Edge Rewrite
// HTMLRewriter · presentation

This page was redesigned at the edge.

Cloudflare fetched the original article and streamed it through HTMLRewriter to apply an entirely new visual system without rebuilding the source page.

Jump to content

Microlife

From Wikipedia, the free encyclopedia

A microlife is a unit of risk representing half an hour change of life expectancy.[1]

Discussed by David Spiegelhalter and Alejandro Leiva, and also used by Lin et al.[2] for decision analysis, microlives are intended as a simple way of communicating the impact of a lifestyle or environmental risk factor, based on the associated daily proportional effect on expected length of life. Similar to the micromort (one in a million probability of death) the microlife is intended for "rough but fair comparisons between the sizes of chronic risks".[1] This is to avoid the biasing effects of describing risks in relative hazard ratios, converting them into somewhat tangible units. Similarly they bring long-term future risks into the here-and-now as a gain or loss of time.

"A daily loss or gain of 30 minutes can be termed a microlife, because 1 000 000 half hours (57 years) roughly corresponds to a lifetime of adult exposure."[1]

The microlife exploits the fact that for small hazard ratios the change in life expectancy is roughly linear.[3] They are by necessity rough estimates, based on averages over population and lifetime. Effects of individual variability, short-term or changing habits, and causal factors are not taken into account.[citation needed]

Examples

[edit]
Microlives gained/lost per day of exposure, based on estimated life expectancy effects of long term lifestyle and demographic risk factors, for men and women aged 35 years.[1][4]
Risk factorMenWomen
Smoking
Smoking 1524 cigarettes109
Alcohol intake
Disputed[4]
Obesity
Per 5 units above body mass index of 22.5 each day33
Per 5 kg above optimum weight for average height each day11
Sedentary behaviour
2 hours watching television11
Diet
Red meat, 1 portion (85 g, 3 oz)11
Fruit and vegetable intake, =5 servings (blood vitamin C >50 nmol/L)43
Coffee intake
2-3 cups11
Physical activity
First 20 minutes of moderate exercise22
Subsequent 40 minutes of moderate exercise1½
Statins
Taking a statin11
Air pollution
Per day living in Mexico City v London½½
Geography
Per day being a resident of Russia v Sweden219
Era
Per day living in 2010 v 19101515
Per day living in 2010 v 198085

See also

[edit]

References

[edit]
  1. 1 2 3 4 Spiegelhalter, D. (2012-12-14). "Using speed of ageing and "microlives" to communicate the effects of lifetime habits and environment". BMJ. 345 (dec14 14) e8223. doi:10.1136/bmj.e8223. ISSN 1756-1833. PMID 23247978. S2CID 27745393.
  2. Lin, Chia-Yu, Gelman, Andrew, Price, Phillip N., and Krantz, David H. (1999). "Analysis of Local Decisions Using Hierarchical Modeling, Applied to Home Radon Measurement and Remediation" (PDF). Statistical Science. 14: 305–337.{{cite journal}}: CS1 maint: multiple names: authors list (link)
  3. Haybittle, J. (1998-10-01). "The use of the Gompertz function to relate changes in life expectancy to the standardized mortality ratio". International Journal of Epidemiology. 27 (5). Oxford University Press (OUP): 885–889. doi:10.1093/ije/27.5.885. ISSN 1464-3685. PMID 9839748.
  4. 1 2 "Alcohol in moderation: How many drinks is that?". Mayo Clinic. Retrieved 2025-12-08.

Further reading

[edit]
[edit]
  • Wikimedia Commons logo Media related to Microlife at Wikimedia Commons