On Microfluidic Future I like reviewing advancements in therapeutic or diagnostic devices because I’m really drawn to those areas of research. Every once in a while, however, I take interest in research for the sake for knowledge, like the Root Chip. I recently came across an article from Dino Di Carlo of UCLA that describes a microfluidic device used to study cancer cells. The article, “Increased Asymmetric and Multi-Daughter Cell Division in Mechanically Confined Microenvironments”
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Henry Tat Kwong Tse, Westbrook McConnell Weaver & Dino Di Carlo (2012). Increased Asymmetric and Multi-Daughter Cell Division in Mechanically Confined Microenvironments, PLoS ONE, 7 (6) Other: Link
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