabilities on cold metal surfaces for activa
49 ial cluster formation, introduced asymmetric sticking probabilities, and drove 1D and 2D condensation
50 ia differing chemical structure, reactivity, sticking probabilities, and energy transfer to the surfa
51  surface to electrons increases Ca's initial sticking probability but lowers its adsorption energy.
52   At coverages below 0.2 monolayer (ML), the sticking probability for methanol on both surfaces at or
53                             The enthalpy and sticking probability for the dissociative adsorption of
54                                          The sticking probability increases with Ei and converges to
55 bination with LEED, AES, ISS, work function, sticking probability measurements, and density functiona
56                On pristine PMMA, the initial sticking probability of Ca is 0.5, increasing quickly wi
57                                          The sticking probability of Ca on MgO(100) at 300 K is unity
58              At coverages below 0.10 ML, the sticking probability of cyclohexene on Pt(111) is close
59                   The heat of adsorption and sticking probability of cyclohexene on Pt(111) were meas
60                   The heat of adsorption and sticking probability of methanol were measured on clean
61 rowth rate corresponds to a reduction in the sticking probability of the precursor, which enhances co
62 of volcanic ash, leading to overestimates of sticking temperature and thus severe underestimates of t
63 The Asn-Asn interactions work like "glue" by sticking the DFNKF strands together and assist the "on-p
64                               In the case of sticking, the proton is trapped in the ice forming a Zun
65 r hydrophobic tails into the oil phase while sticking their hydrophilic head groups in water.
66 e settlement can then occur by, for example, sticking to biofilms (e.g., fine particulate organic mat
67 opic pretransition zone where bacteria start sticking to each other and to surfaces.
68  resulted in a marked decrease in lymphocyte sticking to high endothelial venules and in recruitment
69 g defects, there was not impaired rolling or sticking to lymph node vascular endothelium but rather d
70  dynamic FtsZ protofilaments in bundles from sticking to one another, holding them apart at a distanc
71 outcomes, such as cells reversing direction, sticking to one another, or walking past one another.
72 here failures cause material aggregation and sticking to rock surfaces.
73 xyphenylalanine (DOPA) used by shellfish for sticking to rocks.
74 mensurate layers, there is a transition from sticking to sliding with Aubry-type signatures.
75 opus laevis oocytes, submerged in buffer and sticking to the waveguide surface, were also detected.
76 e impact of ash by provoking its melting and sticking to turbine parts.
77 cci and enterococci because of oritavancin's sticking to vials and tubes.
78 eter separations and ultimately prevents the sticking together of biological matter.
79                                In nearly all sticking trajectories, the proton is implanted into the

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