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Markus Schwehm

Publications and source records attributed to Markus Schwehm.

3 recordsLinked to original sources

Still protected against smallpox? Estimation of the duration of vaccine-induced immunity against smallpox.

BACKGROUND: Although the potential for bioterrorism has led to discussions on the durability of vaccine-induced immunity, the actual duration of protection against smallpox is still unknown. It has previously been suggested that at least partial protection against severe and fatal smallpox may persist throughout life. METHODS: In this article, we analyzed 6 major smallpox outbreaks that occurred before and after 1900 in the United Kingdom. These analyses are based on the age-dependent incidence of smallpox and the fraction of severe manifestations among individuals with or without prior vaccination. We used a likelihood-based approach to estimate the duration of immunity from the age-specific frequencies. RESULTS: The expected median duration of protection from disease ranged from 11.7 to 28.4 years after primary vaccination, and the qualitative pattern of duration could be described using Gompertz's Law. Vaccinated individuals appear to have been protected from severe disease with more than 50% probability even 50 years after successful primary vaccination. CONCLUSIONS: These findings suggest that successful primary vaccination offered full protection for a few decades, with partial protection from severe smallpox possibly lasting a lifetime, for a substantial fraction of the population.

Age Factors↗

Transmission potential of primary pneumonic plague: time inhomogeneous evaluation based on historical documents of the transmission network.

BACKGROUND: The transmission potential of primary pneumonic plague, caused by Yersinia pestis, is one of the key epidemiological determinants of a potential biological weapon, and requires clarification and time dependent interpretation. METHOD: This study estimated the reproduction number and its time dependent change through investigations of outbreaks in Mukden, China (1946), and Madagascar (1957). Reconstruction of an epidemic tree, which shows who infected whom, from the observed dates of onset was performed using the serial interval. Furthermore, a likelihood based approach was used for the time inhomogeneous evaluation of the outbreaks for which there was scarcity of cases. RESULTS: According to the estimates, the basic reproduction number, R(0), was on the order of 2.8 to 3.5, which is higher than previous estimates. The lower 95% confidence intervals of R(0) exceeded unity. The effective reproduction number declined below unity after control measures were introduced in Mukden, and before the official implementation in Madagascar. CONCLUSION: While the time course of the latter outbreak could be explained by intrinsic factors and stochasticity in this remote and scarcely populated area, the former in Mukden suggests the possible continued chains of transmission in highly populated areas. Using the proposed methods, the who infected whom information permitted the evaluation of the time inhomogeneous transmission potential in relation to public health measures. The study also tackles the problem of statistical estimation of R(0) based on similar information, which was previously performed simply by counting the number of secondary transmissions regardless of time.

China↗