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  <title><![CDATA[The fluid dynamics of disease transmission]]></title>
  <body><![CDATA[<h6>School of Physics Nonlinear Science &amp; Mathematical Physics: Presenting Lydia Bourouiba, MIT</h6><p>The mechanisms governing the transfer of pathogens between infected and non-infected members of a population &nbsp;are critical in &nbsp;shaping the outcome of an &nbsp;epidemic.&nbsp; This is true whether one considers human, &nbsp;animal or plant populations.&nbsp; Despite major efforts aimed at the mathematical modeling and mitigation of infectious diseases, the fundamental mechanisms of pathogen spreading for most infectious diseases remain poorly understood. &nbsp;I present here the results of &nbsp;combined&nbsp;theoretical and experimental studies&nbsp;of the role of fluid dynamics and fragmentation in disease transmission.</p>]]></body>
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      <value><![CDATA[<p><a href="mailto:alison.morain@physics.gatech.edu">alison.morain@physics.gatech.edu</a></p>]]></value>
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      <url><![CDATA[https://www.physics.gatech.edu/seminars-colloquia/series/nonlinear-science-and-mathematical-physics/lydia-bourouiba-20130313]]></url>
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