Earlier quoted context omitted.
While SARS does have a longer incubation period, typically 2-7 days compared to the common flu's 1-4 days, the "slow transmission" that you've witnessed is more likely the successful work of national and international public health agencies preventing its spread. Especially by means of contact tracing and quarantine. Seasonal flu variants have a lethality of around 0.1%. The Spanish flu of 1918 was around 2%. SARS ha…
Just according to superficial stats, it looks like the flu kills orders of magnitude more people than SARS and MERS. Is the public health response to these diseases really so effective as to account for most of this difference? I don't pay close attention but also wouldn't off the top of my head be able to describe anything that, say, Washington State does to effectively respond to CoV incidents to keep it from propa…
A few things that may interest you:
* The rate of transmission for a disease is estimated by its R0 or basic reproduction number. R0 estimates the number of new cases from the unaffected population that one infection will cause. A disease with R0 * Seasonal flu predominantly kills the young, the elderly, and the immunocompromised. Interestingly, some strains, such as the Spanish Flu, have very different mortality curves that kill healthy middle aged adults far more than average [4]. I would expect a dramatically different public health response compared to normal seasonal flu if a future pandemic had a similar mortality curve.
* In the US, the "tip of the spear" for disease response would be the CDC's Division of Global Migration and Quarantine [5].
[1] https://www.cdc.gov/flu/about/burden/index.html [2] https://www.ncbi.nlm.nih.gov/pubmed/19545404 [3] https://web.stanford.edu/~jhj1/teachingdocs/Jones-on-R0.pdf [4] https://en.wikipedia.org/wiki/Spanish_flu#/media/File:W_curv... [5] https://www.cdc.gov/ncezid/dgmq/quarantine-fact-sheet.html