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Organ-on-a-chip (OOC) systems were developed by combining microfluidic technologies and tissue engineering to mimic physiological conditions in the body. OOC systems can recreate key aspects of the complex human physiological microenvironment, such as critical tissue interfaces; spatiotemporal cell–cell...
In additional to the aforementioned approaches where only hydrophilic interfaces were created for the anti-biofouling purpose, another promising approach currently under intensive investigation is the nanostructured superhydrophobic surface (Genzer and Efimenko 2006). These surfaces have been demonstrated to ...
We present a numerical simulation technique to calculate the deformation of interfaces between a conductive and non-conductive fluid as well as the motion of liquid–liquid–solid three-phase contact lines under the influence of externally applied electric fields in electrowetting configuration. The techn...
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Tailorable and Repeatable Normal Contact Stiffness via Micropatterned Interfaces Article Open access 17 July 2021 A mould-free soft-lithography approach for rapid, low-cost and bulk fabrication of microfluidic chips using photopolymer sheets Article 10 October 2023 References Abgrall P, Lattes C, ...
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