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6篇 您的检索式:作者名="David Fisman"
    题名 作者 年代 出处 被引量
1Climate change and infectious diseases in North America:the road ahead 显示文摘Amy Greer PhD Victoria Ng BS David Fisman 2008CMAJ2008,178,6:1
2Are Women Really the 'Fairer' Sex? Corruption and Wom- en in Government显示文摘Dollar David Fisman Raymond Gatti Roberta 2001Joumal of Economic Behavior and Or- ganzation Volume 46 Number 42001,2001,:1
3Insulin resistance is associated with increased risk of major cardiovascular events in patients with preexisting coronary artery disease显示文摘Alexander Tenenbaum Yehuda Adler Valentina Boyko Helena Tenenbaum Enrique Z. Fisman David Tanne Mordechai Lapidot Ehud Schwammenthal Micha S. Feinberg Zipora Matas Michael Motro Solomon Behar 2007American Heart Journal2007,,:1
4Long-term changes in serum cholesterol level does not influence the progression of coronary calcification显示文摘Alexander Tenenbaum Joseph Shemesh Nira Koren-Morag Enrique Z. Fisman Yehuda Adler Ilan Goldenberg David Tanne Ilan Hay Ehud Schwammenthal Michael Motro 2010International Journal of Cardiology2010,,2:1
5Relatedness of the incidence decay with exponential adjustment(IDEA)model,“Farr's law”and SIR compartmental difference equation models显示文摘Mathematical models are often regarded as recent innovations in the description and analysis of infectious disease outbreaks and epidemics,but simple mathematical expressions have been in use for projection of epidemic trajectories for more than a century.We recently introduced a single equation model(the incidence decay with exponential adjustment,or IDEA model)that can be used for short-term epidemiological forecasting.In the mid-19th century,Dr.William Farr made the observation that epidemic events rise and fall in a roughly symmetrical pattern that can be approximated by a bell-shaped curve.He noticed that this time-evolution behavior could be captured by a single mathematical formula(“Farr's law”)that could be used for epidemic forecasting.We show here that the IDEA model follows Farr's law,and show that for intuitive assumptions,Farr's Law can be derived from the IDEA model.Moreover,we show that both mathematical approaches,Farr's Law and the IDEA model,resemble solutions of a susceptible-infectious-removed(SIR)compartmental differential-equation model in an asymptotic limit,where the changes of disease transmission respond to control measures,and not only to the depletion of susceptible individuals.This suggests that the concept of the reproduction number eR 0T was implicitly captured in Farr's(pre-microbial era)work,and also suggests that control of epidemics,whether via behavior change or intervention,is as integral to the natural history of epidemics as is the dynamics of disease transmission.Mauricio Santillana Ashleigh Tuite Tahmina Nasserie Paul Fine David Champredon Leonid Chindelevitch Jonathan Dushoff David Fisman 2018Infectious Disease Modelling2018,3,1:1
6Climate change and infectious diseases in North America: the road ahead 显示文摘Amy Greer PhD Victoria Ng BS David Fisman 2008CMAJ2008,178,6:1
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