Background We aimed to build a basic daily mortality curve in Israel based on 20-year data accounting for long-term and annual trends, influenza-like illness (ILI) and climate factors among others, and to use the basic curve to estimate excess mortality during 65 weeks of the COVID-19 pandemic in 2020–2021 stratified by age groups. Methods Using daily mortality counts for the period 1 January 2000 to 31 December 2019, weekly ILI counts, daily climate and yearly population sizes, we fitted a quasi-Poisson model that included other temporal covariates (a smooth yearly trend, season, day of week) to define a basic mortality curve. Excess mortality was calculated as the difference between the observed and expected deaths on a weekly and periodic level. Analyses were stratified by age group. Results Between 23 March 2020 and 28 March 2021, a total of 51 361 deaths were reported in Israel, which was 12% higher than the expected number for the same period (expected 45 756 deaths; 95% prediction interval, 45 325–46 188; excess deaths, 5605). In the same period, the number of COVID-19 deaths was 6135 (12% of all observed deaths), 9.5% larger than the estimated excess mortality. Stratification by age group yielded a heterogeneous age-dependent pattern. Whereas in ages 90+ years (11% excess), 100% of excess mortality was attributed to COVID-19, in ages 70–79 years there was a greater excess (21%) with only 82% attributed to COVID-19. In ages 60–69 and 20–59 years, excess mortality was 14% and 10%, respectively, and the number of COVID-19 deaths was higher than the excess mortality. In ages 0–19 years, we found 19% fewer deaths than expected. Conclusion The findings of an age-dependent pattern of excess mortality may be related to indirect pathways in mortality risk, specifically in ages <80 years, and to the implementation of the lockdown policies, specifically in ages 0–19 years with lower deaths than expected.
BackgroundEarly reports on COVID-19 patient outcomes showed a marked fatality rate among patients requiring invasive mechanical ventilation (IMV).ObjectiveOur aim was to compare case fatality rate (CFR) outcomes for patients requiring IMV due to severe acute respiratory syndrome (SARS)-associated coronavirus 2 (COVID-19), SARS-associated coronavirus 1, Middle East respiratory syndrome (MERS), and influenza (H1N1).Materials and MethodsWe searched PubMed, EMBASE, MEDLINE, Google Scholar, and Cochrane Library for relevant studies published between December 2019 and April 2021 for COVID-19, between January 2002 and December 2008 for SARS, between January 2012 and December 2019 for MERS, and between January 2009 and December 2016 for influenza (H1N1).ResultsOverall, this study included 81 peer-reviewed studies, pertaining to 65,058 patients requiring IMV: 61 studies including 62,809 COVID-19 patients, 4 studies including 148 SARS patients, 9 studies including 875 MERS patients, and 7 studies including 1226 influenza (H1N1) patients. The CFR for COVID-19 patients requiring IMV was not significantly different from the CFR for SARS and influenza (H1N1) patients (45.5% [95% confidence interval (CI), 38.5%–52.8%] vs. 48.1% [95% CI, 39.2%–57.2%] and 39.7% [95% CI, 29.3%–51.3%], respectively). However, CFR for COVID-19 patients was significantly lower compared with that for MERS patients (CFR, 70.6%; 95% CI, 60.9%–78.8%).ConclusionsCOVID-19 patients requiring IMV show a similar CFR compared with SARS and H1N1 influenza patients but a lower CFR compared with MERS patients. To improve survival in future pandemics, we recommend examining the pros and cons of the liberal use of endotracheal intubation and considering drafting guidelines for the selection of patients to intubate and the timing of intubation.
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