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COVID-19 监测在佛兰德学校系统:在公共卫生学校系统内发展系统数据收集,并对 2020 年 10 月至 2021 年 6 月期间报告的病例进行描述性分析。

COVID-19 surveillance in the Flemish school system: development of systematic data collection within the public health school system and descriptive analysis of cases reported between October 2020 and June 2021.

机构信息

Department of Epidemiology, Biostatistics, and Occupational Health, McGill University, 2001 McGill Street, Suite 1200, Montreal, QC, H3A 1G1, Canada.

I-BioStat, Data Science Institute, Hasselt University, Hasselt, Belgium.

出版信息

BMC Public Health. 2022 Oct 15;22(1):1921. doi: 10.1186/s12889-022-14250-1.

Abstract

BACKGROUND

The age-specific distribution of SARS-CoV-2 cases in schools is not well described. Reported statistics reflect the intensity of community transmission while being shaped by biases from age-dependent testing regimes, as well as effective age-specific interventions. A case surveillance system was introduced within the Flemish school and health-prevention network during the 2020-2021 school year. We present epidemiological data of in-school reported cases in pre-, primary and secondary schools identified by the case surveillance system, in conjunction with test data and community cases from October 2020 to June 2021.

METHODS

We describe the development of the surveillance system and provide the number of reported cases and standardized rates per grade over time. We calculated absolute and relative differences in case incidence according to school grade (primary: grades 1-6, and secondary: grades 7-12) using grades 7-8 as a comparator, relating them to non-pharmaceutical infection prevention interventions. Cumulative population incidences (IP) stratified by age, province and socioeconomic status (SES) of the school population are presented with their 95% confidence intervals (CI).

RESULTS

A total of 59,996 COVID-19 cases were reported in the school surveillance system, with the highest population adjusted IP in grade 11-12 of 7.39% (95%CI 7.24-7.53) and ranging from 2.23% to 6.25% from pre-school through grade 10. Age-specific reductions in mask introduction and in-person teaching were temporally associated with decreased case incidence, while lower pupil SES was associated with an increase in cumulative cases (excess 2,739/100,000 pupils compared to highest SES tertile). Community testing volumes varied more for children compared to adults, with overall higher child test-positivity. Holidays influence capturing of cases by the system, however efficiency increased to above 75% after further automation and integration in existing structures.

CONCLUSION

We demonstrate that effective integration of case surveillance within an electronic school health system is feasible, provides valuable data regarding the evolution of an epidemic among schoolchildren, and is an integral component of public health surveillance and pandemic preparedness. The relationship towards community transmission needs careful evaluation because of age-different testing regimens. In the Flemish region, case incidence within schools exhibited an age gradient that was mitigated through grade-specific interventions, though differences by SES remain.

摘要

背景

学校中 SARS-CoV-2 病例的年龄分布情况尚不清楚。已报告的统计数据反映了社区传播的强度,但同时也受到了年龄相关检测制度以及针对特定年龄的有效干预措施的影响。在 2020-2021 学年期间,佛兰德学校和卫生预防网络引入了病例监测系统。我们呈现了通过病例监测系统在学前、小学和中学中发现的校内报告病例的流行病学数据,并结合了 2020 年 10 月至 2021 年 6 月期间的检测数据和社区病例数据。

方法

我们描述了监测系统的发展情况,并提供了随时间推移的每个年级的报告病例数和标准化发病率。我们使用 7-8 年级作为对照,根据学校年级(小学:1-6 年级,中学:7-12 年级)计算了病例发生率的绝对和相对差异,并将其与非药物感染预防干预措施联系起来。我们呈现了按年龄、省份和学校人群社会经济地位(SES)分层的累积人群发病率(IP),并给出了其 95%置信区间(CI)。

结果

在学校监测系统中报告了 59996 例 COVID-19 病例,其中 11-12 年级的人群调整后发病率最高,为 7.39%(95%CI 7.24-7.53),从学前到 10 年级的发病率范围为 2.23%-6.25%。口罩引入和面对面教学的年龄特异性减少与病例发生率的降低有关,而较低的学生 SES 与累积病例的增加有关(与 SES 最高三分位组相比,每 100000 名学生多 2739 例)。与成年人相比,儿童的社区检测量波动更大,总体儿童检测阳性率更高。假期会影响系统对病例的捕捉,但进一步的自动化和与现有结构的整合后,效率提高到 75%以上。

结论

我们证明了在电子学校卫生系统中有效整合病例监测是可行的,它提供了有关学龄儿童中疫情演变的有价值的数据,是公共卫生监测和大流行准备的一个组成部分。由于年龄不同的检测制度,需要仔细评估其与社区传播的关系。在佛兰德地区,校内病例发生率呈年龄梯度分布,但通过特定年级的干预措施得到了缓解,而 SES 差异仍然存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2428/9569092/4c5f7f388827/12889_2022_14250_Fig1_HTML.jpg

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