Matches in SemOpenAlex for { <https://semopenalex.org/work/W2997789327> ?p ?o ?g. }
- W2997789327 abstract "Detecting and monitoring the transmission of arboviruses such as Zika virus (ZIKV), dengue virus, and chikungunya virus is critical for prevention and control activities. Previous work has compared the ability of different human-focused surveillance strategies to detect ZIKV transmission in U.S. counties where no known transmission had occurred, but whether virological surveillance in mosquitoes could represent an effective surveillance system is unclear.We leveraged a unique set of data from human and virological surveillance in Ae. aegypti during the 2016 ZIKV epidemic in Caguas, Puerto Rico, to compare alternative strategies for detecting and monitoring ZIKV activity.We developed a simulation model for mosquito and human surveillance strategies and simulated different transmission scenarios with varying infection rates and mosquito trap densities. We then calculated the expected weekly number of detected infections, the probability of detecting transmission, and the number of tests needed and compared the simulations with observed data from Caguas.In simulated high transmission scenarios (1 infection per 1,000 people per week), the models demonstrated that both approaches had estimated probabilities of detection of greater than 78%. In simulated low incidence scenarios, vector surveillance had higher sensitivity than human surveillance and sensitivity increased with more traps, more trapping effort, and testing. In contrast, the actual data from Caguas indicated that human virological surveillance was more sensitive than vector virological surveillance during periods of both high and low transmission.In scenarios where human surveillance is not possible or when transmission intensity is very low, virological surveillance in Ae. aegypti may be able to detect and monitor ZIKV epidemic activity. However, surveillance for humans seeking care for Zika-like symptoms likely provides an equivalent or more sensitive indicator of transmission intensity in most circumstances." @default.
- W2997789327 created "2020-01-10" @default.
- W2997789327 creator A5041975832 @default.
- W2997789327 creator A5050825770 @default.
- W2997789327 creator A5065259695 @default.
- W2997789327 creator A5068795438 @default.
- W2997789327 creator A5073651652 @default.
- W2997789327 creator A5076485059 @default.
- W2997789327 date "2019-12-26" @default.
- W2997789327 modified "2023-09-27" @default.
- W2997789327 title "Comparing vector and human surveillance strategies to detect arbovirus transmission: A simulation study for Zika virus detection in Puerto Rico" @default.
- W2997789327 cites W1980420259 @default.
- W2997789327 cites W2070822978 @default.
- W2997789327 cites W2078515034 @default.
- W2997789327 cites W2106951382 @default.
- W2997789327 cites W2109121241 @default.
- W2997789327 cites W2132869711 @default.
- W2997789327 cites W2133278587 @default.
- W2997789327 cites W2134755942 @default.
- W2997789327 cites W2139341828 @default.
- W2997789327 cites W2156596225 @default.
- W2997789327 cites W2175397736 @default.
- W2997789327 cites W2344122858 @default.
- W2997789327 cites W2578959746 @default.
- W2997789327 cites W2588207387 @default.
- W2997789327 cites W2608435517 @default.
- W2997789327 cites W2617760679 @default.
- W2997789327 cites W2729947798 @default.
- W2997789327 cites W2761023207 @default.
- W2997789327 cites W2766708170 @default.
- W2997789327 cites W2771726993 @default.
- W2997789327 cites W2784037629 @default.
- W2997789327 cites W2791488016 @default.
- W2997789327 cites W2793559241 @default.
- W2997789327 cites W2796800715 @default.
- W2997789327 cites W2889238401 @default.
- W2997789327 cites W2892065025 @default.
- W2997789327 cites W2914246661 @default.
- W2997789327 cites W2952789321 @default.
- W2997789327 cites W4235087240 @default.
- W2997789327 doi "https://doi.org/10.1371/journal.pntd.0007988" @default.
- W2997789327 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6948821" @default.
- W2997789327 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/31877132" @default.
- W2997789327 hasPublicationYear "2019" @default.
- W2997789327 type Work @default.
- W2997789327 sameAs 2997789327 @default.
- W2997789327 citedByCount "2" @default.
- W2997789327 countsByYear W29977893272020 @default.
- W2997789327 countsByYear W29977893272021 @default.
- W2997789327 crossrefType "journal-article" @default.
- W2997789327 hasAuthorship W2997789327A5041975832 @default.
- W2997789327 hasAuthorship W2997789327A5050825770 @default.
- W2997789327 hasAuthorship W2997789327A5065259695 @default.
- W2997789327 hasAuthorship W2997789327A5068795438 @default.
- W2997789327 hasAuthorship W2997789327A5073651652 @default.
- W2997789327 hasAuthorship W2997789327A5076485059 @default.
- W2997789327 hasBestOaLocation W29977893271 @default.
- W2997789327 hasConcept C104317684 @default.
- W2997789327 hasConcept C138816342 @default.
- W2997789327 hasConcept C142724271 @default.
- W2997789327 hasConcept C159047783 @default.
- W2997789327 hasConcept C173758957 @default.
- W2997789327 hasConcept C2522874641 @default.
- W2997789327 hasConcept C2776361769 @default.
- W2997789327 hasConcept C2777053367 @default.
- W2997789327 hasConcept C2777775583 @default.
- W2997789327 hasConcept C2778116200 @default.
- W2997789327 hasConcept C2779635636 @default.
- W2997789327 hasConcept C2780688631 @default.
- W2997789327 hasConcept C2781273456 @default.
- W2997789327 hasConcept C40767141 @default.
- W2997789327 hasConcept C41008148 @default.
- W2997789327 hasConcept C533803919 @default.
- W2997789327 hasConcept C55493867 @default.
- W2997789327 hasConcept C59822182 @default.
- W2997789327 hasConcept C71924100 @default.
- W2997789327 hasConcept C761482 @default.
- W2997789327 hasConcept C76155785 @default.
- W2997789327 hasConcept C86803240 @default.
- W2997789327 hasConcept C92087593 @default.
- W2997789327 hasConceptScore W2997789327C104317684 @default.
- W2997789327 hasConceptScore W2997789327C138816342 @default.
- W2997789327 hasConceptScore W2997789327C142724271 @default.
- W2997789327 hasConceptScore W2997789327C159047783 @default.
- W2997789327 hasConceptScore W2997789327C173758957 @default.
- W2997789327 hasConceptScore W2997789327C2522874641 @default.
- W2997789327 hasConceptScore W2997789327C2776361769 @default.
- W2997789327 hasConceptScore W2997789327C2777053367 @default.
- W2997789327 hasConceptScore W2997789327C2777775583 @default.
- W2997789327 hasConceptScore W2997789327C2778116200 @default.
- W2997789327 hasConceptScore W2997789327C2779635636 @default.
- W2997789327 hasConceptScore W2997789327C2780688631 @default.
- W2997789327 hasConceptScore W2997789327C2781273456 @default.
- W2997789327 hasConceptScore W2997789327C40767141 @default.
- W2997789327 hasConceptScore W2997789327C41008148 @default.
- W2997789327 hasConceptScore W2997789327C533803919 @default.
- W2997789327 hasConceptScore W2997789327C55493867 @default.
- W2997789327 hasConceptScore W2997789327C59822182 @default.
- W2997789327 hasConceptScore W2997789327C71924100 @default.
- W2997789327 hasConceptScore W2997789327C761482 @default.