Small animal models that are reminiscent of flaviviral disease in human will be instrumental in identifying therapeutic strategies against flavivirus infections. Here we review models in mice and hamsters for the most clinically important flaviviruses: dengue virus, yellow fever virus, West Nile virus, Japanese encephalitis virus and tick-borne encephalitis virus. In addition, models are discussed that employ no known vector viruses such as the Modoc virus. These viruses can be manipulated in BSL-2 laboratories and in infected mice and hamsters they mimic flaviviral disease in human.
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Reliable quality control is impossible without specification of the measurement uncertainty. For coordinate measuring machines (CMMs), Monte Carlo uncertainty evaluation allows to integrate the many task specific uncertainty influences. Incorporating the influence of feature form deviations in such simulations is difficult. This paper shows that limited sampling in combination with feature form deviations is often the most important uncertainty contributor for CMM measurements. A method that determines uncertainties for feature measurements on CMMs is proposed. The influence of feature form deviations is taken into account. The method is integrated in CMM software. The results are validated on actual workpieces.