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1  confirmed systemic infection on culture, or endometritis.
2 t during clinical cases of infectious equine endometritis.
3  biopsies included acute rejection and acute endometritis.
4  hyperplasia, 11 had fibroids, and three had endometritis.
5 ment of intra-amniotic infections (IAIs) and endometritis.
6 luding mastitis, endocarditis, orchitis, and endometritis.
7 horioamnionitis, 1.6% (95% CI 0.9%-2.5%) for endometritis, 1.2% (95% CI 1.0%-1.5%) for wound infectio
8 ycin group and the placebo group in rates of endometritis (3.8% vs. 6.1%, P=0.02), wound infection (2
9 and endometrial tissue of women with chronic endometritis, a condition associated with infertility.
10 ere strongly associated with the presence of endometritis after the analysis was controlled for the p
11                                   Gonococcal endometritis and disseminated infection elicited increas
12        In women, genital infection can cause endometritis and pelvic inflammatory disease with the se
13               We describe four deaths due to endometritis and toxic shock syndrome associated with C.
14                                              Endometritis and toxic shock syndrome associated with Cl
15 6 rs5743810 T allele significantly decreased endometritis and/or UGTI (OR, 0.4 [95% CI, .2-.9]; P = .
16    African American race was associated with endometritis and/or UGTI (OR, 4.2 [95% CI, 2.0-8.7]; P =
17 s5743618, rs4833095, and rs8177374 increased endometritis and/or UGTI, albeit not significantly.
18 ay mediate the relationship between race and endometritis and/or UGTI.
19                Associations between race and endometritis and/or upper genital tract infection (UGTI)
20 d is potentially associated with urethritis, endometritis, and cervicitis.
21 term delivery, early miscarriage, postpartum endometritis, and low birth weight.
22 e sequelae in women-for example, cervicitis, endometritis, and pelvic inflammatory disease (PID), inc
23 ccal urethritis (NGU) in men and cervicitis, endometritis, and pelvic inflammatory disease in women.
24 sis, meningitis in early infancy, postpartum endometritis, and serious invasive infections in adults
25 terial infections of the bovine uterus cause endometritis but the risk of disease is increased by tis
26                                     Clinical endometritis (CE) is associated with bacterial pathogens
27 cian made a diagnosis of chorioamnionitis or endometritis clinically, was noted in 14% of cases and 4
28 esults in a submucosal macrophage-associated endometritis driven by ATP/P2X7R induced NLRP3 inflammas
29 ute shock complicating Clostridium sordellii endometritis following medical abortion with mifepriston
30                      We modeled C. sordellii endometritis in rats to test this hypothesis.
31                                              Endometritis is an important veterinary and medical prob
32 esponses to GAS infections in the context of endometritis is unknown.
33     Vaginal neutrophils were associated with endometritis only in the presence of elevated defensin l
34             PID was defined as 1) histologic endometritis or 2) pelvic pain and tenderness plus oral
35          PID was characterized by histologic endometritis or pelvic pain and tenderness plus one of t
36  outcomes of patients with chorioamnionitis, endometritis, or septic abortion receiving intravenous a
37            We discuss large animal models of endometritis, particularly the well-used bovine system a
38  including urethritis in men and cervicitis, endometritis, pelvic inflammatory disease, and possibly
39 tions after randomisation: chorioamnionitis, endometritis, perineal or caesarean wound infection, abd
40 ntra-amniotic infection (IAI) and postpartum endometritis (PPE) associated with vaginal group B strep
41                                Hemorrhage or endometritis requiring hospitalization was rare (1 perce
42 ssential for driving a macrophage-associated endometritis resulting in infertility by using a female
43 e same has not been proved about subclinical endometritis (SCE).
44               We explain how these models of endometritis show great potential for advancing our unde
45  characterize the role of biofilms in equine endometritis, six mares were inoculated with lux-enginee
46        An in vivo equine model of infectious endometritis was also developed to monitor biofilm forma
47                                  The rate of endometritis was higher in women undergoing a trial of l
48 we exploited a unique mucosal disease model, endometritis, where inflammation is a consequence of inn
49 on encompasses several conditions, including endometritis, which is a local innate immune response, u
50 eath, hospital readmission related to IAI or endometritis within 30 days, additional surgery or proce
51 prised chorioamnionitis in labour, puerperal endometritis, wound infection following cesarean section
52       The primary outcome was a composite of endometritis, wound infection, or other infection occurr