2019:groups:g6:start
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2019:groups:g6:start [2018/12/26 20:17] – [Assigment] prado | 2019:groups:g6:start [2024/01/09 18:45] (current) – external edit 127.0.0.1 | ||
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**Group 6** | **Group 6** | ||
- | ====== The multiple paths to plague outbreaks | + | |
+ | < | ||
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Many rodents are reservoirs of the | Many rodents are reservoirs of the | ||
- | plague | + | bacteria that causes |
- | Therefore, urban outbreaks have been explained by the transmission of the | + | Urban outbreaks have been explained by the transmission of the |
disease from infected rats to humans through flea bites. | disease from infected rats to humans through flea bites. | ||
Nevertheless, | Nevertheless, | ||
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===== Assigment ===== | ===== Assigment ===== | ||
- | Propose simple but realistic mathematical model(s) to describe the dynamics of plague epidemics. The model(s) should address at least one issue of the classic rat-flea-human model. | + | Propose simple but realistic mathematical model(s) to describe the dynamics of plague epidemics. The model(s) should address at least one issue of the classic rat-flea-human model, taking into account alternative transmission pathways. Any other aspect that can help to address the issues is also welcome, such as acquired immunity (by humans or rats). Key parameters of your model should be well-grounded in the available knowledge about plague transmission and ecology of vectors and reservoirs. |
+ | |||
+ | ===== Suggested questions ===== | ||
- | We expect that your solution takes into account | + | * Does your model predict single or recurrent epidemics? Why? |
+ | * Can the alternative | ||
===== References ===== | ===== References ===== |
2019/groups/g6/start.1545855436.txt.gz · Last modified: 2024/01/09 18:45 (external edit)