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1 gates but were recovered from the spleen and peritoneal lavage.
2       The number of intact mast cells in the peritoneal lavages after eotaxin injection was significa
3 llate-elicited macrophages were collected by peritoneal lavage and bone marrow was harvested.
4 FAST, invasive procedures such as diagnostic peritoneal lavage and exploratory laparotomy were common
5                                              Peritoneal lavage and plasma samples were analyzed for p
6  levels of proinflammatory cytokines in both peritoneal lavage and serum.
7 phages obtained from thioglycollate-elicited peritoneal lavages and differentiated bone marrow cells
8 al cavity of mice, incubation, retrieval via peritoneal lavage, and observation of the number of cell
9 our methods: computed tomography, diagnostic peritoneal lavage, celiotomy, or serial clinical evaluat
10          Immunoprecipitation of lumican from peritoneal lavage co-precipitates CD14, a cell surface l
11                               In contrast to peritoneal lavage eosinophils, dispersed granuloma cells
12 ons during Escherichia coli pneumonia, or in peritoneal lavage fluid after 4 h of S. pneumoniae perit
13 of TNF-alpha and IFN-gamma in the spleen and peritoneal lavage fluid as compared to values determined
14 phage inflammatory protein (MIP)-2 levels in peritoneal lavage fluid as well as induced RNA expressio
15                                              Peritoneal lavage fluid concentrations of IL-10 were con
16 NK cells and significantly reduced levels of peritoneal lavage fluid IL-5, whereas the number of IL-5
17 e significantly increased in both plasma and peritoneal lavage fluid in CpG ODN-treated versus non-Cp
18 lso determined that cells collected from the peritoneal lavage fluid of E. faecalis-infected mice sho
19 rophils and macrophages were concentrated in peritoneal lavage fluid of experimental animals (p < 0.0
20 ), but did not significantly affect IL-10 in peritoneal lavage fluid or in lysates of peritoneal cell
21 tric analysis of cytokine-producing cells in peritoneal lavage fluid revealed increased numbers of IL
22 ontrast, microbial burdens in the organs and peritoneal lavage fluid were similar between mono- and c
23 enzyme-linked immunosorbent assay) in serum, peritoneal lavage fluid, and liver and lung samples at 4
24 ostaglandin levels were measured from serum, peritoneal lavage fluid, and muscularis culture media.
25 ignificant increase in the levels of CCL4 in peritoneal lavage fluid.
26 P augmented cytokine levels in the blood and peritoneal lavage fluid.
27 hanges in protein levels in cell lysates and peritoneal lavage fluid.
28             In vitro, mouse eosinophils from peritoneal lavage fluids did not produce superoxide anio
29                                              Peritoneal lavage fluids from CREB-inhibited tumor-beari
30                                              Peritoneal lavage fluids from these mice also contained
31 were performed on their kidneys, livers, and peritoneal lavage fluids.
32         CT has virtually replaced diagnostic peritoneal lavage for the detection of important injurie
33                      Chemotaxis assays using peritoneal lavage from pristane-injected Irf5(+/+) and I
34 peritonitis (15 patients in the laparoscopic peritoneal lavage group vs 13 in the colon resection gro
35 nd P2X(7)R(-/-) animals display increases in peritoneal lavage IL-6 levels but no detectable IL-1.
36 in-6, and interleukin-10 levels in serum and peritoneal lavage in G6PD-deficient mice compared with w
37                                   Diagnostic peritoneal lavage is rarely performed, and CT is used wh
38 of abdominal computed tomography, diagnostic peritoneal lavage, laparotomy, autopsy, and/or clinical
39 tients were assigned to undergo laparoscopic peritoneal lavage (n = 101) or colon resection (n = 98)
40 rate that peritoneal macrophages isolated by peritoneal lavage of unchallenged mice express P-selecti
41  cytometric analysis of cells recovered from peritoneal lavages of anti-CR3-treated T. gondii-infecte
42              Reduced monocyte recruitment in peritoneal lavages of Fpr2/3(-/-) animals was reflected
43                         Parallel analyses of peritoneal lavage proteins for protein dityrosine and ni
44 ts were compared with findings of diagnostic peritoneal lavage, repeat US, computed tomography (CT),
45                      Microarrays of infected peritoneal lavage revealed >10-fold up-regulation of neu
46  bacterial densities in kidneys, livers, and peritoneal lavage samples than mice immunized with stand
47 er LPS injection for collection of serum and peritoneal lavage samples that were used to assay IL-10
48  abdominal sonography for trauma, diagnostic peritoneal lavage, spiral computed tomography (CT) scan,
49                               In the in vivo peritoneal lavage study, animals received injections of
50 mputed tomographic, repeat US, cystographic, peritoneal lavage, surgical, and/or autopsy findings in
51 icacy of hypothermia induced by an automated peritoneal lavage system in patients with ST-segment-ele
52                                    Automated peritoneal lavage system is a safe and ultrarapid method
53  cooling technology, the Velomedix Automated Peritoneal Lavage System using ice-cold fluids continuou
54 nts to detect hemopericardium and diagnostic peritoneal lavage to detect hemoperitoneum.
55               In the late period, diagnostic peritoneal lavage was phased out in favor of torso ultra
56 n, peritonitis was induced by SEB injection; peritoneal lavages were collected after 48 h and analyze

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