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UID:064467f84f9ac17ae797d16b7781b25f
CATEGORIES:Mathematical Physics Seminar
CREATED:20240204T204320
SUMMARY:Webinar: Julia Yeomans - Modelling collective cell dynamics using active matter physics.
LOCATION:Zoom
DESCRIPTION:MATHEMATICAL PHYSICS WEBINAR\n RUTGERS UNIVERSITY\nJulia Yeomans – Universi
 ty of Oxford\nWednesday, February 21st, , 10:45AM EST \n \nModelling collec
 tive cell dynamics using active matter physics.\n \nThe motion of epithelia
 l cells is key to many life processes from morphogenesis to wound healing. 
 Despite its importance much remains to be understood about collective cell 
 motility, both at the mechanistic level of the underlying biochemistry, and
  at a more coarse-grained level of identifying the primary forces involved.
  I will describe recent work modelling confluent cell layers and tissues us
 ing cell-level and continuum approaches and discuss experiments that sugges
 t ways in which the models may need to be generalised to describe biologica
 l processes.\n
X-ALT-DESC;FMTTYPE=text/html:<p style="text-align: center; background: white;"><strong>MATHEMATICAL PHYS
 ICS WEBINAR<br> RUTGERS UNIVERSITY</strong></p><p style="text-align: center
 ; background: white;"><strong>Julia Yeomans – University of Oxford</strong>
 </p><p style="text-align: center; background: white;">Wednesday,&nbsp;Febru
 ary 21st,&nbsp;,&nbsp;<strong>10:45AM EST&nbsp;</strong></p><p style="text-
 align: center; background: white;"><strong>&nbsp;</strong></p><p style="tex
 t-align: center;">Modelling collective cell dynamics using active matter ph
 ysics.</p><p style="text-align: center;"><strong>&nbsp;</strong></p><p>The 
 motion of epithelial cells is key to many life processes from morphogenesis
  to wound healing. Despite its importance much remains to be understood abo
 ut collective cell motility, both at the mechanistic level of the underlyin
 g biochemistry, and at a more coarse-grained level of identifying the prima
 ry forces involved. I will describe recent work modelling confluent cell la
 yers and tissues using cell-level and continuum approaches and discuss expe
 riments that suggest ways in which the models may need to be generalised to
  describe biological processes.</p>
DTSTAMP:20260828T013839
DTSTART;TZID=America/New_York:20240221T104500
DTEND;TZID=America/New_York:20240221T114500
SEQUENCE:0
TRANSP:OPAQUE
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