Background: Preterm birth (PTB) is a leading cause of early childhood mortality and morbidity, including long-term physical and mental impairment. The risk factors for PTB are complex and include maternal nutritional status and infections. This study aimed to identify potentially modifiable risk factors for targeted interventions to reduce the occurrence of PTB in Rwanda. Methods: We conducted a prospective, longitudinal cohort study of healthy pregnant women aged 18 to 49 years. Women at 9-15 gestational weeks were recruited from 10 health centers in Gasabo District, Kigali Province between September and October 2017. Pregnancy age was estimated using ultrasonography and date of last menstruation. Anthropometric and laboratory measurements were performed using standard procedures for both mothers and newborns. Surveys were administered to assess demographic and health histories. Categorical and continuous variables were depicted as proportions and means, respectively. Variables with p < 0.25 in bivariate analyses were included in multivariable logistic regression models to determine independent predictors of PTB. The results were reported as odds ratios (ORs) and 95% confidence intervals (CI), with statistical significance set at p < 0.05. Results: Among 367 participants who delivered at a mean of 38.0 ± 2.2 gestational weeks, the overall PTB rate was 10.1%. After adjusting for potential confounders, we identified the following independent risk factors for PTB: anemia (hemoglobin < 11 g/dl) (OR: 4.27; 95%CI: 1.85-9.85), urinary tract infection (UTI) (OR:9.82; 95%CI: 3.88-24.83), chlamydia infection (OR: 2.79; 95%CI: 1.17-6.63), inadequate minimum dietary diversity for women (MDD-W) score (OR:3.94; CI: 1.57-9.91) and low mid-upper arm circumference (MUAC) < 23 cm (OR: 3.12, 95%CI; 1.31-7.43). indicators of nutritional inadequacy (low MDD-W and MUAC) predicted risk for low birth weight (LBW) but only UTI was associated with LBW in contrast with PTB.
objective Ascites in severe pre-eclampsia may impact foetal and maternal outcomes. The objective was to determine the prevalence of ascites in women with severe pre-eclampsia by point of care (POC) ultrasound and to determine whether it correlates with higher perinatal risks.methods Prospective cohort study of patients admitted with severe pre-eclampsia at 2 teaching hospitals in Kigali, Rwanda. Serial POC ultrasound was performed to document ascites. Patients were stratified by the presence of ascites in perinatal period. Maternal demographics and complications were recorded and compared between groups.results There were 112 patients with severe pre-eclampsia, and ascites was found in 53.5% (76.7% antepartum, and 23.3% postpartum). Antepartum ascites correlated with an earlier delivery (32.2 AE 0.51 vs. 33.8 AE 0.47 weeks, P = 0.022) as well as lower birthweight (1587.3 AE 77.03 vs. 2011.6 AE 103.5 g, P = 0.002). Antepartum ascites was associated with higher stillbirth rates (P = 0.034) and NICU admission (87.2% vs. 68%, P = 0.034). Maternal hospital stay was increased in the ascites group (P < 0.0001).conclusions Ascites is common in severe pre-eclampsia in Rwanda and maybe a prognosticator for poor outcomes. A larger sample is necessary to determine whether ascites is independently associated with maternal morbidity and mortality and whether documenting its presence aids in the management of the foetus and mother.keywords pre-eclampsia, ascites, point of care ultrasound 1018
PURPOSE The WHO framework for early cancer diagnosis highlights the need to improve health care capacity among primary care providers. In Rwanda, general practitioners (GPs) at district hospitals (DHs) play key roles in diagnosing, initiating management, and referring suspected patients with cancer. We sought to ascertain educational and resource needs of GPs to provide a blueprint that can inform future early cancer diagnosis capacity–building efforts. METHODS We administered a cross-sectional survey study to GPs practicing in 42 Rwandan DHs to assess gaps in cancer-focused knowledge, skills, and resources, as well as delays in the referral process. Responses were aggregated and descriptive analysis was performed to identify trends. RESULTS Survey response rate was 76% (73 of 96 GPs). Most responders were 25 to 29 years of age (n = 64 [88%]) and 100% had been practicing between 3 and 12 months. Significant gaps in cancer knowledge and physical exam skills were identified—88% of respondents were comfortable performing breast exams, but less than 10 (15%) GPs reported confidence in performing pelvic exams. The main educational resource requested by responders (n = 59 [81%]) was algorithms to guide clinical decision-making. Gaps in resource availability were identified, with only 39% of responders reporting breast ultrasound availability and 5.8% reporting core needle biopsy availability in DHs. Radiology and pathology resources were limited, with 52 (71%) reporting no availability of pathology services at the DH level. CONCLUSION The current study reveals significant basic oncologic educational and resource gaps in Rwanda, such as physical examination skills and diagnostic tools. Capacity building for GPs in low- and middle-income countries should be a core component of national cancer control plans to improve accurate and timely diagnosis of cancer. Continuing professional development activities should address and focus on context-specific educational gaps, resource availability, and referral practice guidelines.
has been reviewed by the Editorial Board and by special expert referees. Although it is judged not acceptable for publication in Obstetrics & Gynecology in its present form, we would be willing to give further consideration to a revised version. If you wish to consider revising your manuscript, you will first need to study carefully the enclosed reports submitted by the referees and editors. Each point raised requires a response, by either revising your manuscript or making a clear and convincing argument as to why no revision is needed. To facilitate our review, we prefer that the cover letter include the comments made by the reviewers and the editor followed by your response. The revised manuscript should indicate the position of all changes made. We suggest that you use the "track changes" feature in your word processing software to do so (rather than strikethrough or underline formatting).
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