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stem_cell_colony03-m_T.jpg10025
  
<DIV><img style='max-width:100px;max-height:100px' src='/PublicAssets//'></DIV>6/3/2016 3:14 PMaamishral2 (NIH/NIGMS) [C]
stem_cell_colony03_S.jpg10024
  
<DIV><img style='max-width:100px;max-height:100px' src='/PublicAssets/A colony of human embryonic stem cells (center, blue) from the lab of the University of Wisconsin-Madison's James Thomson. These cells, which arise at the earliest stages of development, are blank slate cells capable of differentiating into any of the 220/'></DIV>9/7/2016 2:29 PMVarkala, Venkat (NIH/NIGMS) [C]
stem_cell_colony03_M.jpg10023
  
<DIV><img style='max-width:100px;max-height:100px' src='/PublicAssets/A colony of human embryonic stem cells (center, blue) from the lab of the University of Wisconsin-Madison's James Thomson. These cells, which arise at the earliest stages of development, are blank slate cells capable of differentiating into any of the 220/'></DIV>9/7/2016 2:29 PMVarkala, Venkat (NIH/NIGMS) [C]
stem_cell_colony03.jpg10022
  
<DIV><img style='max-width:100px;max-height:100px' src='/PublicAssets/A colony of human embryonic stem cells (center, blue) from the lab of the University of Wisconsin-Madison's James Thomson. These cells, which arise at the earliest stages of development, are blank slate cells capable of differentiating into any of the 220/'></DIV>6/3/2016 3:14 PMaamishral2 (NIH/NIGMS) [C]