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Microfluidic Platform for Human Diseases

Microfluidic Platform for Human Diseases, Fig. 2 The platform to study intravasation and extravasation. (a) Chip design with intravasation chamber and extravasation chambers, separated from each other by valves, (b-d) Time-lapsed invasion analysis of colon cells. LOVO are the metastatic cells and SW480 are the... [Pg.1990]

Microfluidic Platform for Human Diseases, Fig. 6 Schematic of the misaligned layers of parylene membrane. Different forces are experienced by a tumor cell when it is stuck in the pores between the two layers. Fl is the fluidic pressure from the top, Fs is the force applied by the bottom layer, and Ft is the tension experienced by the cell (Reprinted with permission from [6])... [Pg.1992]

Microfluidic platforms with their major advantages in precise control of the cellular microenvironment are emerging as a very important tool for studies pertaining to human diseases and conditions. But if these systems are to be accepted widely, it is necessary to scale up the system such that more relevant models of human... [Pg.1992]


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